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Vulnerability of mineral-associated soil organic carbon to climate across global drylands

Authors :
Díaz-Martínez, Paloma
Maestre, Fernando T.
Moreno-Jiménez, Eduardo
Delgado-Baquerizo, Manuel
Eldridge, David J.
Saiz, Hugo
Gross, Nicolas
Le Bagousse-Pinguet, Yoann
Gozalo, Beatriz
Ochoa, Victoria
Guirado, Emilio
García-Gómez, Miguel
Valencia, Enrique
Asensio, Sergio
Berdugo, Miguel
Martínez-Valderrama, Jaime
Mendoza, Betty J.
García-Gil, Juan C.
Zaccone, Claudio
Panettieri, Marco
García-Palacios, Pablo
Fan, Wei
Benavente-Ferraces, Iria
Rey, Ana
Eisenhauer, Nico
Cesarz, Simone
Abedi, Mehdi
Ahumada, Rodrigo J.
Alcántara, Julio M.
Amghar, Fateh
Aramayo, Valeria
Arroyo, Antonio I.
Bahalkeh, Khadijeh
Ben Salem, Farah
Blaum, Niels
Boldgiv, Bazartseren
Bowker, Matthew A.
Bran, Donaldo
Branquinho, Cristina
Bu, Chongfeng
Cáceres, Yonatan
Canessa, Rafaella
Castillo-Monroy, Andrea P.
Castro, Ignacio
Castro-Quezada, Patricio
Chibani, Roukaya
Conceição, Abel A.
Currier, Courtney M.
Darrouzet-Nardi, Anthony
Deák, Balázs
Dickman, Christopher R.
Donoso, David A.
Dougill, Andrew J.
Durán, Jorge
Ejtehadi, Hamid
Espinosa, Carlos
Fajardo, Alex
Farzam, Mohammad
Ferrante, Daniela
Fraser, Lauchlan H.
Gaitán, Juan J.
Gusman Montalván, Elizabeth
Hernández-Hernández, Rosa M.
von Hessberg, Andreas
Hölzel, Norbert
Huber-Sannwald, Elisabeth
Hughes, Frederic M.
Jadán-Maza, Oswaldo
Geissler, Katja
Jentsch, Anke
Ju, Mengchen
Kaseke, Kudzai F.
Kindermann, Liana
Koopman, Jessica E.
Le Roux, Peter C.
Liancourt, Pierre
Linstädter, Anja
Liu, Jushan
Louw, Michelle A.
Maggs-Kölling, Gillian
Makhalanyane, Thulani P.
Issa, Oumarou Malam
Marais, Eugene
Margerie, Pierre
Mazaneda, Antonio J.
McClaran, Mitchel P.
Messeder, João Vitor S.
Mora, Juan P.
Moreno, Gerardo
Munson, Seth M.
Nunes, Alice
Oliva, Gabriel
Oñatibia, Gastón R.
Osborne, Brooke
Peter, Guadalupe
Pueyo, Yolanda
Quiroga, R. Emiliano
Reed, Sasha C.
Reyes, Victor M.
Rodríguez, Alexandra
Ruppert, Jan C.
Sala, Osvaldo
Salah, Ayman
Sebei, Julius
Sloan, Michael
Solongo, Shijirbaatar
Stavi, Ilan
Stephens, Colton R. A.
Teixido, Alberto L.
Thomas, Andrew D.
Throop, Heather L.
Tielbörger, Katja
Travers, Samantha
Val, James
Valko, Orsolya
van den Brink, Liesbeth
Velbert, Frederike
Wamiti, Wanyoike
Wang, Deli
Wang, Lixin
Wardle, Glenda M.
Yahdjian, Laura
Zaady, Eli
Zeberio, Juan M.
Zhang, Yuanming
Zhou, Xiaobing
Plaza, César
Source :
Nature Climate Change; September 2024, Vol. 14 Issue: 9 p976-982, 7p
Publication Year :
2024

Abstract

Mineral-associated organic carbon (MAOC) constitutes a major fraction of global soil carbon and is assumed less sensitive to climate than particulate organic carbon (POC) due to protection by minerals. Despite its importance for long-term carbon storage, the response of MAOC to changing climates in drylands, which cover more than 40% of the global land area, remains unexplored. Here we assess topsoil organic carbon fractions across global drylands using a standardized field survey in 326 plots from 25 countries and 6 continents. We find that soil biogeochemistry explained the majority of variation in both MAOC and POC. Both carbon fractions decreased with increases in mean annual temperature and reductions in precipitation, with MAOC responding similarly to POC. Therefore, our results suggest that ongoing climate warming and aridification may result in unforeseen carbon losses across global drylands, and that the protective role of minerals may not dampen these effects.

Details

Language :
English
ISSN :
1758678X and 17586798
Volume :
14
Issue :
9
Database :
Supplemental Index
Journal :
Nature Climate Change
Publication Type :
Periodical
Accession number :
ejs67041792
Full Text :
https://doi.org/10.1038/s41558-024-02087-y