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<b>Microbial life-history strategies mediate soil organic carbon partitioning and stability during the temperate forest succession</b>

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NIAID Data Ecosystem2026-05-10 收录
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We elucidated depth-explicit regulatory mechanisms: fungal and bacterial necromass C explained the observed reduction in POC and MAOC, highlighting the importance of the “in vivo turnover” pathway (yield growth strategy) in driving contrasted C pools turnover. While MAOC in surface layer was governed by reduced resource acquisition (A) strategy, favoring “ex vivo modification” pathways.

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2026-02-02
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