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确定性组装和多样性梯度改变了生物反应器生物膜群落的性能。

Deterministic Assembly and Diversity Gradient Altered the Biofilm Community Performances of Bioreactors.

机构信息

Institute for Marine Science and Technology , Shandong University , Qingdao 266237 , P. R. China.

State Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, China), School of Environmental Science and Technology , Dalian University of Technology , Dalian 116024 , P. R. China.

出版信息

Environ Sci Technol. 2019 Feb 5;53(3):1315-1324. doi: 10.1021/acs.est.8b06044. Epub 2019 Jan 18.

Abstract

Community assembly process (determinism vs stochasticity) determines the composition and diversity of a microbial community, and then shapes its functions. Understanding this complex process and its relationship to the community functions becomes a very important task for the applications of microbial biotechnology. In this study, we applied microbial electrolysis cells (MECs) with moderate species numbers and easily tractable functions as a model ecosystem, and constructed a series of biofilm communities with gradient biodiversity to examine the roles of community assembly in determining microbial community structure and functions. After stable biofilms formed, the best MEC reactor performances (e.g., gas productivity, total energy efficiency) were achieved in the group in which biofilms had the second highest α-diversity, and biofilms with even lower diversity showed declining performance. Null model analyses indicated that both deterministic and stochastic assembly played roles in the formation of biofilm communities. When deterministic assembly dominates this formation, the higher diversity of the biofilm community would generally show better reactor performance. However, when the stochasticity dominates the assembly process, the bioreactor performance would decline. This study provides novel evidence that the assembly mechanism could be one of the key processes to shift the functions, and proposes an important guidance for selecting the most efficient microorganisms for environmental biotechnologies.

摘要

群落组装过程(确定性与随机性)决定了微生物群落的组成和多样性,进而塑造其功能。理解这一复杂过程及其与群落功能的关系,对于微生物生物技术的应用是一项非常重要的任务。在这项研究中,我们应用具有适中物种数量和易于追踪功能的微生物电解池(MEC)作为模型生态系统,构建了一系列具有梯度生物多样性的生物膜群落,以检验群落组装在决定微生物群落结构和功能方面的作用。在稳定生物膜形成后,在生物膜具有第二高α多样性的组中,获得了最佳的 MEC 反应器性能(例如,气体生产率、总能量效率),而具有更低多样性的生物膜则表现出性能下降。零模型分析表明,确定性组装和随机性组装都在生物膜群落的形成中发挥作用。当确定性组装主导这种形成时,生物膜群落的更高多样性通常会表现出更好的反应器性能。然而,当随机性主导组装过程时,生物反应器性能会下降。本研究提供了新的证据,表明组装机制可能是改变功能的关键过程之一,并为环境生物技术中选择最有效的微生物提供了重要指导。

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