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首页> 外文期刊>Genome Biology and Evolution >Evolution of Young Sex Chromosomes in Two Dioecious Sister Plant Species with Distinct Sex Determination Systems
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Evolution of Young Sex Chromosomes in Two Dioecious Sister Plant Species with Distinct Sex Determination Systems

机译:不同性别决定系统在两个雌雄异体姐妹植物物种中年轻性染色体的进化

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摘要

In the last decade, progress has been made in methods to identify the sex determination system in plants. This gives the opportunity to study sex chromosomes that arose independently at different phylogenetic scales, and thus allows the discovery and the understanding of early stages of sex chromosome evolution. In the genus Silene, sex chromosomes have evolved independently in at least two clades from a nondioecious ancestor, the Melandrium and Otites sections. In the latter, sex chromosomes could be younger than in the section Melandrium, based on phylogenetic studies and as no heteromorphic sex chromosomes have been detected. This section might also exhibit lability in sex determination, because male heterogamy and female heterogamy have been suggested to occur.In this study, we investigated the sex determination system of two dioecious species in the section Otites (Silene otites and its close relative Silene pseudotites). Applying the new probabilistic method SEX-DETector on RNA-seq data from cross-controlled progenies, we inferred their most likely sex determination system and a list of putative autosomal and sex-linked contigs. We showed that the two phylogenetically close species differed in their sex determination system (XY versus ZW) with sex chromosomes that derived from two different pairs of autosomes. We built a genetic map of the sex chromosomes and showed that both pairs exhibited a large region with lack of recombination. However, the sex-limited chromosomes exhibited no strong degeneration. Finally, using the “ancestral” autosomal expression of sex-linked orthologs of nondioecious S. nutans, we found a slight signature of dosage compensation in the heterogametic females of S. otites.
机译:在过去的十年中,在鉴定植物性别决定系统的方法上取得了进展。这提供了研究在不同系统发生尺度上独立出现的性染色体的机会,因此可以发现和理解性染色体进化的早期阶段。在Silene属中,性染色体在至少一个非雌雄异体的祖先(Melandrium和Otites区域)中独立进化。在后一种情况下,根据系统发育研究,性染色体可能比“ Melandrium”部分年轻,因为未检测到异形性染色体。本节可能还表现出性别决定上的不稳定性,因为已建议发生男性和女性的一夫一妻制。 。将新的概率方法SEX-DETector应用到交叉控制后代的RNA-seq数据上,我们推断出它们最可能的性别决定系统以及推定的常染色体和与性别相关的重叠群。我们表明,两个系统发育上接近的物种在其性别决定系统(XY与ZW)方面有所不同,它们的性染色体来自两对不同的常染色体。我们建立了性染色体的遗传图谱,并显示这两个对均显示出缺乏重组的大区域。然而,性别受限的染色体没有表现出强烈的变性。最后,使用非雌性链球菌性别相关直向同源物的“祖先”常染色体表达,我们发现在S. otites异配子雌性中剂量补偿的轻微特征。

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