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Unioverse: A phylogenomic resource for reconstructing the evolution of freshwater mussels (Bivalvia, Unionoida)

机译:单向:重建淡水贻贝演化的系统核发生学资源(双戊类,Unionoida)

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摘要

Freshwater mussels (order Unionoida) are a diverse radiation of parasitic bivalves that require temporary larval encystment on vertebrate hosts to complete metamorphosis to free-living juveniles. The freshwater mussel-fish symbiosis represents a useful relationship for understanding eco-evolutionary dynamics in freshwater ecosystems but the practicality of this promising model system is undermined by the absence of a stable freshwater mussel phylogeny. Inadequate character sampling is the primary analytical impediment obfuscating a coherent phylogeny of freshwater mussels, specifically the lack of nuclear molecular markers appropriate for reconstructing supraspecific relationships and testing macroevolutionary hypotheses. The objective of this study is to develop a phylogenomic resource, specifically an anchored hybrid enrichment probe set, capable of capturing hundreds of molecular markers from taxa distributed across the entirety of freshwater mussel biodiversity. Our freshwater mussel specific anchored hybrid enrichment probe set, called Unioverse, successfully captures hundreds of nuclear protein-coding loci from all major lineages of the Unionoida and will facilitate more data-rich and taxonomically inclusive reconstructions of freshwater mussel evolution. We demonstrate the utility of this resource at three disparate evolutionary scales by estimating a backbone phylogeny of the Bivalvia with a focus on the Unionoida, reconstructing the subfamily-level relationships of the Unionidae, and recovering the systematic position of the phylogenetically unstable genus Plectomerus.
机译:淡水贻贝(命令Unionoida)是寄生致纤维散热的各种辐射,需要临床幼虫患者,以完成变态为自由生活青少年。淡水贻贝 - 鱼类共生代表了了解淡水生态系统中的生态进化动态的有用关系,但是这种有前途的模型系统的实用性被稳定的淡水贻贝系统发育不存在。性状抽样不足是初级分析障碍混淆淡水贻贝的相干系统发育,特别是缺乏适合重建上所得的关系和测试宏观调整假设的核分子标记。本研究的目的是开发一种系统托儿科资源,特别是一种锚定的杂交富集探针组,能够捕获来自分布在整个淡水贻贝生物多样性的分布的数百种分子标记。我们的淡水贻贝特定的锚定杂交浓缩探针组,称为单向,成功地捕获了百核蛋白质编码基因座的所有主要谱系,并将促进淡水贻贝进化的更丰富和分类学包容性重建。我们通过估计双相骨骼的骨架系统,重点估计了联合水域的骨髓系统,重建了枝条的亚家族级关系,并恢复了文机的亚家族水平关系,并回收了系统源性不稳定属Plectomerus的系统位置,从而证明了这一资源的效用。

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