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首页> 外文期刊>EvoDevo >Genomic resources and toolkits for developmental study of whip spiders (Amblypygi) provide insights into arachnid genome evolution and antenniform leg patterning
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Genomic resources and toolkits for developmental study of whip spiders (Amblypygi) provide insights into arachnid genome evolution and antenniform leg patterning

机译:鞭子蜘蛛(Amblypygi)发育研究的基因组资源和工具包提供了对Alachnid基因组进化和天线腿部图案的见解

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摘要

The resurgence of interest in the comparative developmental study of chelicerates has led to important insights, such as the discovery of a genome duplication shared by spiders and scorpions, inferred to have occurred in the most recent common ancestor of Arachnopulmonata (a clade comprising the five arachnid orders?that bear book lungs). Nonetheless, several arachnid groups remain understudied in the context of development and genomics, such as the order Amblypygi (whip spiders). The phylogenetic position of Amblypygi in Arachnopulmonata posits them as an interesting group to test the incidence of the proposed genome duplication in the common ancestor of Arachnopulmonata, as well as the degree of retention of duplicates over 450 Myr. Moreover, whip spiders have their first pair of walking legs elongated and modified into sensory appendages (a convergence with the antennae of mandibulates), but the genetic patterning of these antenniform legs has never been investigated. We established genomic resources and protocols for cultivation of embryos and gene expression assays by in situ hybridization to study the development of the whip spider Phrynus marginemaculatus. Using embryonic transcriptomes from three species of Amblypygi, we show that the ancestral whip spider exhibited duplications of all ten Hox genes. We deploy these resources to show that paralogs of the leg gap genes dachshund and homothorax retain arachnopulmonate-specific expression patterns in P. marginemaculatus. We characterize the expression of leg gap genes Distal-less, dachshund-1/2 and homothorax-1/2 in the embryonic antenniform leg and other appendages, and provide evidence that allometry, and by extension the antenniform leg fate, is specified early in embryogenesis. This study is the first step in establishing P. marginemaculatus as a chelicerate?model for modern evolutionary developmental study, and provides the first resources sampling whip spiders for comparative genomics. Our results suggest that Amblypygi share a genome duplication with spiders and scorpions, and set up a framework to study the genetic specification of antenniform legs. Future efforts to study whip spider development must emphasize the development of tools for functional experiments in P. marginemaculatus.
机译:对比较的Chelocerates的比较发育研究的复苏导致了重要的见解,例如发现蜘蛛和蝎子共享的基因组重复,推断出在Arachnopulmonata最近的常见祖先(包括五个蛛网的枝条)中发生订单?熊书肺)。尽管如此,在开发和基因组学的背景下,几个Arachnid群体仍然被解读,例如订单amblypygi(鞭子蜘蛛)。 Amblymygi在蛛嘧啶的系统发育位置作为一个有趣的群体,以测试Arachnopulmonata的共同祖先的提出基因组重复的发病率,以及450多次数超过450 myr的保留程度。此外,鞭子蜘蛛具有它们的第一对行走腿,并修饰为感官阑尾(与悬垂的天线的收敛),但是从未研究过这些天线腿的遗传图案化。通过原位杂交研究鞭蜘蛛山脉Marginemaculatus的发育,我们建立了基因组资源和培养胚胎和基因表达测定的方案。使用来自三种amblypygi的胚胎转录om,我们表明祖先鞭打蜘蛛表现出所有十个霍尔基因的重复。我们部署了这些资源,以显示腿部间隙基因的帕拉戈尔科犬达克斯犬和Homothorax在P.Marginemaculatus中保留了甘载体特异性表达模式。我们在胚胎天然腿部和其他附带中表征腿部间隙基因的表达,DACHSHUND-1/2和HOMOTHORAX-1/2的表达,并提供了次要的证据,并通过延伸天数腿命运,提前指定胚胎发生。本研究是建立P.MargineMacaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaCaculatus的现代进化发育研究的模型,为比较基因组学提供了第一款资源采样鞭蜘蛛。我们的研究结果表明,Amblypygi与蜘蛛和蝎子分享了一个基因组重复,并建立了一个框架来研究天数腿的遗传规格。学习鞭子蜘蛛开发的未来努力必须强调在P.Marginemaculatus中的功能实验工具的发展。

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