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通过以基因组为中心的分析揭示全规模污水处理厂中绿弯菌门的隐藏多样性和功能作用。

Unveiling the hidden diversity and functional role of Chloroflexota in full-scale wastewater treatment plants through genome-centric analyses.

作者信息

Bovio-Winkler Patricia, Cabezas Angela, Etchebehere Claudia

机构信息

Microbial Ecology Laboratory, Department of Microbial Biochemistry and Genomic, Biological Research Institute "Clemente Estable", Avenida Italia 3318, 11600 Montevideo, CP, Uruguay.

Departamento de sostenibilidad ambiental, Instituto Tecnológico Regional Centro Sur, Universidad Tecnológica, Francisco Antonio Maciel s/n, 97000, Durazno, CPUruguay.

出版信息

ISME Commun. 2024 Apr 11;4(1):ycae050. doi: 10.1093/ismeco/ycae050. eCollection 2024 Jan.

Abstract

The phylum Chloroflexota has been found to exhibit high abundance in the microbial communities from wastewater treatment plants (WWTPs) in both aerobic and anaerobic systems. However, its metabolic role has not been fully explored due to the lack of cultured isolates. To address this gap, we use publicly available metagenome datasets from both activated sludge (AS) and methanogenic (MET) full-scale wastewater treatment reactors to assembled genomes. Using this strategy, 264 dereplicated, medium- and high-quality metagenome-assembled genomes (MAGs) classified within Chloroflexota were obtained. Taxonomic classification revealed that AS and MET reactors harbored distinct Chloroflexota families. Nonetheless, the majority of the annotated MAGs (166 MAGs with >85% completeness and < 5% contamination) shared most of the metabolic potential features, including the ability to degrade simple sugars and complex polysaccharides, fatty acids and amino acids, as well as perform fermentation of different products. While Chloroflexota MAGs from MET reactors showed the potential for strict fermentation, MAGs from AS harbored the potential for facultatively aerobic metabolism. Metabolic reconstruction of Chloroflexota members from AS unveiled their versatile metabolism and suggested a primary role in hydrolysis, carbon removal and involvement in nitrogen cycling, thus establishing them as fundamental components of the ecosystem. Microbial reference genomes are essential resources for understanding the potential functional role of uncultured organisms in WWTPs. Our study provides a comprehensive genome catalog of Chloroflexota for future analyses aimed at elucidating their role in these ecosystems.

摘要

绿弯菌门已被发现在污水处理厂(WWTPs)的需氧和厌氧系统的微生物群落中具有高丰度。然而,由于缺乏培养的分离株,其代谢作用尚未得到充分探索。为了填补这一空白,我们使用来自活性污泥(AS)和产甲烷(MET)全尺寸污水处理反应器的公开宏基因组数据集来组装基因组。使用这种策略,获得了264个非重复的、中等质量和高质量的宏基因组组装基因组(MAGs),它们被归类为绿弯菌门。分类学分类显示,AS和MET反应器含有不同的绿弯菌科。尽管如此,大多数注释的MAGs(166个MAGs,完整性>85%,污染率<5%)具有大多数代谢潜在特征,包括降解单糖和复合多糖、脂肪酸和氨基酸的能力,以及进行不同产物发酵的能力。虽然来自MET反应器的绿弯菌门MAGs显示出严格发酵的潜力,但来自AS的MAGs具有兼性需氧代谢的潜力。对来自AS的绿弯菌门成员的代谢重建揭示了它们的多功能代谢,并表明它们在水解、碳去除和参与氮循环中起主要作用,从而确立了它们作为生态系统基本组成部分的地位。微生物参考基因组是了解未培养生物在污水处理厂中潜在功能作用的重要资源。我们的研究提供了一个全面的绿弯菌门基因组目录,用于未来旨在阐明它们在这些生态系统中作用的分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a240/11653643/d9f1295e4eae/ycae050f1.jpg

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