Data from: Restriction site-associated DNA sequencing (RAD-seq) reveals an extraordinary number of transitions among gecko sex-determining systems
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Sex chromosomes have evolved many times in animals and studying these replicate evolutionary “experiments” can help broaden our understanding of the general forces driving the origin and evolution of sex chromosomes. However this plan of study has been hindered by the inability to identify the sex chromosome systems in the large number of species with cryptic, homomorphic sex chromosomes. Restriction site-associated DNA sequencing (RAD-seq) is a critical enabling technology that can identify the sex chromosome systems in many species where traditional cytogenetic methods have failed. Using newly generated RAD-seq data from twelve gecko species, along with data from the literature, we reinterpret the evolution of sex-determining systems in lizards and snakes and test the hypothesis that sex chromosomes can routinely act as evolutionary traps. We uncovered between 17 and 25 transitions among gecko sex-determining systems. This is approximately ½ to ⅔ of the total number of transitions observed among all lizards and snakes. We find support for the hypothesis that sex chromosome systems can readily become trap-like and show that adding even a small number of species from understudied clades can greatly enhance hypothesis testing in a model-based phylogenetic framework. RAD-seq will undoubtedly prove useful in evaluating other species for male or female heterogamety, particularly the majority of fish, amphibian, and reptile species that lack visibly heteromorphic sex chromosomes, and will significantly accelerate the pace of biological discovery.
性染色体在动物界已独立演化多次,对这些可重复的演化“实验”展开研究,有助于拓展我们对驱动性染色体起源与演化的通用机制的认知。然而,此类研究思路长期受制于一个瓶颈:在大量拥有隐秘同形性染色体的物种中,研究者难以直接鉴定其性染色体系统。限制性酶切位点相关DNA测序(Restriction site-associated DNA sequencing, RAD-seq)是一项关键的支撑性技术,可在诸多传统细胞遗传学方法无法奏效的物种中,成功鉴定其性染色体系统。本研究依托12个壁虎物种的全新RAD-seq测序数据,并结合公开文献数据,重新诠释了蜥蜴与蛇类的性别决定系统演化历程,并验证了“性染色体可常规性地成为演化陷阱”这一假说。本研究揭示,壁虎类群的性别决定系统之间共发生了17至25次演化转换,这一数量约占全球蜥蜴与蛇类中已观测到的总转换次数的二分之一至三分之二。本研究为“性染色体系统可轻易演化出陷阱特性”的假说提供了支持,并证实:即便仅从研究不足的演化支中补充少量物种,也可极大提升基于模型的系统发育框架下的假说检验效力。毋庸置疑,RAD-seq技术将在其他物种的雌雄异配性别鉴定中发挥重要作用,尤其是针对绝大多数缺乏可见异形性染色体的鱼类、两栖类与爬行类物种,并将显著加速生物学发现的进程。



