Tree Diversity Enhances Nitrogen Retention and Accelerates Phosphorus Cycling.

Tao Wang, Zaipeng Yu, Minghui Da, Mengjuan Wang, Hui Jia, Lulu He, Xiaohua Wan, Zhiqun Huang, Yann Hautier

Journal: Global change biology 2026;32(3):e70819

PMID: 41860592

Abstract

Nitrogen (N) and phosphorus (P) cycling are crucial for terrestrial ecosystem productivity and carbon sequestration. While biodiversity is known to regulate soil N and P availability, the mechanistic linkages between biodiversity and fundamental processes of nutrient cycles remain unclear. This knowledge gap limits our capacity to model ecosystem biogeochemical responses to biodiversity loss. Using a large-scale tree diversity experiment in subtropical China, we examined how tree species richness regulates ecosystem nutrient cycling in a region with N sufficiency but P limitation. We found that increased tree species richness enhanced N retention by boosting plant N stock and recycling, while reducing soil NO3 - leaching and N2O emissions. These shifts, coupled with a reduction in soil δ15N, demonstrate tighter N cycling. Concurrently, tree species richness increased soil acid phosphatase activity, foliar P resorption efficiency, and plant P storage, synergistically accelerating ecosystem P cycling. Our integrated findings provide direct experimental evidence that tree diversity regulates both N and P cycling, offering valuable insights into how plant diversity can mitigate nutrient imbalances and promote ecosystem resilience to nutrient limitations.

© 2026 John Wiley & Sons Ltd.

Address: Key Laboratory of Humid Subtropical Eco-Geographical Process of Ministry of Education, Fujian Normal University, Fuzhou, China.; School of Geographical Sciences, Fujian Normal University, Fuzhou, China.; Ecology and Biodiversity Group, Department of Biology, Utrecht University, Utrecht, the Netherlands.
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