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Environmental radiation alters the gut microbiome of the bank vole Myodes glareolus

机译:环境辐射改变了田鼠Myodes glareolus的肠道微生物组

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摘要

Gut microbiota composition depends on many factors, although the impact of environmental pollution is largely unknown. We used amplicon sequencing of bacterial 16S rRNA genes to quantify whether anthropogenic radionuclides at Chernobyl (Ukraine) impact the gut microbiome of the bank vole Myodes glareolus. Exposure to elevated levels of environmental radionuclides had no detectable effect on the gut community richness but was associated with an almost two-fold increase in the Firmicutes:Bacteroidetes ratio. Animals inhabiting uncontaminated areas had remarkably similar gut communities irrespective of their proximity to the nuclear power plant. Hence, samples could be classified to high-radiation or low-radiation sites based solely on microbial community with >90% accuracy. Radiation-associated bacteria had distinct inferred functional profiles, including pathways involved in degradation, assimilation and transport of carbohydrates, xenobiotics biodegradation, and DNA repair. Our results suggest that exposure to environmental radionuclides significantly alters vertebrate gut microbiota.
机译:肠道菌群的组成取决于许多因素,尽管环境污染的影响在很大程度上尚不清楚。我们使用细菌16S rRNA基因的扩增子测序来定量切尔诺贝利(乌克兰)的人为放射性核素是否会影响田鼠Myodes glareolus的肠道微生物组。暴露于高水平的环境放射性核素对肠道菌群的丰富度没有可检测到的影响,但与硬菌素:拟杆菌的比率几乎增加了两倍有关。居住在未受污染地区的动物具有非常相似的肠道群落,无论它们与核电站的距离如何。因此,可以仅基于微生物群落将样本分类为高辐射或低辐射场所,准确度> 90%。辐射相关细菌具有独特的推断功能特征,包括参与碳水化合物降解,吸收和运输,异生物素生物降解和DNA修复的途径。我们的结果表明,暴露于环境放射性核素会显着改变脊椎动物肠道菌群。

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