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对厌氧共消化器常见花园的扰动揭示了功能弹性和微生物群落组成之间的关系。

Perturbations to common gardens of anaerobic co-digesters reveal relationships between functional resilience and microbial community composition.

机构信息

Department of Civil Construction, and Environmental Engineering, North Carolina State University, Raleigh, North Carolina, USA.

出版信息

Appl Environ Microbiol. 2024 Sep 18;90(9):e0029824. doi: 10.1128/aem.00298-24. Epub 2024 Aug 27.

Abstract

We report the relationship between enrichment of adapted populations and enhancement of community functional resilience in methanogenic bioreactors. Although previous studies have shown the positive effects of acclimation, this work directly investigated the relationships between microbiome dynamics and performance of anaerobic co-digesting reactors in response to different levels of an environmental perturbation (loading of grease interceptor waste [GIW]). Using the methanogenic microbiome from a full-scale digester, we developed eight sets of microbial communities in triplicate using different feed sources. These substrate-specific microbiomes were then exposed to three independent disturbance events of low-, mid- and high-GIW loading rates. This approach allowed us to directly attribute differences in community responses to differences in community composition. Despite identical inocula, environment (digester operation, substrate loading rate, and feeding patterns) and general whole-community function (methane production and effluent quality) during the cultivation period, different substrates led to different microbial community assemblies. Lipid pre-acclimation led to enrichment of a pool of specialized populations, along with thriving of sub-dominant communities. The enrichment of these populations improved functional resilience and process performance when exposed to a low level of lipid-rich perturbation compared with less-acclimated communities. At higher levels of perturbation, the communities were not able to recover methanogenesis, indicating a loading limit to the resilience response. This study extends our current understanding of environmental perturbations, feed-specific adaptation, and functional resilience in methanogenic bioreactors.IMPORTANCEThis study demonstrates, for the first time for GIW co-digestion, how applying similar perturbations to different microbial communities was used to directly identify the causal relationships between microbial community, function, and environment in triplicate anaerobic microbiomes. We evaluated the impact of feed-specific adaptation on methanogenic microbiomes and demonstrated how microbiomes can be influenced to improve their functional (methanogenic) resilience to GIW inhibition. These findings demonstrate how an ecological framework can help improve a biological engineering application, and more specifically, increase the potential of anaerobic co-digestion for converting wastes to energy.

摘要

我们报告了适应种群的富集与产甲烷生物反应器群落功能弹性增强之间的关系。尽管先前的研究表明了驯化的积极影响,但这项工作直接调查了微生物组动态与厌氧共消化反应器在响应不同环境干扰(油脂截留器废物[GIW]的负荷)水平时的性能之间的关系。使用来自大规模消化器的产甲烷微生物组,我们使用不同的饲料来源在重复的 3 组中开发了 8 组微生物群落。然后,将这些底物特异性微生物组暴露于低、中、高 GIW 加载率的 3 个独立干扰事件中。这种方法使我们能够直接将群落响应的差异归因于群落组成的差异。尽管接种物相同,但在培养期间,环境(消化器操作、底物加载率和喂养模式)和一般全群落功能(甲烷产生和流出物质量)不同,不同的底物导致了不同的微生物群落组合。脂质预驯化导致了一组专门种群的富集,以及亚优势群落的繁荣。与驯化程度较低的群落相比,在暴露于富含脂质的低水平干扰时,这些种群的富集提高了功能弹性和过程性能。在更高水平的干扰下,群落无法恢复甲烷生成,表明对弹性响应存在加载限制。这项研究扩展了我们对产甲烷生物反应器中环境干扰、饲料特异性适应和功能弹性的现有理解。

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