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从马萨比特爪蟾 X. borealis 中获得的关于非洲爪蟾性染色体基因组学的新见解。

New insights into Xenopus sex chromosome genomics from the Marsabit clawed frog X. borealis.

机构信息

Biology Department, Life Sciences Building Room 328, McMaster University, Hamilton, Ontario, Canada.

Department of Molecular and Cell Biology, University of California, Berkeley, California, USA.

出版信息

J Evol Biol. 2022 Dec;35(12):1777-1790. doi: 10.1111/jeb.14078. Epub 2022 Aug 24.

Abstract

In many groups, sex chromosomes change frequently but the drivers of their rapid evolution are varied and often poorly characterized. With an aim of further understanding sex chromosome turnover, we investigated the polymorphic sex chromosomes of the Marsabit clawed frog, Xenopus borealis, using genomic data and a new chromosome-scale genome assembly. We confirmed previous findings that 54.1 Mb of chromosome 8L is sex-linked in animals from east Kenya and a laboratory strain, but most (or all) of this region is not sex-linked in natural populations from west Kenya. Previous work suggests possible degeneration of the Z chromosomes in the east population because many sex-linked transcripts of this female heterogametic population have female-biased expression, and we therefore expected this chromosome to not be present in the west population. In contrast, our simulations support a model where most or all of the sex-linked portion of the Z chromosome from the east acquired autosomal segregation in the west, and where much genetic variation specific to the large sex-linked portion of the W chromosome from the east is not present in the west. These recent changes are consistent with the hot-potato model, wherein sex chromosome turnover is favoured by natural selection if it purges a (minimally) degenerate sex-specific sex chromosome, but counterintuitively suggest natural selection failed to purge a Z chromosome that has signs of more advanced and possibly more ancient regulatory degeneration. These findings highlight complex evolutionary dynamics of young, rapidly evolving Xenopus sex chromosomes and set the stage for mechanistic work aimed at pinpointing additional sex-determining genes in this group.

摘要

在许多群体中,性染色体经常发生变化,但它们快速进化的驱动因素是多样的,而且往往特征描述不足。为了进一步了解性染色体的更替,我们利用基因组数据和一个新的染色体尺度基因组组装,研究了东肯尼亚和一个实验室品系的 Xenopus borealis 爪蟾的多态性性染色体。我们证实了之前的发现,即在东肯尼亚的动物和实验室品系中,8L 号染色体的 54.1Mb 是与性连锁的,但在来自西肯尼亚的自然种群中,这一区域的大部分(或全部)都不是与性连锁的。先前的研究表明,在东部种群中,Z 染色体可能已经退化,因为这个雌性异配性别群体中的许多与性连锁的转录本具有雌性偏倚表达,因此我们预计这个染色体在西部种群中不存在。相比之下,我们的模拟支持这样一种模型,即东部种群的 Z 染色体的大部分(或全部)与性连锁的部分在西部获得了常染色体分离,而东部 W 染色体的大的与性连锁的部分特有的大量遗传变异在西部不存在。这些最近的变化与“热土豆”模型一致,如果它清除了一个(最小限度)退化的性别特异性性染色体,那么性染色体的更替就会受到自然选择的青睐,但与直觉相反的是,自然选择未能清除一个可能更先进、可能更古老的调控退化的 Z 染色体。这些发现突出了 Xenopus 年轻、快速进化的性染色体的复杂进化动态,并为旨在确定该群体中其他性别决定基因的机制工作奠定了基础。

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