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用于蛛形纲动物的超保守元件探针组具有很高的系统发育实用性。

High phylogenetic utility of an ultraconserved element probe set designed for Arachnida.

机构信息

Department of Biology, San Diego State University, 5500 Campanile Drive, San Diego, CA, 92182, USA.

Department of Biology, University of California, 900 University Avenue, Riverside, CA, 92521, USA.

出版信息

Mol Ecol Resour. 2017 Jul;17(4):812-823. doi: 10.1111/1755-0998.12621. Epub 2016 Nov 19.

Abstract

Arachnida is an ancient, diverse and ecologically important animal group that contains a number of species of interest for medical, agricultural and engineering applications. Despite their importance, many aspects of the arachnid tree of life remain unresolved, hindering comparative approaches to arachnid biology. Biologists have made considerable efforts to resolve the arachnid phylogeny; yet, limited and challenging morphological characters, as well as a dearth of genetic resources, have hindered progress. Here, we present a genomic toolkit for arachnids featuring hundreds of conserved DNA regions (ultraconserved elements or UCEs) that allow targeted sequencing of any species in the arachnid tree of life. We used recently developed capture probes designed from conserved regions of available arachnid genomes to enrich a sample of loci from 32 diverse arachnids. Sequence capture returned an average of 487 UCE loci for all species, with a range from 170 to 722. Phylogenetic analysis of these UCEs produced a highly resolved arachnid tree with relationships largely consistent with recent transcriptome-based phylogenies. We also tested the phylogenetic informativeness of UCE probes within the spider, scorpion and harvestman orders, demonstrating the utility of these markers at shallower taxonomic scales and suggesting that these loci will be useful for species-level differences. This probe set will open the door to phylogenomic and population genomic studies across the arachnid tree of life, enabling systematics, species delimitation, species discovery and conservation of these diverse arthropods.

摘要

蛛形动物是一个古老、多样且具有重要生态意义的动物群体,其中包含许多对医学、农业和工程应用有兴趣的物种。尽管它们很重要,但蛛形动物的生命之树的许多方面仍未解决,这阻碍了对蛛形动物生物学的比较研究。生物学家为解决蛛形动物的系统发育做出了相当大的努力;然而,有限且具有挑战性的形态特征,以及遗传资源的缺乏,阻碍了进展。在这里,我们为蛛形动物提供了一个基因组工具包,其中包含数百个保守的 DNA 区域(超保守元件或 UCEs),这些区域允许对生命之树中的任何蛛形动物物种进行靶向测序。我们使用了最近从现有蛛形动物基因组的保守区域设计的捕获探针,从 32 种不同的蛛形动物中富集了一些基因座。序列捕获为所有物种平均返回了 487 个 UCE 基因座,范围从 170 到 722 个。对这些 UCEs 的系统发育分析产生了一个高度解决的蛛形动物树,其关系与最近基于转录组的系统发育基本一致。我们还测试了 UCE 探针在蜘蛛、蝎子和盲蛛目订单中的系统发育信息量,证明了这些标记在较浅的分类尺度上的有用性,并表明这些基因座将对物种水平的差异有用。这个探针集将为蛛形动物的生命之树进行系统发育和群体基因组学研究打开大门,使这些多样化的节肢动物的系统学、物种界定、物种发现和保护成为可能。

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