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Spatial and Phylogenetic Structure of DNA-species of Alpine Stoneflies Community Assemblages across Seven Habitats

机译:七个栖息地的高山石蝇群落组合DNA物种的空间和系统发育结构。

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Ecological and evolutionary mechanisms that govern species coexistence and drive community assembly is a long-lasting question in biology. However, little is known about how such mechanisms act in a habitats scale. Here, we estimated the spatial and phylogenetic structure of stoneflies community assemblies across seven habitats types among 20 sampling sites in Alpine rivers to be able to understand the pattern of community assembly. We used mitochondrial DNA, coxl, and nuclear DNA, ITS, genetic markers on 21 stoneflies morpho-species. We estimated putative DNA-species by General Mixed Yule Coalescent model for spatial structure analysis and obtained the phylogenetic signal by four phylogenetic diversity indices. We found that the spatial structure of stonefly community assembly were influenced by glide, riffle and deep-flow possible owed to the high species turnover observed. While, a phylogenetically clustered was found for deep-flow habitat, suggesting a strong habitat filtering. Long-term adaptation, dispersal limitations, low species competition, and colonization history could be possible mechanisms that induce co-occurring species to share niche requirements in deep-flow habitat. Our study shows the importance of different habitats on the spatial and phylogenetic structure of stoneflies community assemblies and sheds light on the mechanisms of habitat-specific diversity that may help improve conservation practices.
机译:控制物种共存并推动社区聚集的生态和进化机制是生物学中一个长期存在的问题。然而,人们对这种机制如何在生境范围内发挥作用知之甚少。在这里,我们估算了高山河流中20个采样点中7种生境类型的石蝇群落集会的空间和系统发育结构,以便能够了解群落集聚的模式。我们在21个石蝇形态物种上使用了线粒体DNA,coxl和核DNA,ITS,遗传标记。我们通过通用混合Yule联合模型估计推定的DNA物种用于空间结构分析,并通过四个系统发育多样性指数获得了系统发育信号。我们发现,由于观察到的高树种周转率,石蝇群落组装的空间结构受到滑行,浅滩和深流的影响。同时,在系统发育上发现了深流生境的聚类,表明强烈的生境过滤。长期适应,扩散限制,低物种竞争和定殖历史可能是诱导共生物种在深水生境中共享生态位需求的可能机制。我们的研究表明不同生境对石蝇群落集合的空间和系统发育结构的重要性,并阐明了特定于生境的多样性机制,可能有助于改善保护措施。

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