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首页> 外文期刊>Arthropod Systematics & Phylogeny >Phylogenomic reconstruction of transcriptome dataconfirms the basal position of Prodoxidae moths withinthe order Lepidoptera
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Phylogenomic reconstruction of transcriptome dataconfirms the basal position of Prodoxidae moths withinthe order Lepidoptera

机译:转录组数据的系统学重建证实了鳞翅目目中前氧化蛾的基础位置

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Yucca moths (Prodoxidae) have long been considered by taxonomists to be basally positioned within the Lepidoptera in thesuperfamily Adeloidea. Recently, phylogenomic reconstructions of ordinal lepidopteran relationships using transcriptome data confrmedthe basal position of the Adeloidea and the positioning of the Tegeticula pollinating yucca moths within the superfamily. However, to date,no phylogenetic studies have been conducted attempting to position the Prodoxus bogus yucca moths using whole genome data. We incorporated our own transcriptome libraries into publicly available lepidopteran data in order to phylogenetically confrm the evolutionaryposition of the Prodoxidae within the Lepidoptera and to assess the position of Prodoxus relative to Tegeticula. Our phylotranscriptomicreconstruction verifed the Prodoxidae as the sister taxa to the basal Adelidae (Adeloidea), and Prodoxus as sister to Tegeticula. However,topological relationships among our four focal Tegeticula species contradicted recent fndings from RAD-seq analyses. We show that thisapparent paradox is in fact an artefact of the phylogenetic methods employed in building the ordinal level phylogeny (i.e. sequence alignment based on the frst two nucleotide positions only) and that the true Tegeticula relationships are recovered by using all three nucleotide base positions to correctly infer more recent evolutionary events. Our work shows the utility of next-generation sequencing (NGS)technologies whilst highlighting some technical considerations that may confound phylogenetic interpretation according to taxonomicscale. We add to the growing consensus that NGS techniques offer a prime opportunity to elucidate previously challenging questions inevolutionary biology.
机译:分类学家长期以来一直认为丝兰蛾(Prodoxidae)基本位于超家族Adeloidea的鳞翅目内。最近,使用转录组数据对序鳞翅目关系的种系重建,证实了Adeloidea的基础位置和超家族中Tegeticula授粉丝兰的位置。但是,迄今为止,尚未进行系统发育研究,试图利用全基因组数据来定位假单生丝兰。我们将自己的转录组文库整合到可公开获得的鳞翅目数据中,以便系统地确认鳞翅目中原氧化菌的进化位置,并评估相对于梯形纲的角膜突位置。我们的系统进化证明了Prodoxidae是基底Adelidae(Adeloidea)的姐妹类群,Prodoxus是Tegeticula的姐妹。然而,我们四个焦点的Tegeticula物种之间的拓扑关系与RAD-seq分析最近的发现相矛盾。我们表明,这种明显的悖论实际上是在建立有序水平的系统发育史(即仅基于前两个核苷酸位置进行序列比对)中所采用的系统发育方法的假象,并且通过使用所有三个核苷酸碱基位置恢复了真正的Tegeticula关系正确地推断出最近的进化事件。我们的工作展示了下一代测序(NGS)技术的实用性,同时着重强调了一些可能会根据分类标准混淆系统发育解释的技术因素。我们增加了越来越多的共识,即NGS技术为阐明以前挑战性的进化生物学提供了绝佳的机会。

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