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通过宏基因组分析揭示活性污泥微生物群落处理金枪鱼加工废水的功能潜力。

Revealing the functional potential of microbial community of activated sludge for treating tuna processing wastewater through metagenomic analysis.

作者信息

Zheng Zhangyi, Liao Changyu, Chen Yubin, Ming Tinghong, Jiao Lefei, Kong Fei, Su Xiurong, Xu Jiajie

机构信息

School of Marine Science, Ningbo University, Ningbo, Zhejiang, China.

Microbial Development and Metabolic Engineering Laboratory, Ningbo University, Ningbo, Zhejiang, China.

出版信息

Front Microbiol. 2024 Jul 19;15:1430199. doi: 10.3389/fmicb.2024.1430199. eCollection 2024.

Abstract

Reports regarding the composition and functions of microorganisms in activated sludge from wastewater treatment plants for treating tuna processing wastewater remains scarce, with prevailing studies focusing on municipal and industrial wastewater. This study delves into the efficiency and biological dynamics of activated sludge from tuna processing wastewater, particularly under conditions of high lipid content, for pollutant removal. Through metagenomic analysis, we dissected the structure of microbial community, and its relevant biological functions as well as pathways of nitrogen and lipid metabolism in activated sludge. The findings revealed the presence of 19 phyla, 1,880 genera, and 7,974 species, with Proteobacteria emerging as the predominant phylum. The study assessed the relative abundance of the core microorganisms involved in nitrogen removal, including sp. MZ1T and K601, among others. Moreover, the results also suggested that a diverse array of fatty acid-degrading microbes, such as and H16, could thrive under lipid-rich conditions. This research can provide some referable information for insights into optimizing the operations of wastewater treatment and identify some potential microbial agents for nitrogen and fatty acid degradation.

摘要

关于处理金枪鱼加工废水的污水处理厂活性污泥中微生物的组成和功能的报道仍然很少,目前主要的研究集中在城市和工业废水方面。本研究深入探讨了处理金枪鱼加工废水的活性污泥在高脂质含量条件下对污染物的去除效率和生物动力学。通过宏基因组分析,我们剖析了活性污泥中微生物群落的结构、相关生物学功能以及氮和脂质代谢途径。研究结果显示存在19个门、1880个属和7974个物种,其中变形菌门是主要门类。该研究评估了参与氮去除的核心微生物的相对丰度,包括MZ1T菌属和K601菌属等。此外,结果还表明,多种脂肪酸降解微生物,如某菌属和H16菌属,能够在富含脂质的条件下生长。这项研究可为优化废水处理操作提供一些参考信息,并确定一些潜在的氮和脂肪酸降解微生物制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/549b/11294940/882712278854/fmicb-15-1430199-g001.jpg

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