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Microbial carbon use efficiency promotes global soil carbon storage.

Authors :
Tao, Feng
Huang, Yuanyuan
Hungate, Bruce A.
Manzoni, Stefano
Frey, Serita D.
Schmidt, Michael W. I.
Reichstein, Markus
Carvalhais, Nuno
Ciais, Philippe
Jiang, Lifen
Lehmann, Johannes
Wang, Ying-Ping
Houlton, Benjamin Z.
Ahrens, Bernhard
Mishra, Umakant
Hugelius, Gustaf
Hocking, Toby D.
Lu, Xingjie
Shi, Zheng
Viatkin, Kostiantyn
Source :
Nature; Jun2023, Vol. 618 Issue 7967, p981-985, 5p
Publication Year :
2023

Abstract

Soils store more carbon than other terrestrial ecosystems1,2. How soil organic carbon (SOC) forms and persists remains uncertain1,3, which makes it challenging to understand how it will respond to climatic change3,4. It has been suggested that soil microorganisms play an important role in SOC formation, preservation and loss5–7. Although microorganisms affect the accumulation and loss of soil organic matter through many pathways4,6,8–11, microbial carbon use efficiency (CUE) is an integrative metric that can capture the balance of these processes12,13. Although CUE has the potential to act as a predictor of variation in SOC storage, the role of CUE in SOC persistence remains unresolved7,14,15. Here we examine the relationship between CUE and the preservation of SOC, and interactions with climate, vegetation and edaphic properties, using a combination of global-scale datasets, a microbial-process explicit model, data assimilation, deep learning and meta-analysis. We find that CUE is at least four times as important as other evaluated factors, such as carbon input, decomposition or vertical transport, in determining SOC storage and its spatial variation across the globe. In addition, CUE shows a positive correlation with SOC content. Our findings point to microbial CUE as a major determinant of global SOC storage. Understanding the microbial processes underlying CUE and their environmental dependence may help the prediction of SOC feedback to a changing climate.A deep learning and data-driven modelling study finds that microbial carbon use efficiency is a major determinant of soil organic carbon storage and its spatial variation across the globe. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
618
Issue :
7967
Database :
Complementary Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
164641021
Full Text :
https://doi.org/10.1038/s41586-023-06042-3