首页> 外文期刊>Cytogenetic and genome research >Cross-species chromosome painting in the Perissodactyla: delimitation of homologous regions in Burchell's zebra (Equus burchellii) and the white (Ceratotherium simum) and black rhinoceros (Diceros bicornis)
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Cross-species chromosome painting in the Perissodactyla: delimitation of homologous regions in Burchell's zebra (Equus burchellii) and the white (Ceratotherium simum) and black rhinoceros (Diceros bicornis)

机译:Perissodactyla中的跨物种染色体绘画:Burchell斑马(Equus burchellii)和白色(Ceratotherium simum)和黑色犀牛(Diceros bicornis)的同源区域的划界

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摘要

Conserved chromosomal segments in the black rhinoceros, Diceros bicornis (DBI, 2n = 84), and its African sister-species the white rhinoceros, Ceratotherium simum (CSI, 2n = 82), were detected using Burchell's zebra (Equus burchellii, EBU, 2n = 44) chromosome-specific painting probes supplemented by a subset of those developed for the horse (Equus caballus, ECA, 2n = 64). In total 41 and 42 conserved autosomal segments were identified in C. simum and D. bicornis respectively. Only 21 rearrangements (20 fissions and 1 fusion) are necessary to convert the Burchell's zebra karyotype into that of the white rhinoceros. One fission distinguishes the D. bicornis and C. simum karyotypes which, excluding heterochromatic differences, are identical in all respects at this level of resolution. Most Burchell's zebra chromosomes correspond to two rhinoceros chromosomes although in four instances (EBU18, 19, 20 and 21) whole chromosome synteny has been retained among these species. In contrast, one rhinoceros chromosome (DBI1, CSI1) comprises two separate Burchell's zebra chromosomes (EBU11 and EBU17). In spite of the high diploid numbers of the two rhinoceros species their karyotypes are surprisingly conserved offering a glimpse of the putative ancestral perissodactyl condition and a broader understanding of genome organization in mammals.
机译:使用Burchell斑马(Equus burchellii,EBU,2n)检测到黑犀牛Diceros bicornis(DBI,2n = 84)和它的非洲姐妹物种白犀牛Ceratotherium simum(CSI,2n = 82)中的保守染色体片段。 = 44)特定于染色体的绘画探针,并补充了为马开发的那些探针的子集(Equus caballus,ECA,2n = 64)。分别在sim C.和C. bicornis中鉴定出总共41和42个保守的常染色体片段。将Burchell的斑马核型转换成白犀牛的核型仅需21次重排(20个裂变和1个融合)。一个裂变区分出了双角D. simium和单角C. simum核型,除异色差异外,在此分辨率级别上所有方面都是相同的。尽管在四个实例(EBU18、19、20和21)中,大多数Burchell的斑马染色体都对应于两个犀牛染色体,但这些物种中却保留了整个染色体的同构。相反,一个犀牛染色体(DBI1,CSI1)包含两个独立的Burchell斑马染色体(EBU11和EBU17)。尽管这两个犀牛物种的二倍体数量很高,但它们的核型却得到了惊人的保守,从而使人们可以一目了然地了解祖先的过周半乳糖状态,并对哺乳动物的基因组组织有了更广泛的了解。

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