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适应性辐射演化的安乐蜥中保守的性染色体。

Conserved sex chromosomes across adaptively radiated Anolis lizards.

作者信息

Rovatsos Michail, Altmanová Marie, Pokorná Martina, Kratochvíl Lukáš

机构信息

Department of Ecology, Faculty of Science, Charles University in Prague, Viničná 7, 12844 Praha 2, Czech Republic.

出版信息

Evolution. 2014 Jul;68(7):2079-85. doi: 10.1111/evo.12357. Epub 2014 Mar 20.

Abstract

Vertebrates possess diverse sex-determining systems, which differ in evolutionary stability among particular groups. It has been suggested that poikilotherms possess more frequent turnovers of sex chromosomes than homoiotherms, whose effective thermoregulation can prevent the emergence of the sex reversals induced by environmental temperature. Squamate reptiles used to be regarded as a group with an extensive variability in sex determination; however, we document how the rather old radiation of lizards from the genus Anolis, known for exceptional ecomorphological variability, was connected with stability in sex chromosomes. We found that 18 tested species, representing most of the phylogenetic diversity of the genus, share the gene content of their X chromosomes. Furthermore, we discovered homologous sex chromosomes in species of two genera (Sceloporus and Petrosaurus) from the family Phrynosomatidae, serving here as an outgroup to Anolis. We can conclude that the origin of sex chromosomes within iguanas largely predates the Anolis radiation and that the sex chromosomes of iguanas remained conserved for a significant part of their evolutionary history. Next to therian mammals and birds, Anolis lizards therefore represent another adaptively radiated amniote clade with conserved sex chromosomes. We argue that the evolutionary stability of sex-determining systems may reflect an advanced stage of differentiation of sex chromosomes rather than thermoregulation strategy.

摘要

脊椎动物拥有多样的性别决定系统,这些系统在特定类群中的进化稳定性存在差异。有人提出,变温动物的性染色体更替比恒温动物更为频繁,恒温动物有效的体温调节能够防止因环境温度引发的性反转现象出现。有鳞目爬行动物过去被视为性别决定具有广泛变异性的类群;然而,我们记录了以独特的生态形态变异性而闻名的安乐蜥属蜥蜴相当古老的辐射分化,是如何与性染色体的稳定性相关联的。我们发现,代表该属大部分系统发育多样性的18个受试物种共享其X染色体的基因内容。此外,我们在角蜥科的两个属(强棱蜥属和岩蜥属)的物种中发现了同源性染色体,在这里它们作为安乐蜥的外类群。我们可以得出结论,鬣蜥中性染色体的起源在很大程度上早于安乐蜥的辐射分化,并且鬣蜥的性染色体在其进化历史的很大一部分时间里都保持保守。因此,除了有胎盘类哺乳动物和鸟类之外,安乐蜥蜥蜴代表了另一个具有保守性染色体的适应性辐射分化的羊膜动物类群。我们认为,性别决定系统的进化稳定性可能反映了性染色体分化的高级阶段,而非体温调节策略。

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