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Phylogenetic relationships among the clownfish-hosting sea anemones

机译:小丑鱼宿主海葵之间的系统发育关系

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The clownfish-sea anemone symbiosis has been a model system for understanding fundamental evolutionary and ecological processes. However, our evolutionary understanding of this symbiosis comes entirely from studies of clownfishes. A holistic understanding of a model mutualism requires systematic, biogeographic, and phylogenetic insight into both partners. Here, we conduct the largest phylogenetic analysis of sea anemones (Order Actiniaria) to date, with a focus on expanding the biogeographic and taxonomic sampling of the 10 nominal clownfish-hosting species. Using a combination of mtDNA and nuDNA loci we test (1) the monophyly of each clownfish-hosting family and genus, (2) the current anemone taxonomy that suggests symbioses with clownfishes evolved multiple times within Actiniaria, and (3) whether, like the clownfishes, there is evidence that host anemones have a Coral Triangle biogeographic origin. Our phylogenetic reconstruction demonstrates widespread poly- and para-phyly at the family and genus level, particularly within the family Stichodactylidae and genus Stichodactyla, and suggests that symbioses with clownfishes evolved minimally three times within sea anemones. We further recover evidence for a Tethyan biogeographic origin for some clades. Our data provide the first evidence that clownfish and some sea anemone hosts have different biogeographic origins, and that there may be cryptic species of host anemones. Finally, our findings reflect the need for a major taxonomic revision of the clownfish-hosting sea anemones.
机译:小丑鱼海葵共生是一种了解基本进化和生态过程的模型系统。然而,我们对这种共生的进化理解完全来自小丑鱼的研究。对模型共同主义的整体理解需要系统性,生物地理和系统发育和系统发育洞察。在这里,我们迄今为止对海洋海葵(命令Actiniaria)进行最大的系统发育分析,重点是扩大10个名称宿主物种的生物地理和分类法。使用MTDNA和NUDNA基因座的组合我们测试(1)每种小丑鱼宿主家庭和属的单独,(2)当前的海葵分类,表明在Actiniaria的多次在actiniaria在多次进化中,(3)是否像小丑鱼,有证据表明宿主银音有珊瑚三角生物地理原产地。我们的系统发育重建在家庭和属的水平上普遍存在,特别是在家庭和属嗜睡术和嗜酸乳氏菌属中,并表明患有小丑鱼的Symbiase在海葵内部的三次进化。我们进一步恢复了一些曲折的Tethyan生物地理的证据。我们的数据提供了第一个证据,即小丑鱼和一些海葵宿主具有不同的生物地科起源,并且可能有宿主银源的神秘种类。最后,我们的调查结果反映了对托管宿主海葵的主要分类改革的需求。

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