首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Correspondence of human chromosomes 9, 12, 15, 16, 19 and 20 with donkey chromosomes refines homology between horse and donkey karyotypes.
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Correspondence of human chromosomes 9, 12, 15, 16, 19 and 20 with donkey chromosomes refines homology between horse and donkey karyotypes.

机译:人染色体9、12、15、16、19和20的染色体与驴染色体的对应关系完善了马和驴核型之间的同源性。

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摘要

Whole chromosome paints for human (HSA) chromosomes 9, 12, 15 and 20 and arm-specific paints for HSA16p, 19p and 19q were applied on donkey metaphase spreads. All probes, except HSA19p, gave distinct hybridization signals on donkey chromosomes/chromosomal segments. The results show direct segmental homology between human and donkey genomes, and enable refinement of correspondence between donkey and horse karyotypes. Of specific interest is the identification of hitherto unknown correspondence between four equine acrocentric chromosomes (ECA22, 23, 25 and 28) and the donkey chromosomes. Overall, the findings mark the beginning of an ordered study of comparative organization of genomes/karyotypes of the equids, that can shed light on karyotype evolution and ancestral chromosomal condition in the Perissodactyls.
机译:将用于人类(HSA)9、12、15和20号染色体的全染色体涂料和用于HSA16p,19p和19q的手臂特异性涂料涂在驴子中期涂抹物上。除HSA19p外,所有探针均在驴染色体/染色体片段上产生独特的杂交信号。结果表明,人和驴基因组之间存在直接的片段同源性,并且能够完善驴和马核型之间的对应关系。特别令人感兴趣的是鉴定四个马背心中心染色体(ECA22、23、25和28)和驴染色体之间迄今未知的对应关系。总体而言,这些发现标志着有序研究马的基因组/核型的比较组织的开始,该研究可以阐明核果皮中核型的进化和祖先的染色体状况。

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