Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/4757
Title: A large fraction of soil microbial taxa is sensitive to experimental warming
Authors: 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
Keywords: Ecological responses
Fungal lifestyle
Global warming
Microbial phylogeny
Soil functions
Soil microbial taxa
Warming experiment
Issue Date: 2025
Citation: Sáez‐Sandino, T., Reich, P. B., Maestre, F. T., Cano‐Díaz, C., Stefanski, A., Bermudez, R., Wang, J., Dhar, A., Singh, B.K., Gallardo, A., Delgado-Baquerizo, M. & Trivedi, P. (2025).A large fraction of soil microbial taxa is sensitive to experimental warming. Global Change Biology, 31(5), Artigo e70231. https://doi.org/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.
URI: http://hdl.handle.net/20.500.11960/4757
ISSN: 1354-1013
Appears in Collections:CISAS - Publicações indexadas à WoS/Scopus



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