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在古老进化层中,有胎盘类动物X和Y染色体配子同源基因间的遗传信息交换。

Exchange of genetic information between therian X and Y chromosome gametologs in old evolutionary strata.

作者信息

Peneder Peter, Wallner Barbara, Vogl Claus

机构信息

Institut für Tierzucht und Genetik Veterinärmedizinische Universität Wien Vienna Austria.

Department für Mikrobiologie, Immunbiologie und Genetik Zentrum für Molekulare Biologie Universität Wien Vienna Austria.

出版信息

Ecol Evol. 2017 Sep 12;7(20):8478-8487. doi: 10.1002/ece3.3278. eCollection 2017 Oct.

Abstract

Therian X and Y sex chromosomes arose from a pair of autosomes. Y chromosomes consist of a pseudoautosomal region that crosses over with the X chromosome and a male-specific -chromosomal region that does not. The X chromosome can be structured into "evolutionary strata". Divergence of X-chromosomal genes from their gametologs is similar within a stratum, but differs among strata, likely caused by a different onset of suppression of crossing over between gametologs. After stratum formation, exchange of information between gametologs has long been believed absent; however, recent studies have shown limited exchange, likely through gene conversion. Herein we investigate exchange of genetic information between gametologs in old strata that formed before the split of Laurasiatheria (cattle) from Euarchontoglires (primates and rodents) with a new phylogenetic approach. A prerequisite for our test is an overall preradiative topology, that is, all X-chromosomal gametologs are more similar among themselves than to Y-chromosomal sequences. Screening multiple sequence alignments of the coding sequences of genes from cattle, mice, and humans identified four genes, ,,, and , exhibiting a preradiation topology. Applying our test, we detected exchange of genetic information between all four X and Y gametologs after stratum formation.

摘要

兽亚纲的X和Y性染色体起源于一对常染色体。Y染色体由一个与X染色体发生交叉的拟常染色体区域和一个不发生交叉的雄性特异性染色体区域组成。X染色体可被构建成“进化层”。在一个进化层内,X染色体基因与其同源基因的分歧是相似的,但在不同进化层之间则有所不同,这可能是由于同源基因之间交叉抑制的起始时间不同所致。长期以来,人们一直认为在进化层形成后,同源基因之间不存在信息交换;然而,最近的研究表明存在有限的交换,可能是通过基因转换实现的。在此,我们采用一种新的系统发育方法,研究在劳亚兽总目(牛)与真灵长大目(灵长类和啮齿类)分化之前形成的古老进化层中同源基因之间的遗传信息交换。我们测试的一个前提是总体辐射前拓扑结构,即所有X染色体同源基因之间的相似性高于它们与Y染色体序列的相似性。对牛、小鼠和人类基因编码序列的多序列比对进行筛选,鉴定出四个基因,即 、 、 和 ,它们呈现出辐射前拓扑结构。应用我们的测试方法,我们检测到在进化层形成后,所有四个X和Y同源基因之间都存在遗传信息交换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09af/5648654/973e1a0ec965/ECE3-7-8478-g001.jpg

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