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首页> 外文期刊>Nature Communications >Integration of time-series meta-omics data reveals how microbial ecosystems respond to disturbance
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Integration of time-series meta-omics data reveals how microbial ecosystems respond to disturbance

机译:时间序列元常规数据的集成显示了微生物生态系统如何应对干扰

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摘要

The development of reliable, mixed-culture biotechnological processes hinges on understanding how microbial ecosystems respond to disturbances. Here we reveal extensive phenotypic plasticity and niche complementarity in oleaginous microbial populations from a biological wastewater treatment plant. We perform meta-omics analyses (metagenomics, metatranscriptomics, metaproteomics and metabolomics) on in situ samples over 14 months at weekly intervals. Based on 1,364 de novo metagenome-assembled genomes, we uncover four distinct fundamental niche types. Throughout the time-series, we observe a major, transient shift in community structure, coinciding with substrate availability changes. Functional omics data reveals extensive variation in gene expression and substrate usage amongst community members. Ex situ bioreactor experiments confirm that responses occur within five hours of a pulse disturbance, demonstrating rapid adaptation by specific populations. Our results show that community resistance and resilience are a function of phenotypic plasticity and niche complementarity, and set the foundation for future ecological engineering efforts. Herold et al. present an integrated meta-omics framework to investigate how mixed microbial communities, such as oleaginous bacterial populations in biological wastewater treatment plants, respond with distinct adaptation strategies to disturbances. They show that community resistance and resilience are a function of phenotypic plasticity and niche complementarity.
机译:可靠,混合培养的生物技术过程的发展铰链对微生物生态系统如何应对干扰的影响。在这里,我们揭示了来自生物废水处理厂的含油微生物种群的广泛表型可塑性和利基互补性。在每周间隔,我们在原位样本上进行元常规分析(MetaGenomics,MetaTransfriptom,Metabroomics和代谢组科)。基于1,364 de Novo Metagenome组装的基因组,我们发现了四种不同的基础利基类型。在整个时间系列中,我们观察社区结构的主要,瞬态偏移,与基板可用性发生变化。功能OMIC数据显示社区成员之间基因表达和基材使用的广泛变化。 EX原位生物反应器实验证实,响应发生在脉冲干扰的五个小时内,展示了特定群体的快速调整。我们的研究结果表明,社区抵抗力和弹性是表型可塑性和利基互补性的函数,并为未来的生态工程努力设定了基础。 Herold等人。提出了一种综合的元 - 常规框架,以研究生物废水处理厂中的混合微生物群,如枯萎细菌群体,以不同的适应策略对扰乱进行响应。他们表明,社区抵抗和恢复力是表型可塑性和利基互补性的函数。

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