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Soil pH mediates the balance between stochastic and deterministic assembly of bacteria

机译:土壤pH值介导细菌的随机组装与确定性组装之间的平衡

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摘要

Little is known about the factors affecting the relative influences of stochastic and deterministic processes that govern the assembly of microbial communities in successional soils. Here, we conducted a meta-analysis of bacterial communities using six different successional soil datasets distributed across different regions. Different relationships between pH and successional age across these datasets allowed us to separate the influences of successional age (i.e., time) from soil pH. We found that extreme acidic or alkaline pH conditions lead to assembly of phylogenetically more clustered bacterial communities through deterministic processes, whereas pH conditions close to neutral lead to phylogenetically less clustered bacterial communities with more stochasticity. We suggest that the influence of pH, rather than successional age, is the main driving force in producing trends in phylogenetic assembly of bacteria, and that pH also influences the relative balance of stochastic and deterministic processes along successional soils. Given that pH had a much stronger association with community assembly than did successional age, we evaluated whether the inferred influence of pH was maintained when studying globally distributed samples collected without regard for successional age. This dataset confirmed the strong influence of pH, suggesting that the influence of soil pH on community assembly processes occurs globally. Extreme pH conditions likely exert more stringent limits on survival and fitness, imposing strong selective pressures through ecological and evolutionary time. Taken together, these findings suggest that the degree to which stochastic vs. deterministic processes shape soil bacterial community assembly is a consequence of soil pH rather than successional age.
机译:关于影响随机和确定性过程相对影响的因素知之甚少,这些因素决定了演替土壤中微生物群落的组装。在这里,我们使用分布在不同地区的六个不同的连续土壤数据集对细菌群落进行了荟萃分析。在这些数据集中,pH与演替年龄之间的不同关系使我们能够将演替年龄(即时间)的影响与土壤pH分开。我们发现,极端的酸性或碱性pH条件会通过确定性过程导致系统发育上群集性更高的细菌群落的聚集,而接近中性的pH条件会导致系统发育上群集性较小的细菌群落,并且具有更大的随机性。我们建议,pH值而不是演替年龄的影响是细菌系统发生装配发展趋势的主要驱动力,并且pH值还影响演替土壤上随机和确定性过程的相对平衡。由于pH与社区集会比继承年龄具有更强的关联性,因此我们在研究不考虑继承年龄的全球分布样本时评估了pH的推断影响是否得以维持。该数据集证实了pH的强烈影响,表明土壤pH对群落组装过程的影响是全球性的。极端的pH条件可能会对生存和适应性施加更严格的限制,从而在生态和进化时间上施加强大的选择性压力。综上所述,这些发现表明,随机过程与确定性过程对土壤细菌群落组装的影响程度是土壤pH值的结果,而不是年龄的延续。

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