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Updated: Aug 28, 2026

Design and Construction of an Experimental Setup to Enhance Mineral Weathering through the Activity of Soil Organisms
Published on: November 10, 2023
Microbial drought resistance is achieved at the expense of soil carbon loss
Xuesen Pang1,2,3, Chengjie Ren4, Nianpeng He1,2,3
1Institute of Carbon Neutrality, Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, School of Ecology, Northeast Forestry University, Harbin, China.
Abstract:
Life history strategies of soil microbiomes may determine their environmental adaptability and influence soil carbon-climate feedbacks. Here, we investigate trade-offs among microbial high yield (Y), resource acquisition (A), and stress tolerance (S) strategies and their consequences for soil carbon mineralization potential along an aridity gradient spanning 9.6 million square kilometers. Y-A-S strategies show nonlinear threshold responses to aridity, where a surge in S- and A-strategies and a sharp decline in Y-strategy occur once aridity exceeds critical levels. The aridity threshold for the Y-strategy occurs after those of S- and A-strategies, as increasing carbon allocation into stress tolerance and resource acquisition comes at the expense of growth. The Y-strategy negatively impacts, while A- and S-strategies positively impact soil carbon mineralization potential. Importantly, aridification intensifies these impacts. Overall, our findings suggest that variations in microbial Y-A-S strategies significantly influence soil carbon cycling and should be considered in microbial models.
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