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在工程系统中,具有稳定基因组特征的微生物群落随时间发生生态位分化。

Niche differentiation in microbial communities with stable genomic traits over time in engineered systems.

机构信息

School of Energy and Environment, City University of Hong Kong, Kowloon, Hong Kong SAR, China.

Facility Management and Environmental Engineering, TAL Group, Kowloon, Hong Kong SAR, China.

出版信息

ISME J. 2024 Jan 8;18(1). doi: 10.1093/ismejo/wrae042.

Abstract

Microbial communities in full-scale engineered systems undergo dynamic compositional changes. However, mechanisms governing assembly of such microbes and succession of their functioning and genomic traits under various environmental conditions are unclear. In this study, we used the activated sludge and anaerobic treatment systems of four full-scale industrial wastewater treatment plants as models to investigate the niches of microbes in communities and the temporal succession patterns of community compositions. High-quality representative metagenome-assembled genomes revealed that taxonomic, functional, and trait-based compositions were strongly shaped by environmental selection, with replacement processes primarily driving variations in taxonomic and functional compositions. Plant-specific indicators were associated with system environmental conditions and exhibited strong determinism and trajectory directionality over time. The partitioning of microbes in a co-abundance network according to groups of plant-specific indicators, together with significant between-group differences in genomic traits, indicated the occurrence of niche differentiation. The indicators of the treatment plant with rich nutrient input and high substrate removal efficiency exhibited a faster predicted growth rate, lower guanine-cytosine content, smaller genome size, and higher codon usage bias than the indicators of the other plants. In individual plants, taxonomic composition displayed a more rapid temporal succession than functional and trait-based compositions. The succession of taxonomic, functional, and trait-based compositions was correlated with the kinetics of treatment processes in the activated sludge systems. This study provides insights into ecological niches of microbes in engineered systems and succession patterns of their functions and traits, which will aid microbial community management to improve treatment performance.

摘要

在全规模工程系统中,微生物群落经历动态的组成变化。然而,在各种环境条件下,控制这些微生物组装及其功能和基因组特征演替的机制尚不清楚。在这项研究中,我们使用四个全规模工业废水处理厂的活性污泥和厌氧处理系统作为模型,研究了微生物群落的生态位和群落组成的时间演替模式。高质量的代表性宏基因组组装基因组揭示了分类学、功能和基于特征的组成强烈受到环境选择的影响,替代过程主要驱动了分类学和功能组成的变化。植物特异性指标与系统环境条件有关,并随着时间的推移表现出强烈的决定性和轨迹方向性。根据植物特异性指标的分组对共现网络中的微生物进行分区,以及基因组特征在组间存在显著差异,表明发生了生态位分化。具有丰富养分输入和高基质去除效率的处理厂的指示物表现出比其他植物更快的预测生长速率、更低的鸟嘌呤-胞嘧啶含量、更小的基因组大小和更高的密码子使用偏好。在单个植物中,分类组成的时间演替比功能和基于特征的组成更快。分类、功能和基于特征的组成的演替与活性污泥系统中处理过程的动力学相关。这项研究提供了对工程系统中微生物生态位和功能及特征演替模式的深入了解,这将有助于微生物群落管理以提高处理性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c628/10987969/d5e58e35325b/wrae042f1.jpg

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