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季节变化对湖底沉积物中产甲烷菌和甲烷营养菌丰度、结构和多样性的影响。

Seasonal Dynamics of Abundance, Structure, and Diversity of Methanogens and Methanotrophs in Lake Sediments.

机构信息

Univ. Savoie Mont Blanc, INRAE, CARRTEL, 74200, Thonon-les-Bains, France.

出版信息

Microb Ecol. 2021 Oct;82(3):559-571. doi: 10.1007/s00248-021-01689-9. Epub 2021 Feb 4.

Abstract

Understanding temporal and spatial microbial community abundance and diversity variations is necessary to assess the functional roles played by microbial actors in the environment. In this study, we investigated spatial variability and temporal dynamics of two functional microbial sediment communities, methanogenic Archaea and methanotrophic bacteria, in Lake Bourget, France. Microbial communities were studied from 3 sites sampled 4 times over a year, with one core sampled at each site and date, and 5 sediment layers per core were considered. Microbial abundance in the sediment were determined using flow cytometry. Methanogens and methanotrophs community structures, diversity, and abundance were assessed using T-RFLP, sequencing, and real-time PCR targeting mcrA and pmoA genes, respectively. Changes both in structure and abundance were detected mainly at the water-sediment interface in relation to the lake seasonal oxygenation dynamics. Methanogen diversity was dominated by Methanomicrobiales (mainly Methanoregula) members, followed by Methanosarcinales and Methanobacteriales. For methanotrophs, diversity was dominated by Methylobacter in the deeper area and by Methylococcus in the shallow area. Organic matter appeared to be the main environmental parameter controlling methanogens, while oxygen availability influenced both the structure and abundance of the methanotrophic community.

摘要

了解时空微生物群落丰度和多样性变化对于评估微生物在环境中所起的功能作用是必要的。在这项研究中,我们调查了法国布尔热湖两个功能微生物沉积群落(产甲烷古菌和甲烷营养菌)的空间变异性和时间动态。对来自 3 个采样点的微生物群落进行了研究,这些采样点在一年中被采样了 4 次,每个采样点和日期都采集了一个岩芯,每个岩芯考虑了 5 个沉积物层。使用流式细胞术测定沉积物中的微生物丰度。使用 T-RFLP、测序和实时 PCR 分别靶向 mcrA 和 pmoA 基因,评估了甲烷菌和甲烷营养菌的群落结构、多样性和丰度。结构和丰度的变化主要在与湖泊季节性氧动态相关的水-沉积物界面处检测到。产甲烷菌的多样性主要由 Methanomicrobiales(主要是 Methanoregula)成员主导,其次是 Methanosarcinales 和 Methanobacteriales。对于甲烷营养菌,在较深的区域多样性由 Methylobacter 主导,在较浅的区域由 Methylococcus 主导。有机质似乎是控制产甲烷菌的主要环境参数,而氧气的可用性则影响了甲烷营养菌群落的结构和丰度。

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