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地下污水渗滤系统的微生物代谢组学分析研究

A study of the microbial metabolomics analysis of subsurface wastewater infiltration system.

作者信息

Yang Lei, Li Yinghua, Su Fei, Li Haibo

机构信息

School of Resources and Civil Engineering, Northeastern University Shenyang 110819 China

出版信息

RSC Adv. 2019 Dec 9;9(68):39674-39683. doi: 10.1039/c9ra05290a. eCollection 2019 Dec 2.

Abstract

Microbial action in SWIS is one of the main ways to remove contaminants. Studying the metabolic processes and pathways of microorganisms is helpful to reveal the mechanism of pollutant removal in the "black box" process of SWIS. In this study, based on metabolomics and UPLC-MS, partial least squares (PLS-DA), principal component analysis (PCA) pattern recognition and cluster analysis were used to classify the microbial samples. According to the model's variable importance factor (VIP value) being greater than 1.5, a total of 53 potential biomarkers were screened out. There was a significant correlation between the microbial metabolites and soil profile. Most microbial metabolites were concentrated in the H2 layer (subsurface layer of SWIS), while there were relatively few in the H4 and H6 layers (middle and lower layers of SWIS); organic acids and alcohol metabolites mainly existed in the anoxic environment (H4 layer); antibiotics, growth hormones and pigments and other small molecule metabolites mainly existed under anaerobic conditions (H6 layer). The results of RDA analysis indicated that environmental factors had an effect on the microbial metabolites. With the variation of different height profiles, the metabolites were significantly affected by ORP and NO , which were negatively correlated. The above conclusions indicated that metabolomics is a reliable, accurate and effective method to quantitatively characterize the stability of SWIS.

摘要

湿地渗滤系统(SWIS)中的微生物作用是去除污染物的主要方式之一。研究微生物的代谢过程和途径有助于揭示SWIS“黑箱”过程中污染物去除的机制。在本研究中,基于代谢组学和超高效液相色谱-质谱联用(UPLC-MS),采用偏最小二乘法判别分析(PLS-DA)、主成分分析(PCA)模式识别和聚类分析对微生物样本进行分类。根据模型变量重要性因子(VIP值)大于1.5,共筛选出53种潜在生物标志物。微生物代谢产物与土壤剖面之间存在显著相关性。大多数微生物代谢产物集中在H2层(SWIS的次表层),而在H4层和H6层(SWIS的中层和下层)相对较少;有机酸和醇类代谢产物主要存在于缺氧环境(H4层);抗生素、生长激素和色素等小分子代谢产物主要存在于厌氧条件下(H6层)。冗余分析(RDA)结果表明环境因素对微生物代谢产物有影响。随着不同高度剖面的变化,代谢产物受氧化还原电位(ORP)和硝酸根(NO )的显著影响,且呈负相关。上述结论表明代谢组学是定量表征SWIS稳定性的可靠、准确且有效的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d01f/9076178/190d39fc562b/c9ra05290a-f1.jpg

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