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铵促进长江口潮滩沉积物中 I 型甲烷氧化菌促进甲烷氧化。

Ammonium promoting methane oxidation by stimulating the Type Ia methane-oxidizing bacteria in tidal flat sediments of the Yangtze River estuary.

机构信息

School of Food and Biological Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China; Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, School of Life Sciences, Fudan University, Shanghai, China.

Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, School of Life Sciences, Fudan University, Shanghai, China.

出版信息

Sci Total Environ. 2021 Nov 1;793:148470. doi: 10.1016/j.scitotenv.2021.148470. Epub 2021 Jun 15.

Abstract

Estuary and coastal environments have essential ecosystem functions in greenhouse gas sinks and removal of nitrogen pollution. Methane-oxidizing bacteria (MOB) and ammonia-oxidizing bacteria (AOB) communities play critical functions in the estuary's tidal flat sediments. Therefore, the effects of ammonium on MOB communities and methane on AOB communities need to be further explained. In this study, microcosm incubations with different contents of ammonium or methane were conducted for a relatively short (24 h) or long (28 days) period with tidal flat sediments from the Yangtze River estuary. Subsequently, the tagged highly degenerate primer PCR and DNA-based stable isotope probing method were employed to demonstrate the effects on MOB and AOB populations. The results indicated that the methane consumption was enhanced with ammonium supplements within 24 h of incubation. Supplement of 2 μmol/g d.w.s (μmol per gram dry weight soil) NH increased the amount of MOB and its proportion to the total bacteria (p < 0.05) for 28 days incubation. The ammonium supplement increased the proportion of Methylomonas and Methylobacter based on the 16S rRNA gene. According to the functional gene analysis, the MOB primarily engaged in methane oxidation include Methylomonas, Methylobacter, Methylomicrobium, and Methylosarcina, which were associated with Type Ia MOB. It suggested that ammonium supplement may promote methane oxidation by stimulating the Type Ia MOB in tidal flat sediments of the Yangtze River estuary. The current research helps understand the effect of ammonium on methane consumption in the estuary and coastal environments.

摘要

河口和沿海环境在温室气体汇和去除氮污染方面具有重要的生态系统功能。甲烷氧化菌(MOB)和氨氧化菌(AOB)群落在河口潮滩沉积物中发挥着关键作用。因此,需要进一步解释铵对 MOB 群落和甲烷对 AOB 群落的影响。本研究采用不同浓度的铵或甲烷进行微宇宙培养,时间相对较短(24 小时)或较长(28 天),采用长江口潮滩沉积物。随后,采用标记高度退化引物 PCR 和基于 DNA 的稳定同位素探测方法来证明对 MOB 和 AOB 种群的影响。结果表明,在 24 小时的培养期内,甲烷的消耗随着铵的补充而增强。添加 2 μmol/g d.w.s(μmol 每克干重土壤)NH 可在 28 天的培养期内增加 MOB 的数量及其在总细菌中的比例(p < 0.05)。铵的补充增加了基于 16S rRNA 基因的 Methylomonas 和 Methylobacter 的比例。根据功能基因分析,主要参与甲烷氧化的 MOB 包括 Methylomonas、Methylobacter、Methylomicrobium 和 Methylosarcina,它们与 Type Ia MOB 相关。这表明铵的补充可能通过刺激长江口潮滩沉积物中的 Type Ia MOB 来促进甲烷氧化。目前的研究有助于了解铵对河口和沿海环境中甲烷消耗的影响。

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