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Relative roles of niche and neutral processes in structuring a soil microbial community

机译:生态位和中性过程在构建土壤微生物群落中的相对作用

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摘要

Most attempts to identify the processes that structure natural communities have focused on conspicuous macroorganisms whereas the processes responsible for structuring microbial communities remain relatively unknown. Two main theories explaining these processes have emerged; niche theory, which highlights the importance of deterministic processes, and neutral theory, which focuses on stochastic processes. We examined whether neutral or niche-based mechanisms best explain the composition and structure of communities of a functionally important soil microbe, the arbuscular mycorrhizal (AM) fungi. Using molecular techniques, we surveyed AM fungi from 425 individual plants of 28 plant species along a soil pH gradient. There was evidence that both niche and neutral processes structured this community. Species abundances fitted the zero-sum multinomial distribution and there was evidence of dispersal limitation, both indicators of neutral processes. However, we found stronger support that niche differentiation based on abiotic soil factors, primarily pH, was structuring the AM fungal community. Host plant species affected AM fungal community composition negligibly compared to soil pH. We conclude that although niche partitioning was the primary mechanism regulating the composition and diversity of natural AM fungal communities, these communities are also influenced by stochastic-neutral processes. This study represents one of the most comprehensive investigations of community-level processes acting on soil microbes; revealing a community that although influenced by stochastic processes, still responded in a predictable manner to a major abiotic niche axis, soil pH. The strong response to environmental factors of this community highlights the susceptibility of soil microbes to environmental change. © 2010 International Society for Microbial Ecology All rights reserved.
机译:确定结构自然群落的过程的大多数尝试都集中在明显的大生物上,而负责构建微生物群落的过程仍然相对未知。出现了两种主要的解释这些过程的理论。利基理论强调了确定性过程的重要性,中立理论则强调了随机过程。我们检查了中性或基于小生境的机制是否能最好地解释功能重要的土壤微生物(丛枝菌根(AM)真菌)的组成和结构。使用分子技术,我们沿着土壤pH梯度调查了28种植物的425种植物中的AM真菌。有证据表明,利基和中性过程构成了这个社区。物种丰度符合零和多项式分布,并且有分散限制的证据,这是中性过程的两个指标。但是,我们发现更强有力的支持是基于非生物土壤因素(主要是pH)的生态位分化正在构建AM真菌群落。与土壤pH值相比,寄主植物物种对AM真菌群落组成的影响可忽略不计。我们得出的结论是,尽管利基分配是调节天然AM真菌群落组成和多样性的主要机制,但这些群落也受到随机中性过程的影响。这项研究代表了对土壤微生物起作用的社区级过程的最全面的研究之一。揭示了一个社区,尽管该社区受到随机过程的影响,但仍对主要的非生物生态位轴(土壤pH)做出可预测的响应。该社区对环境因素的强烈反应突出了土壤微生物对环境变化的敏感性。 ©2010国际微生物生态学会版权所有。

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