Experiment shows grazing increases biomass production by 16.7-28% in alpine meadows, highlighting biodiversity benefits.
Appropriate grazing enhances grassland sustainability by simultaneously promoting biodiversity and productivity; however, the underlying mechanisms remain insufficiently understood. We tested the hypothesis that grazing enhances biomass production by expanding the functional trait space of plant communities thereby improving resource acquisition and utilization efficiency. In a Tibetan alpine meadow, we conducted a yak grazing experiment with four treatments: grazing exclusion, light, moderate, and heavy grazing. We measured 13 functional traits across 22 common plant species, which were categorized grazing increasers, decreasers, or generalists based on their abundance responses to grazing intensity. Grazing increased biomass production by 16.7–28.0% compared to exclusion, with moderate and heavy grazing significantly expanding the functional trait space. This expansion showed a strong positive correlation with biomass production, primarily mediated by increased variation in leaf traits among sedges, legumes, and grazing‐responsive species (i.e. increasers and generalists), which are associated with enhanced photosynthetic efficiency. Our study provides direct evidence for the ecological benefits of appropriate grazing and demonstrates, for the first time, how trait variation and species‐specific responses jointly mediate the effects of grazing on community‐level functional trait space and productivity. These findings advance mechanistic understanding of how individual plant responses to grazing scale up to influence ecosystem functioning and offer valuable insights for sustainable grassland management.
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Bai et al. (2025) studied this question.