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首页> 外文期刊>FEMS Microbiology Ecology >Biogeographical patterns in soil bacterial communities across the Arctic region
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Biogeographical patterns in soil bacterial communities across the Arctic region

机译:北极地区土壤细菌社区的生物地图模式

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The considerable microbial diversity of soils and key role in biogeochemical cycling have led to growing interest in their global distribution and the impact that environmental change might have at the regional level. In the broadest study of Arctic soil bacterial communities to date, we used high-throughput DNA sequencing to investigate the bacterial diversity from 200 independent Arctic soil samples from 43 sites. We quantified the impact of spatial and environmental factors on bacterial community structure using variation partitioning analysis, illustrating a nonrandom distribution across the region. pH was confirmed as the key environmental driver structuring Arctic soil bacterial communities, while total organic carbon (TOC), moisture and conductivity were shown to have little effect. Specialist taxa were more abundant in acidic and alkaline soils while generalist taxa were more abundant in acidoneutral soils. Of the 48 147 bacterial taxa, a core microbiome composed of only 13 taxa that were ubiquitously distributed and present within 95% of samples was identified, illustrating the high potential for endemism in the region. Overall, our results demonstrate the importance of spatial and edaphic factors on the structure of Arctic soil bacterial communities.
机译:土壤的相当大的微生物多样性和生物地球化学循环中的关键作用导致了对全球分布的兴趣,环境变化可能在区域一级的影响。在迄今为止的北极土壤细菌社区的最广泛研究中,我们使用高通量DNA测序来研究来自43个遗址的200个独立北极土壤样品的细菌多样性。我们使用变体分区分析量化了空间和环境因素对细菌群落结构的影响,示出了该地区的非粗糙分布。将pH确认为构建北极土壤细菌群落的关键环境驱动程序,而总有机碳(TOC),水分和电导率显示出几乎没有效果。酸性和碱性土壤中的专业分类群更丰富,而耐酸碱土壤的普通酸株较大。在48个147个细菌分类群中,鉴定了仅普遍分布并存在于95%的样品中普遍分布并存在的核心微生物组成,鉴定了该地区的内源性的高潜力。总体而言,我们的结果表明了空间和助理因素对北极土壤细菌社区结构的重要性。

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