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一个悖论被揭示:四叉角鹿的核型进化是通过串联融合(哺乳动物,牛科,四叉角鹿)发生的。

A paradox revealed: karyotype evolution in the four-horned antelope occurs by tandem fusion (Mammalia, Bovidae, Tetracerus quadricornis).

机构信息

Department of Botany and Zoology, University of Stellenbosch, Matieland, South Africa.

出版信息

Chromosome Res. 2010 Feb;18(2):277-86. doi: 10.1007/s10577-010-9115-1. Epub 2010 Mar 5.

Abstract

The four-horned antelope, Tetracerus quadricornis, is a karyotypic novelty in Bovidae since chromosomal evolution in this species is driven by tandem fusions in contradiction to the overwhelming influence of Robertsonian fusions in other species within the family. Using a combination of differential staining and molecular cytogenetic techniques, we provide the first description of the species' karyotype, draw phylogenetic inferences from the cytogenetic data and discuss possible mechanisms underlying the formation of the tandem fusions in this species. We show (a) that pairs 1-6 of Tetracerus correspond to a combination of Bos taurus orthologous chromosomes that are tandemly fused head to tail, (b) the presence of interstitial centromeric satellite DNA at the junctions of orthologous blocks defined by the cross-species painting data and (c) that in some instances, residual telomeric sequences persist at these sites. We conclude that the attendant result of each fusion is an enlarged acrocentric fusion element comprising a single functional centromere and two terminal telomeres that, collectively, led to a reduction of the 2n = 58 bovid ancestral acrocentric chromosomal complement to the 2n = 38 detected in the four-horned antelope.

摘要

四叉角羚(Tetracerus quadricornis)是牛科中一种染色体核型的新发现,因为该物种的染色体进化是由串联融合驱动的,与该科内其他物种中占主导地位的罗伯逊易位融合形成鲜明对比。我们结合差异染色和分子细胞遗传学技术,首次对该物种的核型进行了描述,从细胞遗传学数据中推断出系统发育关系,并讨论了该物种中串联融合形成的可能机制。我们表明:(a)四叉角羚的 1-6 号染色体对与牛科中同源染色体的组合相对应,这些染色体是头尾串联融合的;(b)在跨物种杂交数据定义的同源块交界处存在着着丝粒卫星 DNA;(c)在某些情况下,这些位点仍保留着残余的端粒序列。我们得出结论,每次融合的结果是一个扩大的近端着丝粒融合元素,包含一个单一的功能着丝粒和两个末端端粒,这些融合元素共同导致了 2n=58 的牛科祖先近端着丝粒染色体组合减少到在四叉角羚中检测到的 2n=38。

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