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马科动物的比较图谱:与马和哈特曼山斑马相比,驴的X染色体发生了重排。

Comparative mapping in equids: the asine X chromosome is rearranged compared to horse and Hartmann's mountain zebra.

作者信息

Raudsepp T, Lear T L, Chowdhary B P

机构信息

Department of Veterinary Anatomy and Public Health, Texas A & M University, College Station, TX, USA.

出版信息

Cytogenet Genome Res. 2002;96(1-4):206-9. doi: 10.1159/000063050.

Abstract

The X chromosomes of the extant equids, in general, share morphology and banding pattern similarities. However, the donkey X is, in part, an exception because of significantly different centromeric index and variant banding patterns in the pericentromeric region. To verify the underlying molecular basis of this difference, twelve equine BAC clones were FISH mapped to donkey (EAS) and Hartmann's mountain zebra (EZH) metaphase spreads. Loci from the terminal region of Xp and distal to terminal regions of the Xq showed the same order and relative position in all three species, implying cross-species conservation of these chromosomal segments. However, loci from the proximal/pericentromeric regions of either arms showed similar FISH locations in horse and zebra but a slightly deviant location and relative position in the donkey. Three of the markers (tel-OTC, TRAP170 and (ps)ALDH2- cen) located on the short arm of ECAX and EZHX were found inverted on the long arm of EASX, along with the transposition of the centromere. This molecular evidence of a pericentromeric inversion helps define the likely evolutionary breakpoints causing the rearrangement. The breakpoints most likely correspond to the region between Xp16-->q12 in the horse and Xp12-->q13 in the donkey. The findings coupled with the highly conserved X-chromosome gene order between horse and outgroup species, human and cat, suggest that the equine type X is ancestral while the asine type X arose as a result of an independent inversion event. The study adds two new markers to horse, 11 to donkey and 12 to Hartmann's zebra gene maps, thus contributing to the expansion of comparative maps in the equids.

摘要

现存马科动物的X染色体总体上在形态和带型模式上具有相似性。然而,驴的X染色体部分是个例外,因为其着丝粒指数明显不同,且在着丝粒周围区域有变异的带型模式。为了验证这种差异的潜在分子基础,将12个马属BAC克隆进行荧光原位杂交(FISH)定位到驴(EAS)和哈特曼山斑马(EZH)的中期染色体 spreads 上。来自Xp末端区域和Xq末端远端区域的基因座在所有三个物种中显示出相同的顺序和相对位置,这意味着这些染色体片段在跨物种间具有保守性。然而,来自任何一条臂近端/着丝粒周围区域的基因座在马和斑马中显示出相似的FISH定位,但在驴中位置和相对位置略有偏差。位于家马(ECAX)和哈特曼山斑马(EZHX)X染色体短臂上的三个标记(tel-OTC、TRAP170和(ps)ALDH2-cen)在驴X染色体(EASX)的长臂上被发现发生了倒位,同时着丝粒也发生了转位。这种着丝粒周围倒位的分子证据有助于确定导致重排的可能进化断点。这些断点很可能对应于马的Xp16→q12和驴的Xp12→q13之间的区域。这些发现与马和外类群物种(人类和猫)之间高度保守的X染色体基因顺序相结合,表明马型X染色体是祖先型,而驴型X染色体是独立倒位事件的结果。该研究为马的基因图谱增加了两个新标记,为驴的基因图谱增加了11个,为哈特曼山斑马的基因图谱增加了12个,从而有助于扩展马科动物的比较图谱。

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