Soils are an important site of carbon storage. Climate is generally regarded as one of the primary controls over soil organic carbon, but there is still uncertainty about the direction and magnitude of carbon responses to climate change. Here we show that geochemistry, too, is an important controlling factor for soil carbon storage. We measured a range of soil and climate variables at 24 sites along a 4,000-km-long north-south transect of natural grassland and shrubland in Chile and the Antarctic Peninsula, which spans a broad range of climatic and geochemical conditions. We find that soils with high carbon content are characterized by substantial adsorption of carbon compounds onto mineral soil and low rates of respiration per unit of soil carbon; and vice versa for soils with low carbon content. Precipitation and temperature were only secondary predictors for carbon storage, respiration, residence time and stabilization mechanisms. Correlations between climatic variables and carbon variables decreased significantly after removing relationships with geochemical predictors. We conclude that the interactions of climatic and geochemical factors control soil organic carbon storage and turnover, and must be considered for robust prediction of current and future soil carbon storage
Shao Pu, Zeng Xubin, Moore David J P, Zeng Xiaodong, Soil microbial respiration from observations and Earth System Models, 10.1088/1748-9326/8/3/034034
Davidson Eric A., Janssens Ivan A., Temperature sensitivity of soil carbon decomposition and feedbacks to climate change, 10.1038/nature04514
Nie Ming, Pendall Elise, Bell Colin, Gasch Caley K., Raut Swastika, Tamang Shanker, Wallenstein Matthew D., Positive climate feedbacks of soil microbial communities in a semi-arid grassland, 10.1111/ele.12034
Karhu Kristiina, Auffret Marc D., Dungait Jennifer A. J., Hopkins David W., Prosser James I., Singh Brajesh K., Subke Jens-Arne, Wookey Philip A., Ågren Göran I., Sebastià Maria-Teresa, Gouriveau Fabrice, Bergkvist Göran, Meir Patrick, Nottingham Andrew T., Salinas Norma, Hartley Iain P., Temperature sensitivity of soil respiration rates enhanced by microbial community response, 10.1038/nature13604
Feng Xiaojuan, Simpson André J., Wilson Kevin P., Dudley Williams D., Simpson Myrna J., Increased cuticular carbon sequestration and lignin oxidation in response to soil warming, 10.1038/ngeo361
Chen Shutao, Huang Yao, Zou Jianwen, Shi Yanshu, Mean residence time of global topsoil organic carbon depends on temperature, precipitation and soil nitrogen, 10.1016/j.gloplacha.2012.10.006
Sulman Benjamin N., Phillips Richard P., Oishi A. Christopher, Shevliakova Elena, Pacala Stephen W., Microbe-driven turnover offsets mineral-mediated storage of soil carbon under elevated CO2, 10.1038/nclimate2436
Tang Jinyun, Riley William J., Weaker soil carbon–climate feedbacks resulting from microbial and abiotic interactions, 10.1038/nclimate2438
Torn Margaret S., Trumbore Susan E., Chadwick Oliver A., Vitousek Peter M., Hendricks David M., 10.1038/38260
Norton Kevin P., Molnar Peter, Schlunegger Fritz, The role of climate-driven chemical weathering on soil production, 10.1016/j.geomorph.2013.08.030
Barcikowski A., Pol. Polar Res., 20, 301 (1999)
Dosseto Anthony, Buss Heather L., Suresh P.O, Rapid regolith formation over volcanic bedrock and implications for landscape evolution, 10.1016/j.epsl.2012.05.008
Gislason Sigurdur R., Oelkers Eric H., Eiriksdottir Eydis S., Kardjilov Marin I., Gisladottir Gudrun, Sigfusson Bergur, Snorrason Arni, Elefsen Sverrir, Hardardottir Jorunn, Torssander Peter, Oskarsson Niels, Direct evidence of the feedback between climate and weathering, 10.1016/j.epsl.2008.10.018
Riley W. J., Maggi F., Kleber M., Torn M. S., Tang J. Y., Dwivedi D., Guerry N., Long residence times of rapidly decomposable soil organic matter: application of a multi-phase, multi-component, and vertically resolved model (BAMS1) to soil carbon dynamics, 10.5194/gmd-7-1335-2014
Lutzow M. v., Kogel-Knabner I., Ekschmitt K., Matzner E., Guggenberger G., Marschner B., Flessa H., Stabilization of organic matter in temperate soils: mechanisms and their relevance under different soil conditions - a review, 10.1111/j.1365-2389.2006.00809.x
Zhou T., J. Geophys. Res., 114, G02016 (2009)
BANNISTER JAN R., VIDAL OSVALDO J., TENEB ERNESTO, SANDOVAL VICTOR, Latitudinal patterns and regionalization of plant diversity along a 4270-km gradient in continental Chile : PATTERNS OF PLANT DIVERSITY IN CHILE, 10.1111/j.1442-9993.2011.02312.x
Xu Xia, Zhou Yan, Ruan Honghua, Luo Yiqi, Wang Jiashe, Temperature sensitivity increases with soil organic carbon recalcitrance along an elevational gradient in the Wuyi Mountains, China, 10.1016/j.soilbio.2010.06.021
Hijmans Robert J., Cameron Susan E., Parra Juan L., Jones Peter G., Jarvis Andy, Very high resolution interpolated climate surfaces for global land areas, 10.1002/joc.1276
Stewart Catherine E., Plante Alain F., Paustian Keith, Conant Richard T., Six Johan, Soil Carbon Saturation: Linking Concept and Measurable Carbon Pools, 10.2136/sssaj2007.0104
Zimmermann Michael, Leifeld Jens, Abiven Samuel, Schmidt Michael W.I., Fuhrer Jürg, Sodium hypochlorite separates an older soil organic matter fraction than acid hydrolysis, 10.1016/j.geoderma.2007.01.014
Mikutta Robert, Kaiser Klaus, Organic matter bound to mineral surfaces: Resistance to chemical and biological oxidation, 10.1016/j.soilbio.2011.04.012
Bibliographic reference
Doetterl, Sebastian ; Stevens, Antoine ; Six, Johan ; Merckx, Roel ; Van Oost, Kristof ; et. al. Soil carbon storage controlled by interactions between geochemistry and climate. In: Nature Geoscience, Vol. 8, no.10, p. 780-783 (2015)