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微生物与矿物质的相互作用使凋落物质量与土壤有机质形成脱钩。

Microbial and mineral interactions decouple litter quality from soil organic matter formation.

作者信息

Elias Dafydd M O, Mason Kelly E, Goodall Tim, Taylor Ashley, Zhao Pengzhi, Otero-Fariña Alba, Chen Hongmei, Peacock Caroline L, Ostle Nicholas J, Griffiths Robert, Chapman Pippa J, Holden Joseph, Banwart Steve, McNamara Niall P, Whitaker Jeanette

机构信息

UK Centre for Ecology & Hydrology, Lancaster Environment Centre, Library Avenue, Bailrigg, Lancaster, LA1 4AP, UK.

UK Centre for Ecology & Hydrology, MacLean Building, Benson Lane, Crowmarsh Gifford, Wallingford, OX10 8BB, UK.

出版信息

Nat Commun. 2024 Nov 20;15(1):10063. doi: 10.1038/s41467-024-54446-0.

Abstract

Current understanding of soil carbon dynamics suggests that plant litter quality and soil mineralogy control the formation of mineral-associated soil organic carbon (SOC). Due to more efficient microbial anabolism, high-quality litter may produce more microbial residues for stabilisation on mineral surfaces. To test these fundamental concepts, we manipulate soil mineralogy using pristine minerals, characterise microbial communities and use stable isotopes to measure decomposition of low- and high-quality litter and mineral stabilisation of litter-C. We find that high-quality litter leads to less (not more) efficient formation of mineral-associated SOC due to soil microbial community shifts which lower carbon use efficiency. Low-quality litter enhances loss of pre-existing SOC resulting in no effect of litter quality on total mineral-associated SOC. However, mineral-associated SOC formation is primarily controlled by soil mineralogy. These findings refute the hypothesis that high-quality plant litters form mineral-associated SOC most efficiently and advance our understanding of how mineralogy and litter-microbial interactions regulate SOC formation.

摘要

目前对土壤碳动态的理解表明,植物凋落物质量和土壤矿物学控制着与矿物相关的土壤有机碳(SOC)的形成。由于微生物合成代谢效率更高,高质量的凋落物可能会产生更多的微生物残体,以便在矿物表面稳定下来。为了验证这些基本概念,我们使用原始矿物来控制土壤矿物学,表征微生物群落,并使用稳定同位素来测量低质量和高质量凋落物的分解以及凋落物碳的矿物稳定化。我们发现,由于土壤微生物群落的变化降低了碳利用效率,高质量的凋落物导致与矿物相关的SOC形成效率降低(而非提高)。低质量的凋落物会增加原有SOC的损失,导致凋落物质量对与矿物相关的总SOC没有影响。然而,与矿物相关的SOC形成主要受土壤矿物学控制。这些发现驳斥了高质量植物凋落物最有效地形成与矿物相关的SOC这一假设,并推进了我们对矿物学和凋落物 - 微生物相互作用如何调节SOC形成的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0625/11579368/2caa76f3828b/41467_2024_54446_Fig1_HTML.jpg

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