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两极地区最近的冰川消退区是否被相同的细菌殖民?

Are recently deglaciated areas at both poles colonised by the same bacteria?

机构信息

Department of Biogeochemistry and Microbial Ecology, National Museum of Natural Sciences (MNCN), CSIC, Serrano 115 dpdo, E-28006 Madrid, Spain.

AstrobiologyOU, School of Environment, Earth and Ecosystem Sciences, STEM Faculty, The Open University, Walton Hall, Kents Hill, MK7 6AA, Milton Keynes, UK.

出版信息

FEMS Microbiol Lett. 2021 Feb 12;368(3). doi: 10.1093/femsle/fnab011.

Abstract

Polar glacier forefields offer an unprecedented framework for studying community assembly processes in regions that are geographically and climatically isolated. Through amplicon sequence variant (ASV) inference, we compared the composition and structure of soil bacterial communities from glacier forefields in Iceland and Antarctica to assess overlap between communities and the impact of established cryptogamic covers on the uniqueness of their taxa. These pioneer microbial communities were found to share only 8% of ASVs and each taxonomic group's contribution to the shared ASV data subset was heterogeneous and independent of their relative abundance. Although the presence of ASVs specific to one glacier forefield and/or different cryptogam cover values confirms the existence of habitat specialist bacteria, our data show that the influence of cryptogams on the edaphic bacterial community structure also varied also depending on the taxonomic group. Hence, the establishment of distinct cryptogamic covers is probably not the only factor driving the uniqueness of bacterial communities at both poles. The structure of bacterial communities colonising deglaciated areas seems also conditioned by lineage-specific limitations in their dispersal capacity and/or their establishment and persistence in these isolated and hostile regions.

摘要

极地冰川前缘为研究地理和气候隔离地区的群落组装过程提供了一个前所未有的框架。通过扩增子序列变异 (ASV) 推断,我们比较了冰岛和南极洲冰川前缘土壤细菌群落的组成和结构,以评估群落之间的重叠以及已建立的隐花植物覆盖物对其分类群独特性的影响。这些先锋微生物群落仅共享 8%的 ASV,每个分类群对共享 ASV 数据子集的贡献是不均匀的,且与其相对丰度无关。尽管存在特定于一个冰川前缘和/或不同隐花植物覆盖值的 ASV 证实了生境专性细菌的存在,但我们的数据表明,隐花植物对土壤细菌群落结构的影响也因分类群而异。因此,建立独特的隐花植物覆盖物可能不是两极地区细菌群落独特性的唯一驱动因素。定殖于冰川消退地区的细菌群落结构似乎还受到其扩散能力的谱系特异性限制以及它们在这些孤立和恶劣地区的建立和持续存在的限制。

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