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不同季节表流人工湿地中反硝化细菌群落特征及其与环境因子的关系。

Denitrifying bacterial communities in surface-flow constructed wetlands during different seasons: characteristics and relationships with environment factors.

机构信息

Beijing Construction Engineering Group Environmental Remediation Co. Ltd, Beijing, 100051, China.

National Engineering Laboratory for Site Remediation Technologies, Beijing, 100872, China.

出版信息

Sci Rep. 2021 Mar 1;11(1):4918. doi: 10.1038/s41598-021-82438-3.

Abstract

Denitrification is an important part of the nitrogen cycle and the key step to removal of nitrogen in surface-flow wetlands. In this study, we explored space-time analysis with high-throughput sequencing to elucidate the relationships between denitrifying bacteria community structures and environmental factors during different seasons. Our results showed that along the flow direction of different processing units, there were dynamic changes in physical and chemical indicators. The bacterial abundance indexes (ACEs) in May, August, and October were 686.8, 686.8, and 996.2, respectively, whereas the Shannon-Weiner indexes were 3.718, 4.303, and 4.432, respectively. Along the flow direction, the denitrifying bacterial abundance initially increased and then decreased subsequently during the same months, although diversity tended to increase. The abundance showed similar changes during the different months. Surface flow wetlands mainly contained the following denitrifying bacteria genus: unclassified Bacteria (37.12%), unclassified Proteobacteria (18.16%), Dechloromonas (16.21%), unranked environmental samples (12.51%), unclassified Betaproteobacteria (9.73%), unclassified Rhodocyclaceae (2.14%), and Rhodanobacter (1.51%). During different seasons, the same unit showed alternating changes, and during the same season, bacterial community structures were influenced by the second genus proportion in different processing units. ACEs were strongly correlated with temperature, dissolved oxygen, and pH. Bacterial diversity was strongly correlated with temperature, electrical conductivity, pH, and oxidation reduction potential. Denitrifying bacteria are greatly affected by environmental factors such as temperature and pH.

摘要

反硝化作用是氮循环的重要组成部分,也是表面流湿地去除氮的关键步骤。在这项研究中,我们利用高通量测序进行时空分析,阐明了不同季节反硝化细菌群落结构与环境因素之间的关系。结果表明,在不同处理单元的流动方向上,理化指标存在动态变化。5 月、8 月和 10 月的细菌丰度指数(ACE)分别为 686.8、686.8 和 996.2,而 Shannon-Weiner 指数分别为 3.718、4.303 和 4.432。沿流动方向,在同一月份,反硝化细菌丰度先增加后减少,尽管多样性有增加的趋势。在不同月份,丰度也呈现出相似的变化。表面流湿地主要含有以下反硝化细菌属:未分类细菌(37.12%)、未分类变形菌(18.16%)、脱氯单胞菌(16.21%)、未分类环境样本(12.51%)、未分类β变形菌(9.73%)、未分类 Rhodocyclaceae(2.14%)和 Rhodanobacter(1.51%)。在不同季节,同一单元表现出交替变化,而在同一季节,不同处理单元中第二属的比例影响细菌群落结构。ACE 与温度、溶解氧和 pH 呈强相关性。细菌多样性与温度、电导率、pH 和氧化还原电位呈强相关性。反硝化细菌受温度和 pH 等环境因素的影响较大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11c2/7921683/753461116bb9/41598_2021_82438_Fig1_HTML.jpg

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