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很大一部分土壤微生物分类群对实验性变暖敏感。

A Large Fraction of Soil Microbial Taxa Is Sensitive to Experimental Warming.

作者信息

Sáez-Sandino Tadeo, Reich Peter B, Maestre Fernando T, Cano-Díaz Concha, Stefanski Artur, Bermudez Raimundo, Wang Juntao, Dhar Avinash, Singh Brajesh K, Gallardo Antonio, Delgado-Baquerizo Manuel, Trivedi Pankaj

机构信息

Hawkesbury Institute for the Environment, Western Sydney University, Penrith, New South Wales, Australia.

Department of Forest Resources, University of Minnesota, Saint Paul, Minnesota, USA.

出版信息

Glob Chang Biol. 2025 May;31(5):e70231. doi: 10.1111/gcb.70231.

Abstract

Global warming is expected to significantly impact the soil fungal and bacterial microbiomes, yet the predominant ecological response of microbial taxa-whether an increase, decrease, or no change-remains unclear. It is also unknown whether microbial taxa from different evolutionary lineages exhibit common patterns and what factors drive these changes. Here, we analyzed three mid-term (> 5 years) warming experiments across contrasting dryland and temperate-boreal ecosystems, encompassing over 500 topsoil samples collected across multiple time points. We found that warming altered the relative abundance of microbial taxa, with both increases and decreases over time. For instance, the relative abundance of bacterial and fungal taxa responding to warming (increase or decrease) accounted for 35.9% and 42.9% in the dryland ecosystem, respectively. Notably, taxa within the same phylum exhibited divergent responses to warming. These ecological shifts were linked to factors such as photosynthetic cover and fungal lifestyle, both of which influence soil functions. Overall, our findings indicate that soil warming can reshape a significant fraction of the microbial community across ecosystems, potentially driving changes in soil functions.

摘要

预计全球变暖将对土壤真菌和细菌微生物群落产生重大影响,然而,微生物类群的主要生态反应——增加、减少还是无变化——仍不清楚。来自不同进化谱系的微生物类群是否表现出共同模式以及哪些因素驱动这些变化也尚不清楚。在这里,我们分析了三个中期(>5年)变暖实验,这些实验跨越了对比鲜明的旱地和温带-北方生态系统,涵盖了在多个时间点采集的500多个表层土壤样本。我们发现,变暖改变了微生物类群的相对丰度,随着时间的推移既有增加也有减少。例如,在旱地生态系统中,对变暖有反应(增加或减少)的细菌和真菌类群的相对丰度分别占35.9%和42.9%。值得注意的是,同一门内的类群对变暖表现出不同的反应。这些生态变化与光合覆盖和真菌生活方式等因素有关,这两个因素都会影响土壤功能。总体而言,我们的研究结果表明,土壤变暖可以重塑生态系统中很大一部分微生物群落,可能推动土壤功能的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc59/12100458/072267160211/GCB-31-e70231-g005.jpg

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