J Integr Plant Biol.

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Grazing alters the response of ANPP to precipitation variability in a desert steppe

Feng Zhang, Shaoyu Li, Jiahua Zheng, Bin Zhang, Jing Wang, Zhongwu Wang, Zhiguo Li, Guodong Han* and Mengli Zhao*   

  1. Key Laboratory of Grassland Resources of the Ministry of Education, College of Grassland Science, Inner Mongolia Agricultural University, Hohhot 010011, China
    *Correspondences: Mengli Zhao (nmgmlzh@126.com, Dr. Zhao is fully responsible for the distribution of all materials associated with this article); Guodong Han (hanguodong@imau.edu.cn)
  • Received:2025-09-09 Revised:2026-09-02 Online:2026-09-28
  • Supported by:
    This work was supported by the National Key Research and Development Program of China [2024YFE0113100], the Natural Science Foundation of Inner Mongolia [2024QN03049], the First-class Discipline Research Special Project [YLXKZX-NND-040], the Inner Mongolia Agricultural University High-level and Outstanding Doctoral Talent Introduction Research Start-up Project [NDYB2023-16], the Young Elite Scientist Sponsorship Program by CAST, Research Support Projects for the Introduction of High-level Talents in the Autonomous Region-level Public Institutions of Inner Mongolia Autonomous Region in 2023, and Selected Projects of Inner Mongolia Autonomous Region Overseas Students' Innovation and Entrepreneurship Start-up Support Program in 2024. We are grateful to many students for continuously collecting data in the field and for laboratory analysis during the study period, and also thank “Key Laboratory of Grassland Germplasm Innovation and Sustainable Utilization of Grassland Resources in Inner Mongolia Autonomous Region”, “Key Laboratory of Grassland Resources, Ministry of Education, Integrated Key Research Platform”, and the China Scholarship Council for their support.

Abstract: Precipitation is a pivotal driver of aboveground net primary productivity (ANPP) in grasslands, while grazing regulates ANPP by reshaping plant community structure. However, how grazing regulates grassland responses to precipitation variability remains incompletely understood. Here, we conducted an 18-year field grazing experiment in a desert steppe, combining long-term ANPP monitoring with daily precipitation data. Our results revealed that grazing significantly reduced community ANPP by 31% and forb ANPP by 61%. This reflected a shift from palatable forbs to stress-tolerant grasses, primarily driven by increased abundance of Stipa breviflora. June–July precipitation amount emerged as the primary driver of inter-annual ANPP variability. Critically, significant interactions between grazing and precipitation demonstrated that grazing fundamentally altered these precipitation–ANPP relationships, strengthening the response slope of grasses while weakening that of forbs and the whole community. Although grazing did not significantly alter legacy effects at the community or grass level, it significantly modulated the legacy effect on forb ANPP; previous-year precipitation remained a significant predictor of ANPP across all organizational levels. Grazing-induced phenotypic adjustments in S. breviflora (increased root length and population density) strengthened the coupling between grasses and early- and mid-summer precipitation, even though their precipitation-use efficiency did not differ between treatments. Our findings demonstrate that grazing reorganizes ecosystem sensitivity to climate by shifting plant functional group dominance and key species traits. These findings provide a mechanistic basis for forecasting grassland responses to climate variability and for guiding grazing management under seasonal precipitation forecasts.

Key words: desert steppe, grazing, plant functional groups, precipitation sensitivity, species traits

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