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Amphibian gut microbiota shifts differentially in community structure but converges on habitat-specific predicted functions

机译:两栖动物肠道菌群在群落结构上的变化不同,但会收敛于特定于生境的预测功能

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Complex microbial communities inhabit vertebrate digestive systems but thorough understanding of the ecological dynamics and functions of host-associated microbiota within natural habitats is limited. We investigate the role of environmental conditions in shaping gut and skin microbiota under natural conditions by performing a field survey and reciprocal transfer experiments with salamander larvae inhabiting two distinct habitats (ponds and streams). We show that gut and skin microbiota are habitat-specific, demonstrating environmental factors mediate community structure. Reciprocal transfer reveals that gut microbiota, but not skin microbiota, responds differentially to environmental change. Stream-to-pond larvae shift their gut microbiota to that of pond-to-pond larvae, whereas pond-to-stream larvae change to a community structure distinct from both habitat controls. Predicted functions, however, match that of larvae from the destination habitats in both cases. Thus, microbial function can be matched without taxonomic coherence and gut microbiota appears to exhibit metagenomic plasticity.
机译:复杂的微生物群落居住在脊椎动物的消化系统中,但是对自然栖息地中宿主相关微生物群的生态动力学和功能的透彻了解是有限的。我们通过对sal生活在两个不同生境(池塘和溪流)中的am幼虫进行实地调查和相互转移实验,来研究环境条件在自然条件下塑造肠道和皮肤微生物群中的作用。我们显示肠道和皮肤微生物群是特定于栖息地的,表明环境因素介导了社区结构。相互转移表明,肠道菌群(而非皮肤菌群)对环境变化的反应不同。河塘幼虫的肠道菌群转移到池塘塘幼虫的肠道菌群,而池塘溪流幼虫的肠道菌群变成不同于两个生境控制区的群落结构。然而,在两种情况下,预测的功能都与目标栖息地的幼虫相匹配。因此,微生物功能可以在没有分类一致性的情况下进行匹配,并且肠道菌群似乎具有宏基因组可塑性。

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