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潜水位控制着以某为优势的泥炭地中的产甲烷和甲烷氧化群落以及甲烷排放。 (你提供的原文中“a -dominated”这里“a”后面应该还有具体内容缺失了,我按照完整结构翻译,但请你检查下原文是否准确)

Water table level controls methanogenic and methanotrophic communities and methane emissions in a -dominated peatland.

作者信息

Tian Wen, Wang Hongmei, Xiang Xing, Loni Prakash C, Qiu Xuan, Wang Ruicheng, Huang Xianyu, Tuovinen Olli H

机构信息

State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Wuhan, China.

College of Resource and Environment, Anhui Science and Technology of University, Chuzhou, China.

出版信息

Microbiol Spectr. 2023 Sep 25;11(5):e0199223. doi: 10.1128/spectrum.01992-23.

Abstract

Peatlands are important sources of the greenhouse gas methane emissions equipoised by methanogens and methanotrophs. However, knowledge about how microbial functional groups associated with methane production and oxidation respond to water table fluctuations has been limited to date. Here, methane-related microbial communities and the potentials of methane production and oxidation were determined along sectioned peat layers in a subalpine peatland across four -dominated sites with different water table levels. Methane fluxes were also monitored at these sites. The results showed that gene copies for methanogens were the highest in the 10- to 15-cm peat layer, which was also characterized by the maximum potential methane production (24.53 ± 1.83 nmol/g/h). Copy numbers of the gene for type Ia and Ib methanotrophs were enriched in the 0-5 cm peat layer with the highest potential methane oxidation (43.09 ± 3.44 nmol/g/h). For the type II methanotrophs, the gene copies were higher in the 10- to 15-cm peat layer. Hydrogenotrophic methanogens and type II methanotrophs dominated the methane functional groups. Deterministic process contributed more to methanogenic and methanotrophic community assemblages in comparison with stochastic process. The level of water table significantly shaped methanogenic and methanotrophic community structures and regulated methane fluxes. Compared with vascular plants, mosses significantly reduced the methane emissions in peatlands. Collectively, these findings enhance a comprehensive understanding of the effect of the water table level on methane functional groups, with consequential implications for reducing methane emissions within peatland ecosystems.IMPORTANCEThe water table level is recognized as a critical factor in regulating methane emissions, which are largely dependent on the balance of methanogens and methanotrophs. Previous studies on peat methane emissions have been mostly focused on spatial-temporal variations and the relationship with meteorological conditions. However, the role of the water table level in methane emissions remains unknown. In this work, four representative microhabitats along a water table gradient in a -dominated peatland were sampled to gain an insight into methane functional communities and methane emissions as affected by the water table level. The changes in methane-related microbial community structure and assembly were used to characterize the response to the water table level. This study improves the understanding of the changes in methane-related microbial communities and methane emissions with water table levels in peatlands.

摘要

泥炭地是由产甲烷菌和甲烷氧化菌平衡的温室气体甲烷排放的重要来源。然而,迄今为止,关于与甲烷产生和氧化相关的微生物功能群如何响应地下水位波动的知识仍然有限。在此,沿着一个亚高山泥炭地中不同地下水位的四个主要位点的分层泥炭层,测定了与甲烷相关的微生物群落以及甲烷产生和氧化的潜力。还在这些位点监测了甲烷通量。结果表明,产甲烷菌的基因拷贝数在10至15厘米的泥炭层中最高,该层的特征还在于最大的潜在甲烷产量(24.53±1.83纳摩尔/克/小时)。Ia型和Ib型甲烷氧化菌的基因拷贝数在0至5厘米的泥炭层中富集,该层具有最高的潜在甲烷氧化能力(43.09±3.44纳摩尔/克/小时)。对于II型甲烷氧化菌,基因拷贝数在10至15厘米的泥炭层中更高。氢营养型产甲烷菌和II型甲烷氧化菌在甲烷功能群中占主导地位。与随机过程相比,确定性过程对产甲烷和甲烷氧化群落组装的贡献更大。地下水位水平显著塑造了产甲烷和甲烷氧化群落结构并调节了甲烷通量。与维管植物相比,苔藓显著降低了泥炭地中的甲烷排放。总的来说,这些发现增强了对地下水位水平对甲烷功能群影响的全面理解,对减少泥炭地生态系统中的甲烷排放具有相应的意义。

重要性

地下水位水平被认为是调节甲烷排放的关键因素,而甲烷排放很大程度上取决于产甲烷菌和甲烷氧化菌的平衡。先前关于泥炭地甲烷排放的研究大多集中在时空变化以及与气象条件的关系上。然而,地下水位水平在甲烷排放中的作用仍然未知。在这项工作中,沿着一个以[未提及的物质]为主的泥炭地中地下水位梯度的四个代表性微生境进行了采样,以深入了解受地下水位水平影响的甲烷功能群落和甲烷排放。利用与甲烷相关的微生物群落结构和组装的变化来表征对地下水位水平的响应。这项研究增进了对泥炭地中与甲烷相关的微生物群落变化以及地下水位水平对甲烷排放影响的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2874/10580971/a95356a51c88/spectrum.01992-23.f001.jpg

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