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Community history affects the predictability of microbial ecosystem development

机译:社区历史影响微生物生态系统发展的可预测性

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摘要

Microbial communities mediate crucial biogeochemical, biomedical and biotechnological processes, yet our understanding of their assembly, and our ability to control its outcome, remain poor. Existing evidence presents conflicting views on whether microbial ecosystem assembly is predictable, or inherently unpredictable. We address this issue using a well-controlled laboratory model system, in which source microbial communities colonize a pristine environment to form complex, nutrient-cycling ecosystems. When the source communities colonize a novel environment, final community composition and function (as measured by redox potential) are unpredictable, although a signature of the community's previous history is maintained. However, when the source communities are pre-conditioned to their new habitat, community development is more reproducible. This situation contrasts with some studies of communities of macro-organisms, where strong selection under novel environmental conditions leads to reproducible community structure, whereas communities under weaker selection show more variability. Our results suggest that the microbial rare biosphere may have an important role in the predictability of microbial community development, and that pre-conditioning may help to reduce unpredictability in the design of microbial communities for biotechnological applications.
机译:微生物群落介导了关键的生物地球化学,生物医学和生物技术过程,但是我们对它们的组装以及对它的结果进行控制的能力仍然很差。对于微生物生态系统的组装是可预测的还是固有的不可预测的,现有证据提出了相互矛盾的观点。我们使用一个控制良好的实验室模型系统来解决此问题,在该模型系统中,源微生物群落定居在原始环境中,形成了复杂的养分循环生态系统。当源社区殖民新环境时,最终社区的组成和功能(通过氧化还原电势衡量)是不可预测的,尽管该社区以前的历史记录得以保留。但是,当源社区适应新的栖息地时,社区发展就更容易复制。这种情况与对大型生物群落的一些研究形成对比,后者在新的环境条件下进行强选择会导致可复制的群落结构,而在弱选择下的群落表现出更大的变异性。我们的研究结果表明,微生物稀有生物圈可能在微生物群落发展的可预测性中起重要作用,而预处理可以帮助减少用于生物技术应用的微生物群落设计中的不可预测性。

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