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Geographic patterns of co-occurrence network topological features for soil microbiota at continental scale in eastern China

机译:中国东部大陆土壤微生物群落共现网络拓扑特征的地理格局

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摘要

Soil microbiota play a critical role in soil biogeochemical processes and have a profound effect on soil functions. Recent studies have revealed microbial co-occurrence patterns in soil microbial communities, yet the geographic pattern of topological features in soil microbial co-occurrence networks at the continental scale are largely unknown. Here, we investigated the shifts of topological features in co-occurrence networks inferred from soil microbiota along a continental scale in eastern China. Integrating archaeal, bacterial and fungal community datasets, we inferred a meta-community co-occurrence network and analyzed node-level and network-level topological shifts associated with five climatic regions. Both node-level and network-level topological features revealed geographic patterns wherein microorganisms in the northern regions had closer relationships but had a lower interaction influence than those in the southern regions. We further identified topological differences associated with taxonomic groups and demonstrated that co-occurrence patterns were random for archaea and non-random for bacteria and fungi. Given that microbial interactions may contribute to soil functions more than species diversity, this geographic shift of topological features provides new insight into studying microbial biogeographic patterns, their organization and impacts on soil-associated function.
机译:土壤微生物群在土壤生物地球化学过程中起关键作用,并对土壤功能产生深远影响。最近的研究已经揭示了土壤微生物群落中的微生物共生模式,但是在大陆范围内土壤微生物共生网络中拓扑特征的地理分布模式却鲜为人知。在这里,我们调查了中国东部大陆尺度上由土壤微生物群推断出的共现网络中拓扑特征的变化。整合古细菌,细菌和真菌的社区数据集,我们推断出一个元社区共生网络,并分析了与五个气候区域相关的节点级和网络级拓扑变化。节点级和网络级的拓扑特征都揭示了地理模式,其中北部地区的微生物比南部地区的微生物具有更紧密的关系,但相互作用的影响较小。我们进一步确定了与分类学组相关的拓扑差异,并证明古细菌的共生模式是随机的,细菌和真菌的共生模式是非随机的。鉴于微生物相互作用可能比物种多样性对土壤功能的贡献更大,这种拓扑特征的地理转移为研究微生物生物地理模式,其组织以及对土壤相关功能的影响提供了新的见解。

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