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生物系统中微生物群落组装的随机过程与确定性过程的关联

Nexus of Stochastic and Deterministic Processes on Microbial Community Assembly in Biological Systems.

作者信息

Yuan Heyang, Mei Ran, Liao Junhui, Liu Wen-Tso

机构信息

Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, United States.

出版信息

Front Microbiol. 2019 Jul 4;10:1536. doi: 10.3389/fmicb.2019.01536. eCollection 2019.

Abstract

Microbial community assembly in engineered biological systems is often simultaneously influenced by stochastic and deterministic processes, and the nexus of these two mechanisms remains to be further investigated. Here, three lab-scale activated sludge reactors were seeded with identical inoculum and operated in parallel under eight different sludge retention time (SRT) by sequentially reducing the SRT from 15 days to 1 day. Using 16S rRNA gene amplicon sequencing data, the microbial populations at the start-up (15-day SRT) and SRT-driven (≤10-day SRT) phases were observed to be noticeably different. Clustering results demonstrated ecological succession at the start-up phase with no consistent successional steps among the three reactors, suggesting that stochastic processes played an important role in the community assembly during primary succession. At the SRT-driven phase, the three reactors shared 31 core operational taxonomic units (OTUs). Putative primary acetate utilizers and secondary metabolizers were proposed based on K-means clustering, network and synchrony analysis. The shared core populations accounted for 65% of the total abundance, indicating that the microbial communities at the SRT-driven phase were shaped predominantly by deterministic processes. Sloan's Neutral model and a null model analysis were performed to disentangle and quantify the relative influence of stochastic and deterministic processes on community assembly. The increased estimated migration rate in the neutral community model and the higher percentage of stochasticity in the null model implied that stochastic community assembly was intensified by strong deterministic factors. This was confirmed by the significantly different α- and β-diversity indices at SRTs shorter than 2 days and the observation that over half of the core OTUs were unshared or unsynchronized. Overall, this study provided quantitative insights into the nexus of stochastic and deterministic processes on microbial community assembly in a biological process.

摘要

工程生物系统中的微生物群落组装通常同时受到随机过程和确定性过程的影响,而这两种机制之间的关系仍有待进一步研究。在此,三个实验室规模的活性污泥反应器接种了相同的接种物,并通过将污泥停留时间(SRT)从15天依次减少到1天,在八种不同的SRT条件下并行运行。利用16S rRNA基因扩增子测序数据,观察到启动阶段(15天SRT)和SRT驱动阶段(≤10天SRT)的微生物种群存在明显差异。聚类结果表明,启动阶段存在生态演替,但三个反应器之间没有一致的演替步骤,这表明随机过程在初级演替过程中的群落组装中发挥了重要作用。在SRT驱动阶段,三个反应器共有31个核心操作分类单元(OTU)。基于K均值聚类、网络和同步分析,提出了假定的初级乙酸利用者和次级代谢者。共享的核心种群占总丰度的65%,表明SRT驱动阶段的微生物群落主要由确定性过程塑造。进行了斯隆中性模型和零模型分析,以解析和量化随机过程和确定性过程对群落组装的相对影响。中性群落模型中估计的迁移率增加以及零模型中更高的随机性百分比表明,强烈的确定性因素加剧了随机群落组装。这一点在SRT小于2天时长显著不同的α和β多样性指数以及超过一半的核心OTU未共享或不同步的观察结果中得到了证实。总体而言,本研究为生物过程中微生物群落组装的随机过程和确定性过程之间的关系提供了定量见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7610/6621641/0013b4af9f8b/fmicb-10-01536-g001.jpg

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