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Environmental legacy contributes to the resilience of methane consumption in a laboratory microcosm system

机译:对环境的影响有助于实验室缩微系统中甲烷消耗的复原力

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摘要

The increase of extreme drought and precipitation events due to climate change will alter microbial processes. Perturbation experiments demonstrated that microbes are sensitive to environmental alterations. However, only little is known on the legacy effects in microbial systems. Here, we designed a laboratory microcosm experiment using aerobic methane-consuming communities as a model system to test basic principles of microbial resilience and the role of changes in biomass and the presence of non-methanotrophic microbes in this process. We focused on enrichments from soil, sediment, and water reflecting communities with different legacy with respect to exposure to drought. Recovery rates, a recently proposed early warning indicator of a critical transition, were utilized as a measure to detect resilience loss of methane consumption during a series of dry/wet cycle perturbations. We observed a slowed recovery of enrichments originating from water samples, which suggests that the community’s legacy with a perturbation is a contributing factor for the resilience of microbial functioning.
机译:气候变化导致的极端干旱和降水事件的增加将改变微生物的过程。摄动实验表明,微生物对环境变化敏感。但是,对于微生物系统的遗留效应知之甚少。在这里,我们设计了一个实验室微观世界实验,使用需氧甲烷消耗社区作为模型系统,以测试微生物复原力的基本原理以及生物量变化的作用以及在此过程中非甲烷营养菌的存在。我们专注于土壤,沉积物和水的富集,反映出在干旱暴露方面具有不同遗产的社区。回收率是最近提出的关键转变的预警指标,被用作在一系列干/湿循环扰动期间检测甲烷消耗的回弹力损失的措施。我们观察到源自水样的浓缩物回收缓慢,这表明该社区的遗产受到干扰是微生物功能恢复力的一个促成因素。

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