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Phylogenomic Analysis of a Putative Missing Link Sparks Reinterpretation of Leech Evolution

机译:推测的缺失环节的植物学分析引发水Lee进化的重新解释。

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摘要

Leeches (Hirudinida) comprise a charismatic, yet often maligned group of organisms. Despite their ecological, economic, and medical importance, a general consensus on the phylogenetic relationships of major hirudinidan lineages is lacking. This absence of a consistent, robust phylogeny of early-diverging lineages has hindered our understanding of the underlying processes that enabled evolutionary diversification of this clade. Here, we used an anchored hybrid enrichment-based phylogenomic approach, capturing hundreds of loci to investigate phylogenetic relationships among major hirudinidan lineages and their closest living relatives. Our results suggest that a dramatic reinterpretation of early leech evolution is warranted. We recovered Branchiobdellida as sister to a clade that includes all major lineages of hirudinidans, but found Acanthobdella to be nested within Oceanobdelliformes. These results cast doubt on the utility of Acanthobdella as a “missing link” used to explain the origin of blood-feeding in hirudineans. Further, our results support a deep divergence between predominantly marine and freshwater lineages, while not supporting the reciprocal monophyly of jawed and proboscis-bearing leeches. To sum up, our phylogenomic resolution of early-diverging leeches provides a necessary foundation for illuminating the evolution of host–symbiont associations and key adaptations that have allowed leeches to colonize a wide diversity of habitats worldwide.
机译:水ches(Hirudinida)属于一种魅力十足的生物,但通常是有害的。尽管它们具有生态,经济和医学重要性,但对于主要的水rud科谱系的系统发育关系尚缺乏普遍共识。缺乏早期分化谱系的一致,强大的系统发育,这阻碍了我们对使进化进化多样化的潜在过程的理解。在这里,我们使用了基于锚定杂交富集的系统生物学方法,捕获了数百个基因座,以研究主要的水rud纲血统及其近亲之间的系统发育关系。我们的结果表明,有必要对水early的早期进化进行戏剧性的重新解释。我们发现Branchiobdellida作为一个进化枝的姊妹,该进化枝涵盖了hirudinidans的所有主要血统,但发现Acanthobdella嵌套在Oceanobdelliformes中。这些结果使人们怀疑棘刺藻作为“缺失环节”的用途,该现象被用来解释水rud科动物的采血起源。此外,我们的结果支持主要海洋和淡水世系之间的深层分歧,但不支持颚颚和长鼻水pro的互惠性。综上所述,我们对早发水lee的系统生物学解析为阐明寄主-共生动物协会的演变和主要的适应措施提供了必要的基础,这些变化使水ches能够在全球范围内栖息。

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