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Freshwater transitions and symbioses shaped the evolution and extant diversity of caridean shrimps

机译:淡水过渡和共生影响了Caridean虾的进化和生存多样性

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摘要

Understanding the processes that shaped the strikingly irregular distribution of species richness across the Tree of Life is a major research agenda. Changes in ecology may go some way to explain the often strongly asymmetrical fates of sister clades, and we test this in the caridean shrimps. First appearing in the Lower Jurassic, there are now ~3500 species worldwide. Carideans experienced several independent transitions to freshwater from marine habitats, while many of the marine species have also evolved a symbiotic lifestyle. Here we use diversification rate analyses to test whether these ecological traits promote or inhibit diversity within a phylogenetic framework. We demonstrate that speciation rates are more than twice as high in freshwater clades, whilst symbiotic ecologies are associated with lower speciation rates. These lower rates amongst symbiotic species are of concern given that symbioses often occur in some of the most diverse, delicately balanced and threatened marine ecosystems.
机译:了解影响整个生命之树中物种丰富度显着不规则分布的过程是一项重要的研究议程。生态学的变化可能以某种方式解释了姐妹进化枝通常很不对称的命运,我们在Cari​​dean虾中对此进行了测试。最早出现在下侏罗纪,现在全球约有3500种。 Carideans经历了几次从海洋栖息地向淡水的独立过渡,而许多海洋物种也已经进化出一种共生的生活方式。在这里,我们使用多元化率分析来测试这些生态特征是否在系统发育框架内促进或抑制了多样性。我们证明淡水进化枝的物种形成率高出两倍多,而共生生态与更低的物种形成率相关。考虑到共生常常发生在一些最多样化,微妙平衡和受威胁的海洋生态系统中,这些共生物种中较低的比率令人关注。

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