深分化的Zodarion食蚁蜘蛛的系统基因组学和位点缺失模式表明,RAD-seq在属级蜘蛛系统发育方面具有很高的潜力

IF 3.9 2区 生物学 Q1 EVOLUTIONARY BIOLOGY
Cladistics Pub Date : 2021-10-26 DOI:10.1111/cla.12493
David Ortiz, Stano Pekár, Malahat Dianat
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引用次数: 4

摘要

RAD测序以相对较低的成本产生大量全基因组数据,并且不需要以前的分类群特异性信息,使其成为高度多样化和被忽视生物的进化研究的理想选择。然而,对系统发育距离的信息衰减的担忧阻碍了其用于评估超特异性关系的使用。在这里,利用双消化限制相关DNA (ddRAD)数据,我们对Zodarion这种高度多样化的蜘蛛属的系统发育进行了第一次深入的研究。我们探讨了基因座和分类单元过滤在串联和多物种凝聚重建方法中的影响,并根据分类单元之间的分化时间和线粒体分化研究了信息缺失的模式。我们发现松弛的位点过滤和嵌套的分类单元过滤策略最大化了分子信息量,提高了系统发育推断。正如预期的那样,等位基因向更深的时间和线粒体分化有一个明显的模式,但在整个系统发育过程中,系统发育信号仍然很强。因此,我们推断的拓扑几乎是完全解析的、高度支持的,并且在设置和推理方法之间明显一致,这突出了Zodarion分类法中的总体不一致。由于Zodarion似乎是最古老和线粒体最多样化的蜘蛛属之一,我们的研究结果表明,ddRAD数据在推断蜘蛛之间的属内关系方面具有很高的潜力,也可能在其他分类类群中也是如此。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phylogenomics and loci dropout patterns of deeply diverged Zodarion ant-eating spiders suggest a high potential of RAD-seq for genus-level spider phylogenetics

RAD sequencing yields large amounts of genome-wide data at a relatively low cost and without requiring previous taxon-specific information, making it ideal for evolutionary studies of highly diversified and neglected organisms. However, concerns about information decay with phylogenetic distance have discouraged its use for assessing supraspecific relationships. Here, using Double Digest Restriction Associated DNA (ddRAD) data, we perform the first deep-level approach to the phylogeny of Zodarion, a highly diversified spider genus. We explore the impact of loci and taxon filtering across concatenated and multispecies coalescent reconstruction methods and investigate the patterns of information dropout in reference to both the time of divergence and the mitochondrial divergence between taxa. We found that relaxed loci-filtering and nested taxon-filtering strategies maximized the amount of molecular information and improved phylogenetic inference. As expected, there was a clear pattern of allele dropout towards deeper time and mitochondrial divergences, but the phylogenetic signal remained strong throughout the phylogeny. Therefore, we inferred topologies that were almost fully resolved, highly supported, and noticeably congruent between setups and inference methods, which highlights overall inconsistency in the taxonomy of Zodarion. Because Zodarion appears to be among the oldest and most mitochondrially diversified spider genera, our results suggest that ddRAD data show high potential for inferring intra-generic relationships across spiders and probably also in other taxonomic groups.

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来源期刊
Cladistics
Cladistics 生物-进化生物学
CiteScore
8.60
自引率
5.60%
发文量
34
期刊介绍: Cladistics publishes high quality research papers on systematics, encouraging debate on all aspects of the field, from philosophy, theory and methodology to empirical studies and applications in biogeography, coevolution, conservation biology, ontogeny, genomics and paleontology. Cladistics is read by scientists working in the research fields of evolution, systematics and integrative biology and enjoys a consistently high position in the ISI® rankings for evolutionary biology.
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