Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/4799
Title: The soil microbiome governs the response of microbial respiration to warming across the globe
Authors: Sáez-Sandino, Tadeo
García-Palacios, Pablo
Maestre, Fernando T.
Plaza, César
Guirado, Emilio
Singh, Brajesh K.
Wang, Juntao
Cano-Díaz, Concha
Eisenhauer, Nico
Gallardo, Antonio
Delgado-Baquerizo, Manuel
Issue Date: Dec-2023
Citation: Sáez-Sandino, T., García-Palacios, P., Mestre, F. T., Plaza, C., Guirado, E., Singh, B. K., Wang, J., Cano-Díaz, C., Eisenhauer, N., Gallardo, A., & Delgado-Baquerizo, M. (2023). The soil microbiome governs the response of microbial respiration to warming across the globe. Nature Climate Change, 13(12), 1382-1387. https://doi.org/10.1038/s41558-023-01868-1
Abstract: The sensitivity of soil microbial respiration to warming (Q10) remains a major source of uncertainty surrounding the projections of soil carbon emissions to the atmosphere as the factors driving Q10 patterns across ecosystems have been assessed in isolation from each other. Here we report the results of a warming experiment using soils from 332 sites across all continents and major biomes to simultaneously evaluate the main drivers of global Q10 patterns. Compared with biochemical recalcitrance, mineral protection, substrate quantity and environmental factors, the soil microbiome (that is, microbial biomass and bacterial taxa) explained the largest portion of variation in Q10 values. Our work provides solid evidence that soil microbiomes largely govern the responses of soil heterotrophic respiration to warming and thus need to be explicitly accounted for when assessing land carbon–climate feedbacks.
URI: http://hdl.handle.net/20.500.11960/4799
ISSN: 1758-678X
Appears in Collections:CISAS - Publicações indexadas à WoS/Scopus

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