MAT
ec8a_c606
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene reciprocal translocation two detached fragments of two different chromosomes are switched paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached pericentric inversion includes the centromere and there is a break point in each arm non-disjunction the failure of homologous chromosomes to separate properly during cell division MATec8a_ccbd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 duplications chromosome that has an extra copy of a group of genes non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes MATec8a_0d08
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 pericentric inversion centromere is included in the reversed loop that is formed during synapsis Robertsonian translocation fusion of two chromosomes that have short p arms non-disjunction the failure of homologous chromosomes to separate properly during cell division non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_5623
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material Robertsonian translocation fusion of two chromosomes that have short p arms MATec8a_b7f8
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another Robertsonian translocation entire chromosome has attached to another at the centromere non-disjunction the failure of homologous chromosomes to separate properly during cell division duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_9733
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere non-disjunction the failure of sister chromatids to separate properly during cell division pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached duplications chromosome that has an extra copy of a group of genes MATec8a_b7c4
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome deletion chromosome in which is missing a group of genes paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_2226
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion when a chromosome breaks a part of it is lost duplications can result from genes recombination where a part of a chromosome is replicated paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached pericentric inversion a group of genes including the centromere is the reverse of the normal order reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes MATec8a_dd5c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion chromosome in which is missing a group of genes non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion includes the centromere and there is a break point in each arm MATec8a_5745
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion includes the centromere and there is a break point in each arm non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome MATec8a_79dd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation segments from two different chromosomes have been exchanged duplications portion of the chromosome has been copied, resulting extra copies of a gene paracentric inversion can change two monocentric chromosomes into a dicentric chromosome non-disjunction the failure of sister chromatids to separate properly during cell division pericentric inversion the reversal of the gene order in a chromosome that includes the centromere MATec8a_6a0e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion can change two monocentric chromosomes into an acentric chromosome Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome deletion when a chromosome breaks a part of it is lost duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_317a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached reciprocal translocation segments from two different chromosomes have been exchanged Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another pericentric inversion includes the centromere and there is a break point in each arm MATec8a_4b92
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications can result from genes recombination where a part of a chromosome is replicated Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 deletion can result from genes recombination where a part of a chromosome is lost non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_1fb9
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order Robertsonian translocation fusion of two chromosomes that have short p arms reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_02d5
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene deletion can result from genes recombination where a part of a chromosome is lost pericentric inversion a group of genes including the centromere is the reverse of the normal order Robertsonian translocation fusion of two chromosomes that have short p arms non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_4c7a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications chromosome that has an extra copy of a group of genes Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome reciprocal translocation segments from two different chromosomes have been exchanged deletion when a chromosome breaks a part of it is lost MATec8a_6655
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation fusion of two chromosomes that have short p arms non-disjunction the failure of sister chromatids to separate properly during cell division duplications can result from genes recombination where a part of a chromosome is replicated paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order MATec8a_d9ed
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene paracentric inversion can change two monocentric chromosomes into a dicentric chromosome pericentric inversion includes the centromere and there is a break point in each arm Robertsonian translocation entire chromosome has attached to another at the centromere reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_6aec
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation two detached fragments of two different chromosomes are switched MATec8a_529f
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion chromosome in which is missing a group of genes Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 paracentric inversion can change two monocentric chromosomes into a dicentric chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_b81e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome Robertsonian translocation entire chromosome has attached to another at the centromere deletion can result from genes recombination where a part of a chromosome is lost non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another pericentric inversion centromere is included in the reversed loop that is formed during synapsis MATec8a_54f6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a group of genes including the centromere is the reverse of the normal order non-disjunction the failure of homologous chromosomes to separate properly during cell division non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion can result from genes recombination where a part of a chromosome is lost Robertsonian translocation fusion of two chromosomes that have short p arms MATec8a_e825
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 paracentric inversion can change two monocentric chromosomes into a dicentric chromosome duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_ae8c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 duplications chromosome that has an extra copy of a group of genes deletion a sequence of DNA is left out during DNA replication non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion can change two monocentric chromosomes into an acentric chromosome MATec8a_d39c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion centromere is included in the reversed loop that is formed during synapsis MATec8a_bf7c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a sequence of DNA is left out during DNA replication duplications can result from genes recombination where a part of a chromosome is replicated reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome pericentric inversion a group of genes including the centromere is the reverse of the normal order non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_eda0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division duplications can result from genes recombination where a part of a chromosome is replicated reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other deletion chromosome in which is missing a group of genes paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place MATec8a_f60b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion when a chromosome breaks a part of it is lost paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached reciprocal translocation two detached fragments of two different chromosomes are switched non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another Robertsonian translocation fusion of two chromosomes that have short p arms MATec8a_2be7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 deletion a part of a chromosome is left out during DNA replication paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion the reversal of the gene order in a chromosome that includes the centromere MATec8a_7faf
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome non-disjunction the failure of sister chromatids to separate properly during cell division deletion when a chromosome breaks a part of it is lost Robertsonian translocation fusion of two chromosomes that have short p arms pericentric inversion reversal of the genes that includes both arms of the chromosome MATec8a_b14d
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome pericentric inversion a group of genes including the centromere is the reverse of the normal order non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_be01
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes duplications chromosome that has an extra copy of a group of genes non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere MATec8a_4804
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place deletion a part of a chromosome is left out during DNA replication Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_92f3
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome deletion can result from genes recombination where a part of a chromosome is lost duplications can result from genes recombination where a part of a chromosome is replicated reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_904c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene pericentric inversion includes the centromere and there is a break point in each arm non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion when a chromosome breaks a part of it is lost non-disjunction the failure of homologous chromosomes to separate properly during cell division MATec8a_0f0b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere non-disjunction the failure of homologous chromosomes to separate properly during cell division Robertsonian translocation fusion of two chromosomes that have short p arms non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome deletion when a chromosome breaks a part of it is lost MATec8a_1436
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other paracentric inversion can change two monocentric chromosomes into an acentric chromosome Robertsonian translocation fusion of two chromosomes that have short p arms non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_d37f
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached duplications portion of the chromosome has been copied, resulting in extra genetic material non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes paracentric inversion can change two monocentric chromosomes into an acentric chromosome MATec8a_c6e2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere reciprocal translocation two detached fragments of two different chromosomes are switched non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_5be0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material deletion a part of a chromosome is left out during DNA replication MATec8a_3241
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place deletion chromosome in which is missing a group of genes duplications portion of the chromosome has been copied, resulting in extra genetic material Robertsonian translocation entire chromosome has attached to another at the centromere non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_013f
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion a group of genes including the centromere is the reverse of the normal order paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_f016
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion reversal of the genes that includes both arms of the chromosome deletion a sequence of DNA is left out during DNA replication non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications portion of the chromosome has been copied, resulting extra copies of a gene paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome MATec8a_c2a5
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another deletion chromosome in which is missing a group of genes Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes MATec8a_1052
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a sequence of DNA is left out during DNA replication non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_9ab3
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed deletion a part of a chromosome is left out during DNA replication MATec8a_8a54
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation entire chromosome has attached to another at the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material deletion a part of a chromosome is left out during DNA replication pericentric inversion a group of genes including the centromere is the reverse of the normal order MATec8a_41ea
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications can result from genes recombination where a part of a chromosome is replicated reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation entire chromosome has attached to another at the centromere non-disjunction the failure of homologous chromosomes to separate properly during cell division non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_8e3e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion reversal of the genes that includes both arms of the chromosome paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome deletion a part of a chromosome is left out during DNA replication MATec8a_4772
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a sequence of DNA is left out during DNA replication Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order duplications portion of the chromosome has been copied, resulting extra copies of a gene pericentric inversion a group of genes including the centromere is the reverse of the normal order MATec8a_3b0c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion can result from genes recombination where a part of a chromosome is lost reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_b069
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion a part of a chromosome is left out during DNA replication Robertsonian translocation entire chromosome has attached to another at the centromere MATec8a_2ec7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division deletion portion of the chromosome is missing Robertsonian translocation fusion of two chromosomes that have short p arms duplications chromosome that has an extra copy of a group of genes non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_e734
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division deletion a sequence of DNA is left out during DNA replication duplications portion of the chromosome has been copied, resulting in extra genetic material non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome pericentric inversion reversal of the genes that includes both arms of the chromosome MATec8a_331e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached Robertsonian translocation entire chromosome has attached to another at the centromere pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached MATec8a_f166
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_cc54
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a part of a chromosome is left out during DNA replication non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_1227
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other pericentric inversion reversal of the genes that includes both arms of the chromosome non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome deletion portion of the chromosome is missing MATec8a_287b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome deletion can result from genes recombination where a part of a chromosome is lost MATec8a_7bbc
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes reciprocal translocation segments from two different chromosomes have been exchanged pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another deletion a sequence of DNA is left out during DNA replication MATec8a_eb33
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation segments from two different chromosomes have been exchanged non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion can change two monocentric chromosomes into a dicentric chromosome deletion can result from genes recombination where a part of a chromosome is lost MATec8a_ac12
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications can result from genes recombination where a part of a chromosome is replicated non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome MATec8a_f35e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications chromosome that has an extra copy of a group of genes MATec8a_b5fe
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation segments from two different chromosomes have been exchanged non-disjunction the failure of homologous chromosomes to separate properly during cell division deletion when a chromosome breaks a part of it is lost duplications chromosome that has an extra copy of a group of genes non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_4f2c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation two detached fragments of two different chromosomes are switched pericentric inversion includes the centromere and there is a break point in each arm duplications portion of the chromosome has been copied, resulting extra copies of a gene deletion chromosome in which is missing a group of genes MATec8a_426a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion includes the centromere and there is a break point in each arm paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_6511
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a part of a chromosome is left out during DNA replication non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_abf6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes duplications portion of the chromosome has been copied, resulting extra copies of a gene paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere deletion can result from genes recombination where a part of a chromosome is lost reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_020c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome non-disjunction the failure of sister chromatids to separate properly during cell division pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes paracentric inversion can change two monocentric chromosomes into an acentric chromosome MATec8a_95a6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 pericentric inversion the reversal of the gene order in a chromosome that includes the centromere deletion chromosome in which is missing a group of genes paracentric inversion can change two monocentric chromosomes into a dicentric chromosome MATec8a_8346
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place reciprocal translocation segments from two different chromosomes have been exchanged Robertsonian translocation entire chromosome has attached to another at the centromere non-disjunction the failure of sister chromatids to separate properly during cell division deletion a sequence of DNA is left out during DNA replication MATec8a_83e0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation entire chromosome has attached to another at the centromere reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_411c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other paracentric inversion can change two monocentric chromosomes into a dicentric chromosome deletion chromosome in which is missing a group of genes pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_be1c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications can result from genes recombination where a part of a chromosome is replicated reciprocal translocation segments from two different chromosomes have been exchanged non-disjunction the failure of homologous chromosomes to separate properly during cell division deletion a sequence of DNA is left out during DNA replication pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached MATec8a_8fe5
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_3442
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a group of genes including the centromere is the reverse of the normal order duplications chromosome that has an extra copy of a group of genes non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place MATec8a_50d0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome pericentric inversion a group of genes including the centromere is the reverse of the normal order MATec8a_5bb3
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion includes the centromere and there is a break point in each arm duplications can result from genes recombination where a part of a chromosome is replicated non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_6d6e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene Robertsonian translocation entire chromosome has attached to another at the centromere reciprocal translocation two detached fragments of two different chromosomes are switched deletion when a chromosome breaks a part of it is lost non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_af27
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation entire chromosome has attached to another at the centromere reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 duplications chromosome that has an extra copy of a group of genes deletion portion of the chromosome is missing non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_5b68
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes pericentric inversion the reversal of the gene order in a chromosome that includes the centromere reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other deletion can result from genes recombination where a part of a chromosome is lost non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_7bd5
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing pericentric inversion the reversal of the gene order in a chromosome that includes the centromere non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another duplications portion of the chromosome has been copied, resulting in extra genetic material paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place MATec8a_059b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes deletion can result from genes recombination where a part of a chromosome is lost pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_bd16
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion can change two monocentric chromosomes into an acentric chromosome Robertsonian translocation fusion of two chromosomes that have short p arms duplications can result from genes recombination where a part of a chromosome is replicated pericentric inversion reversal of the genes that includes both arms of the chromosome MATec8a_4bf1
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion chromosome in which is missing a group of genes duplications portion of the chromosome has been copied, resulting in extra genetic material Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached non-disjunction the failure of homologous chromosomes to separate properly during cell division MATec8a_65aa
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order pericentric inversion the reversal of the gene order in a chromosome that includes the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_fd0e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-disjunction the failure of sister chromatids to separate properly during cell division duplications portion of the chromosome has been copied, resulting in extra genetic material reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place MATec8a_6a98
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached deletion a part of a chromosome is left out during DNA replication non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another Robertsonian translocation fusion of two chromosomes that have short p arms MATec8a_5aeb
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion includes the centromere and there is a break point in each arm deletion a sequence of DNA is left out during DNA replication paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation two detached fragments of two different chromosomes are switched MATec8a_7fea
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material paracentric inversion can change two monocentric chromosomes into an acentric chromosome deletion when a chromosome breaks a part of it is lost MATec8a_cef2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 deletion chromosome in which is missing a group of genes non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome pericentric inversion reversal of the genes that includes both arms of the chromosome MATec8a_7a68
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome pericentric inversion includes the centromere and there is a break point in each arm duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_bbb6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome Robertsonian translocation fusion of two chromosomes that have short p arms non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed deletion a sequence of DNA is left out during DNA replication MATec8a_d4f0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division duplications chromosome that has an extra copy of a group of genes paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere deletion can result from genes recombination where a part of a chromosome is lost reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 MATec8a_6f14
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome pericentric inversion the reversal of the gene order in a chromosome that includes the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes MATec8a_f51c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion centromere is included in the reversed loop that is formed during synapsis reciprocal translocation segments from two different chromosomes have been exchanged non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_3b73
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation segments from two different chromosomes have been exchanged non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed Robertsonian translocation entire chromosome has attached to another at the centromere deletion can result from genes recombination where a part of a chromosome is lost MATec8a_5500
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material pericentric inversion reversal of the genes that includes both arms of the chromosome Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division MATec8a_73eb
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes paracentric inversion can change two monocentric chromosomes into a dicentric chromosome deletion a sequence of DNA is left out during DNA replication pericentric inversion includes the centromere and there is a break point in each arm MATec8a_1608
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion includes the centromere and there is a break point in each arm reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome deletion when a chromosome breaks a part of it is lost MATec8a_03cd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place Robertsonian translocation entire chromosome has attached to another at the centromere non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes MATec8a_3227
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material Robertsonian translocation fusion of two chromosomes that have short p arms deletion portion of the chromosome is missing paracentric inversion can change two monocentric chromosomes into a dicentric chromosome non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_35c6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a part of a chromosome is left out during DNA replication paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes duplications chromosome that has an extra copy of a group of genes non-disjunction the failure of homologous chromosomes to separate properly during cell division MATec8a_3245
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another duplications portion of the chromosome has been copied, resulting in extra genetic material pericentric inversion includes the centromere and there is a break point in each arm paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome deletion can result from genes recombination where a part of a chromosome is lost MATec8a_3aa5
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a sequence of DNA is left out during DNA replication paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome pericentric inversion a group of genes including the centromere is the reverse of the normal order Robertsonian translocation fusion of two chromosomes that have short p arms MATec8a_8526
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion includes the centromere and there is a break point in each arm non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation two detached fragments of two different chromosomes are switched duplications portion of the chromosome has been copied, resulting extra copies of a gene Robertsonian translocation entire chromosome has attached to another at the centromere MATec8a_0937
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a sequence of DNA is left out during DNA replication non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation fusion of two chromosomes that have short p arms paracentric inversion can change two monocentric chromosomes into an acentric chromosome non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_d152
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion chromosome in which is missing a group of genes duplications chromosome that has an extra copy of a group of genes non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere MATec8a_527a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another deletion a sequence of DNA is left out during DNA replication reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_5f02
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms deletion when a chromosome breaks a part of it is lost paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome pericentric inversion includes the centromere and there is a break point in each arm MATec8a_95cf
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation two detached fragments of two different chromosomes are switched deletion portion of the chromosome is missing Robertsonian translocation entire chromosome has attached to another at the centromere paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_ef6f
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion can result from genes recombination where a part of a chromosome is lost non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere Robertsonian translocation fusion of two chromosomes that have short p arms duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_4289
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene deletion chromosome in which is missing a group of genes reciprocal translocation segments from two different chromosomes have been exchanged non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes MATec8a_ebd6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_53fe
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place duplications portion of the chromosome has been copied, resulting extra copies of a gene non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation two detached fragments of two different chromosomes are switched MATec8a_79d7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached deletion a part of a chromosome is left out during DNA replication non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation fusion of two chromosomes that have short p arms duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_5650
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation two detached fragments of two different chromosomes are switched paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome deletion a part of a chromosome is left out during DNA replication MATec8a_70ef
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion a part of a chromosome is left out during DNA replication duplications chromosome that has an extra copy of a group of genes MATec8a_f830
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached reciprocal translocation segments from two different chromosomes have been exchanged paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material non-disjunction the failure of homologous chromosomes to separate properly during cell division MATec8a_1d5b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion a sequence of DNA is left out during DNA replication MATec8a_5396
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion a sequence of DNA is left out during DNA replication paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere reciprocal translocation segments from two different chromosomes have been exchanged pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere MATec8a_b094
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached duplications portion of the chromosome has been copied, resulting extra copies of a gene non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 MATec8a_99b7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome MATec8a_7886
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion centromere is included in the reversed loop that is formed during synapsis deletion chromosome in which is missing a group of genes paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_58ff
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division deletion can result from genes recombination where a part of a chromosome is lost non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome Robertsonian translocation fusion of two chromosomes that have short p arms reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 MATec8a_4788
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes deletion when a chromosome breaks a part of it is lost Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_0113
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion can change two monocentric chromosomes into a dicentric chromosome pericentric inversion the reversal of the gene order in a chromosome that includes the centromere non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another deletion chromosome in which is missing a group of genes non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_44e2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another pericentric inversion centromere is included in the reversed loop that is formed during synapsis paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_c618
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached duplications portion of the chromosome has been copied, resulting in extra genetic material deletion chromosome in which is missing a group of genes Robertsonian translocation fusion of two chromosomes that have short p arms non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_29a2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome duplications chromosome that has an extra copy of a group of genes pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 MATec8a_ec85
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other duplications portion of the chromosome has been copied, resulting in extra genetic material deletion a part of a chromosome is left out during DNA replication MATec8a_59d7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion can result from genes recombination where a part of a chromosome is lost Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion a group of genes including the centromere is the reverse of the normal order duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_04a2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes pericentric inversion a group of genes including the centromere is the reverse of the normal order MATec8a_7ad6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division Robertsonian translocation fusion of two chromosomes that have short p arms pericentric inversion the reversal of the gene order in a chromosome that includes the centromere MATec8a_18b3
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion a sequence of DNA is left out during DNA replication non-disjunction the failure of homologous chromosomes to separate properly during cell division pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes reciprocal translocation two detached fragments of two different chromosomes are switched non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_1fd7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms paracentric inversion can change two monocentric chromosomes into an acentric chromosome deletion when a chromosome breaks a part of it is lost non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_4a62
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 deletion chromosome in which is missing a group of genes pericentric inversion a group of genes including the centromere is the reverse of the normal order non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_ca0e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome pericentric inversion includes the centromere and there is a break point in each arm deletion when a chromosome breaks a part of it is lost paracentric inversion can change two monocentric chromosomes into a dicentric chromosome duplications chromosome that has an extra copy of a group of genes MATec8a_d60b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 deletion a sequence of DNA is left out during DNA replication pericentric inversion centromere is included in the reversed loop that is formed during synapsis duplications portion of the chromosome has been copied, resulting in extra genetic material non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_7c7c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 pericentric inversion a group of genes including the centromere is the reverse of the normal order MATec8a_1654
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes deletion portion of the chromosome is missing non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_a9c0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing duplications chromosome that has an extra copy of a group of genes pericentric inversion a group of genes including the centromere is the reverse of the normal order reciprocal translocation segments from two different chromosomes have been exchanged non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_05e0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material deletion a sequence of DNA is left out during DNA replication pericentric inversion reversal of the genes that includes both arms of the chromosome reciprocal translocation segments from two different chromosomes have been exchanged MATec8a_5c5a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome pericentric inversion includes the centromere and there is a break point in each arm reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order MATec8a_77ff
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division Robertsonian translocation fusion of two chromosomes that have short p arms duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_a8cd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached non-disjunction the failure of homologous chromosomes to separate properly during cell division deletion portion of the chromosome is missing non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_c2c4
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division duplications portion of the chromosome has been copied, resulting in extra genetic material reciprocal translocation segments from two different chromosomes have been exchanged non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 MATec8a_633a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion can result from genes recombination where a part of a chromosome is lost reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached Robertsonian translocation fusion of two chromosomes that have short p arms duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_7c45
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion can result from genes recombination where a part of a chromosome is lost pericentric inversion a group of genes including the centromere is the reverse of the normal order non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division duplications portion of the chromosome has been copied, resulting extra copies of a gene MATec8a_63c2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division duplications can result from genes recombination where a part of a chromosome is replicated non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome MATec8a_4d83
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of sister chromatids to separate properly during cell division deletion chromosome in which is missing a group of genes paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 MATec8a_37c5
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications chromosome that has an extra copy of a group of genes deletion chromosome in which is missing a group of genes non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_f5e7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another paracentric inversion can change two monocentric chromosomes into a dicentric chromosome deletion chromosome in which is missing a group of genes duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_b6cd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division deletion can result from genes recombination where a part of a chromosome is lost Robertsonian translocation entire chromosome has attached to another at the centromere duplications portion of the chromosome has been copied, resulting in extra genetic material reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other MATec8a_2b53
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion the reversal of the gene order in a chromosome that includes the centromere non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome duplications portion of the chromosome has been copied, resulting extra copies of a gene reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 MATec8a_54a4
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation segments from two different chromosomes have been exchanged deletion portion of the chromosome is missing non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications can result from genes recombination where a part of a chromosome is replicated Robertsonian translocation fusion of two chromosomes that have short p arms MATec8a_c396
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion can change two monocentric chromosomes into a dicentric chromosome reciprocal translocation segments from two different chromosomes have been exchanged duplications portion of the chromosome has been copied, resulting extra copies of a gene deletion portion of the chromosome is missing MATec8a_4bf2
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes deletion can result from genes recombination where a part of a chromosome is lost reciprocal translocation two detached fragments of two different chromosomes are switched non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome MATec8a_041a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division deletion chromosome in which is missing a group of genes MATec8a_488e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome non-disjunction the failure of sister chromatids to separate properly during cell division duplications chromosome that has an extra copy of a group of genes Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_d44f
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome duplications chromosome that has an extra copy of a group of genes paracentric inversion can change two monocentric chromosomes into a dicentric chromosome pericentric inversion centromere is included in the reversed loop that is formed during synapsis MATec8a_1f01
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division duplications chromosome that has an extra copy of a group of genes paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes MATec8a_79bc
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation two detached fragments of two different chromosomes are switched duplications can result from genes recombination where a part of a chromosome is replicated Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_060a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division pericentric inversion centromere is included in the reversed loop that is formed during synapsis reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome deletion portion of the chromosome is missing paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place MATec8a_454f
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-disjunction the failure of homologous chromosomes to separate properly during cell division duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_4719
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division paracentric inversion can change two monocentric chromosomes into an acentric chromosome pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere MATec8a_cada
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 pericentric inversion the reversal of the gene order in a chromosome that includes the centromere deletion when a chromosome breaks a part of it is lost Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_91da
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another duplications portion of the chromosome has been copied, resulting extra copies of a gene reciprocal translocation segments from two different chromosomes have been exchanged Robertsonian translocation fusion of two chromosomes that have short p arms pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere MATec8a_e65b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting extra copies of a gene reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion a part of a chromosome is left out during DNA replication Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes MATec8a_bc19
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order duplications chromosome that has an extra copy of a group of genes deletion a sequence of DNA is left out during DNA replication non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another MATec8a_463c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome paracentric inversion the reversal of the gene order within a chromosome that does NOT include the centromere non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome duplications chromosome that has an extra copy of a group of genes MATec8a_7dcc
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome pericentric inversion reversal of the genes that includes both arms of the chromosome reciprocal translocation the exchange of broken chromosome segments between two nonhomologous chromosomes deletion portion of the chromosome is missing MATec8a_970a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division deletion portion of the chromosome is missing non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place pericentric inversion a pair of homologous chromosomes that both have duplicated genes and missing genes MATec8a_3e7c
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications can result from genes recombination where a part of a chromosome is replicated deletion a sequence of DNA is left out during DNA replication reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome Robertsonian translocation fusion of two chromosomes that have short p arms non-disjunction the failure of sister chromatids to separate properly during cell division MATec8a_4541
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of homologous chromosomes to separate properly during cell division non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome duplications portion of the chromosome has been copied, resulting in extra genetic material MATec8a_000d
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome reciprocal translocation two detached fragments of two different chromosomes are switched Robertsonian translocation fusion of two chromosomes that have short p arms non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_c02e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion the reversal of the gene order in a chromosome that includes the centromere paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place non-disjunction the failure of homologous chromosomes to separate properly during cell division reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome MATec8a_4de7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another paracentric inversion does NOT include the centromere and both breaks occur in one arm of the chromosome duplications chromosome that has an extra copy of a group of genes reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 MATec8a_cdb0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion when a chromosome breaks a part of it is lost reciprocal translocation segments from two different chromosomes have been exchanged duplications portion of the chromosome has been copied, resulting in extra genetic material paracentric inversion can change two monocentric chromosomes into an acentric chromosome pericentric inversion includes the centromere and there is a break point in each arm MATec8a_6acd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material deletion when a chromosome breaks a part of it is lost Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome pericentric inversion includes the centromere and there is a break point in each arm MATec8a_d231
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a group of genes including the centromere is the reverse of the normal order duplications portion of the chromosome has been copied, resulting in extra genetic material reciprocal translocation two detached fragments of two different chromosomes are switched deletion chromosome in which is missing a group of genes Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes MATec8a_5684
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion centromere is included in the reversed loop that is formed during synapsis deletion portion of the chromosome is missing paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached reciprocal translocation the Philadelphia chromosome is formed from this alteration of chromosomes 9 and 22 duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_421a
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms paracentric inversion a portion of a single chromosome arm has broken off, reversed, and reattached in its original place non-disjunction the failure of sister chromatids to separate properly during cell division deletion portion of the chromosome is missing reciprocal translocation two detached fragments of two different chromosomes are switched MATec8a_05cd
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion can change two monocentric chromosomes into a dicentric chromosome pericentric inversion includes the centromere and there is a break point in each arm non-disjunction the failure of homologous chromosomes to separate properly during cell division non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome Robertsonian translocation entire chromosome has attached to another at the centromere MATec8a_b7c0
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed Robertsonian translocation caused by breaks at or near the centromeres of two acrocentric chromosomes duplications chromosome that has an extra copy of a group of genes non-reciprocal translocation the transferring of a chromosome segment from one chromosome to another non-homologous chromosome reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other MATec8a_3cfa
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing duplications can result from genes recombination where a part of a chromosome is replicated non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another non-disjunction the failure of sister chromatids to separate properly during cell division paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order MATec8a_42d6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion a portion of a chromosome that includes both arms has broken off, turned upside down, and reattached reciprocal translocation a pair of non-homologous chromosomes swapping genes with each other non-disjunction the failure of sister chromatids to separate properly during cell division non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 MATec8a_21d7
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion can change two monocentric chromosomes into an acentric chromosome non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome non-disjunction the failure of homologous chromosomes to separate properly during cell division Robertsonian translocation fusion of two chromosomes that have short p arms deletion can result from genes recombination where a part of a chromosome is lost MATec8a_55fa
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion can result from genes recombination where a part of a chromosome is lost non-disjunction the failure of sister chromatids to separate properly during cell division Robertsonian translocation can change two acrocentric chromosomes into a metacentric chromosome duplications can result from genes recombination where a part of a chromosome is replicated paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome MATec8a_7439
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome duplications can result from genes recombination where a part of a chromosome is replicated pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere non-disjunction the failure of sister chromatids to separate properly during cell division deletion chromosome in which is missing a group of genes MATec8a_6e1d
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material deletion when a chromosome breaks a part of it is lost paracentric inversion two breaks and reversal of the genes occur on one arm of the chromosome reciprocal translocation segments from two different chromosomes have been exchanged pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_05a6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
reciprocal translocation can change a metacentric chromosome into a submetacentric chromosome Robertsonian translocation fusion of two chromosomes that have short p arms non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another deletion can result from genes recombination where a part of a chromosome is lost pericentric inversion reversal of the genes that includes both arms of the chromosome MATec8a_85ec
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome deletion a part of a chromosome is left out during DNA replication Robertsonian translocation in humans, these alterations only occur with chromosomes 13, 14, 15, 21, and 22 duplications portion of the chromosome has been copied, resulting extra copies of a gene pericentric inversion includes the centromere and there is a break point in each arm MATec8a_b09e
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
non-disjunction the failure of sister chromatids to separate properly during cell division pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere paracentric inversion can result from genes recombination where a part of a single chromosome arm is reversed non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome duplications can result from genes recombination where a part of a chromosome is replicated MATec8a_27d6
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
deletion portion of the chromosome is missing paracentric inversion a portion of a single chromosome arm has broken off, turned upside down, and reattached reciprocal translocation segments from two different chromosomes have been exchanged Robertsonian translocation fusion of two chromosomes that have short p arms pericentric inversion two breaks and reversal of the genes occurs on both arms or sides of the centromere MATec8a_528b
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
duplications portion of the chromosome has been copied, resulting in extra genetic material non-disjunction the failure of homologous chromosomes to separate properly during cell division deletion when a chromosome breaks a part of it is lost reciprocal translocation two detached fragments of two different chromosomes are switched pericentric inversion a portion of a chromosome that includes both arms has broken off, reversed, and reattached MATec8a_e035
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
Robertsonian translocation fusion of two chromosomes that have short p arms pericentric inversion includes the centromere and there is a break point in each arm deletion a part of a chromosome is left out during DNA replication non-reciprocal translocation a complete chromosome that also has a group of genes from another chromosome paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order MATec8a_3004
Match each of the following alterations to chromosome structure with their corresponding descriptions.
Note: Each choice will be used exactly once.
pericentric inversion centromere is included in the reversed loop that is formed during synapsis duplications can result from genes recombination where a part of a chromosome is replicated paracentric inversion a group of genes on one arm of the chromosome is the reverse of the normal order Robertsonian translocation fusion of two chromosomes that have short p arms non-reciprocal translocation the one-way transfer of a chromosomal segment from one non-homologous chromosome to another