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蓝细菌和α-变形菌可能促进生态位群落中的合作相互作用。

Cyanobacteria and Alphaproteobacteria May Facilitate Cooperative Interactions in Niche Communities.

作者信息

Van Goethem Marc W, Makhalanyane Thulani P, Cowan Don A, Valverde Angel

机构信息

Centre for Microbial Ecology and Genomics, Department of Genetics, University of Pretoria, Pretoria, South Africa.

出版信息

Front Microbiol. 2017 Oct 25;8:2099. doi: 10.3389/fmicb.2017.02099. eCollection 2017.

Abstract

Hypoliths, microbial assemblages found below translucent rocks, provide important ecosystem services in deserts. While several studies have assessed microbial diversity of hot desert hypoliths and whether these communities are metabolically active, the interactions among taxa remain unclear. Here, we assessed the structure, diversity, and co-occurrence patterns of hypolithic communities from the hyperarid Namib Desert by comparing total (DNA) and potentially active (RNA) communities. The potentially active and total hypolithic communities differed in their composition and diversity, with significantly higher levels of Cyanobacteria and Alphaproteobacteria in potentially active hypoliths. Several phyla known to be abundant in total hypolithic communities were metabolically inactive, indicating that some hypolithic taxa may be dormant or dead. The potentially active hypolith network was highly modular in structure with almost exclusively positive co-occurrences (>95% of the total) between taxa. Members of the Cyanobacteria and Alphaproteobacteria were identified as potential keystone taxa, and exhibited numerous positive co-occurrences with other microbes, suggesting that these groups might have important roles in maintaining network topological structure despite their low abundance.

摘要

隐生菌是在半透明岩石下发现的微生物群落,在沙漠中提供重要的生态系统服务。虽然有几项研究评估了炎热沙漠隐生菌的微生物多样性以及这些群落是否具有代谢活性,但类群之间的相互作用仍不清楚。在这里,我们通过比较总(DNA)群落和潜在活性(RNA)群落,评估了极度干旱的纳米布沙漠中隐生菌群落的结构、多样性和共现模式。潜在活性隐生菌群落和总隐生菌群落在组成和多样性上存在差异,潜在活性隐生菌中的蓝细菌和α-变形菌水平显著更高。已知在总隐生菌群落中丰富的几个门是代谢不活跃的,这表明一些隐生菌类群可能处于休眠或死亡状态。潜在活性隐生菌网络在结构上高度模块化,类群之间几乎完全是正共现关系(占总数的95%以上)。蓝细菌和α-变形菌的成员被确定为潜在的关键类群,并与其他微生物表现出许多正共现关系,这表明尽管它们的丰度较低,但这些类群可能在维持网络拓扑结构方面发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a019/5660985/4313898dbdf3/fmicb-08-02099-g001.jpg

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