滨海湿地好氧甲烷氧化菌群落结构及其环境驱动因素
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1.厦门理工学院环境科学与工程学院;2.厦门大学环境与生态学院

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福建省自然基金面上项目(2023J011422);国家自然科学基金青年(423B2603)


Community Structure of Aerobic Methanotrophs and Environmental Drivers in Coastal Wetlands
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1.School of environment science and engineering, Xiamen University of technology;2.College of environment and ecology, Xiamen University

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    摘要:

    本研究探讨了中国东南沿海滨海湿地好氧甲烷氧化菌的群落结构特征及其主控环境因子。采集上海、福州、厦门、东莞四个滨海湿地的沉积物样品,通过甲烷氧化速率测定、理化性质分析,利用16S rRNA扩增子解析群落结构,结合冗余分析,评估温度、降水量和盐度等环境因子对群落分布的影响。结果表明:在甲烷氧化速率方面,各湿地沉积物存在显著差异,福州最高(0.11 mmol·L-1·d-1),东莞最低(0.058 mmol·L-1·d-1);在群落组成方面,各湿地的群落结构组成也存在明显差异,上海和厦门站点以Methylomicrobium为优势类群,福州和东莞站点以Methylobacter和Methylocystis为主;冗余分析显示,温度、含水率和盐度是塑造甲烷氧化菌群落结构的关键因素,其中温度与Methylobacter丰度呈显著正相关,盐度与Methylocystis丰度呈显著负相关。滨海湿地好氧甲烷氧化菌的群落结构和代谢活性受到多重环境因子的调控,不同区域的差异主要源于功能菌群对局部环境的适应性响应。本研究揭示了滨海湿地好氧甲烷氧化菌群落的空间异质性和驱动机制,为理解湿地碳循环过程提供了理论支持。

    Abstract:

    【Objective】 This study investigated the community structure of aerobic methanotrophs in coastal wetlands of southeastern China and the key environmental factors shaping their distribution. 【Method】Sediment samples were collected from four coastal wetlands (Shanghai, Fuzhou, Xiamen, and Dongguan). Methane oxidation rates were determined, physicochemical properties were analyzed, and 16S rRNA amplicon sequencing was performed to resolve community composition. Redundancy analysis (RDA) was applied to assess the influence of environmental factors such as temperature, precipitation, and salinity on community distribution. 【Result】The results showed significant differences in methane oxidation rates among wetlands, with the highest rate observed in Fuzhou (0.11 mmol·L-1·d-1) and the lowest in Dongguan (0.058 mmol·L-1·d-1). Community composition also varied substantially: Methylomicrobium dominated in Shanghai and Xiamen, while Methylobacter and Methylocystis were more abundant in Fuzhou and Dongguan. RDA indicated that temperature, water content, and salinity were the major drivers of community structure, with Methylobacter abundance positively correlated with temperature, and Methylocystis abundance negatively correlated with salinity. These findings demonstrate that the community structure and metabolic activity of aerobic methanotrophs in coastal wetlands are regulated by multiple environmental factors, and regional differences are primarily shaped by the adaptive responses of functional taxa to local conditions. 【Conclusion】This study highlights the spatial heterogeneity and environmental drivers of methanotroph communities in coastal wetlands and provides theoretical insights into wetland carbon cycling processes.

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李晓勇,汪欢,郑越,吴义诚.滨海湿地好氧甲烷氧化菌群落结构及其环境驱动因素[J].土壤学报,,[待发表]
lixiaoyong, wanghuan, zhengyue, wuyicheng. Community Structure of Aerobic Methanotrophs and Environmental Drivers in Coastal Wetlands[J]. Acta Pedologica Sinica,,[In Press]

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  • 收稿日期:2025-03-28
  • 最后修改日期:2025-10-10
  • 录用日期:2025-12-01
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