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微生物呼吸的热适应受 r-/K-策略优势的调节。

Microbial respiratory thermal adaptation is regulated by r-/K-strategy dominance.

机构信息

Northeast Asia ecosystem Carbon sink research Center (NACC), Center for Ecological Research, Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, School of Forestry, Northeast Forestry University, Harbin, China.

Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, National Observations and Research Station for Wetland Ecosystems of the Yangtze Estuary, Institute of Eco-Chongming, School of Life Sciences, Fudan University, Shanghai, China.

出版信息

Ecol Lett. 2022 Nov;25(11):2489-2499. doi: 10.1111/ele.14106. Epub 2022 Sep 22.

Abstract

Microbial thermal adaptation is considered to be one of the core mechanisms affecting soil carbon cycling. However, the role of microbial community composition in controlling thermal adaptation is poorly understood. Using microbial communities from the rhizosphere and bulk soils in an 8-year warming experiment as a model, we experimentally demonstrate that respiratory thermal adaptation was much stronger in microbial K-strategist-dominated bulk soils than in microbial r-strategist-dominated rhizosphere soils. Soil carbon availability exerted strong selection on the dominant ecological strategy of the microbial community, indirectly influencing respiratory thermal adaptation. Our findings shed light on the linchpin of the dominant ecological strategy exhibited by the microbial community in determining its respiratory thermal adaptation, with implications for understanding soil carbon losses under warming.

摘要

微生物的热适应被认为是影响土壤碳循环的核心机制之一。然而,微生物群落组成在控制热适应方面的作用还知之甚少。本研究以 8 年增温实验中的根际和非根际土壤微生物群落为模型,实验证明,在微生物 K 策略主导的非根际土壤中,呼吸热适应比微生物 r 策略主导的根际土壤更强。土壤碳供应对微生物群落的主要生态策略选择具有强烈的影响,进而间接影响呼吸热适应。本研究结果揭示了微生物群落的主要生态策略在决定其呼吸热适应中的关键作用,这对于理解变暖条件下土壤碳损失具有重要意义。

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