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Gut microbial diversity in two insectivorous bats: Insights into the effect of different sampling sources

机译:两种食虫蝙蝠的肠道微生物多样性:洞察不同抽样来源的效果

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摘要

The gut microbiota is now known as a key factor in mammalian physiology and health. Our understanding of the gut microbial communities and their effects on ecology and evolution of their hosts is extremely limited in bats which represent the second largest mammalian order. In the current study, gut microbiota of three sampling sources (small intestine, large intestine, and feces) were characterized in two sympatric and insectivorous bats ( Rhinolophus sinicus and Myotis altarium ) by high‐throughput sequencing of the V3‐V4 region of the 16S rRNA gene. Combining with published studies, this work reveals that Gammaproteobacteria may be a dominant class in the whole Chiroptera and Fusobacteria is less observed in bats although it has been proven to be dominant in other mammals. Our results reveal that the sampling source influences alpha diversity of the microbial community in both studied species although no significant variations of beta diversity were observed, which support that fecal samples cannot be used as a proxy of the microbiota in other gut regions in wild animals.
机译:肠道微生物群现在被称为哺乳动物生理和健康的关键因素。我们对肠道微生物社区的理解及其对宿主的生态和生态和演变的影响极为有限,代表第二大哺乳动物命令。在目前的研究中,通过高通量测序16S的V3-V4区域的高通量测序,在两个SympaTric和食品蝙蝠(鼻窦Sinicus和Myotis altarium)中表征了三种取样来源的肠道微生物(小肠,大肠和粪便)的表征rRNA基因。结合出版研究,这项工作表明,伽造杆菌可能是整个Chiroptera的主要类,并且在蝙蝠中观察到蝙蝠的少量观察到虽然它被证明是在其他哺乳动物中占主导地位。我们的结果表明,采样源影响了研究中的微生物群体的α多样性,尽管未观察到β多样性的显着变化,其支持粪便样品不能用作野生动物中其他肠道中的微生物群的代理。

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