Frontiers in Plant Science (Feb 2024)

Precipitation variation: a key factor regulating plant diversity in semi-arid livestock grazing lands

  • Yantao Wu,
  • Yantao Wu,
  • Hao Li,
  • Jiahe Cui,
  • Jiahe Cui,
  • Ying Han,
  • Hangyu Li,
  • Bailing Miao,
  • Yongkang Tang,
  • Zhiyong Li,
  • Jinghui Zhang,
  • Lixin Wang,
  • Cunzhu Liang

DOI
https://doi.org/10.3389/fpls.2024.1294895
Journal volume & issue
Vol. 15

Abstract

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Livestock presence impacts plant biodiversity (species richness) in grassland ecosystems, yet extent and direction of grazing impacts on biodiversity vary greatly across inter-annual periods. In this study, an 8-year (2014-2021) grazing gradient experiment with sheep was conducted in a semi-arid grassland to investigate the impact of grazing under different precipitation variability on biodiversity. The results suggest no direct impact of grazing on species richness in semi-arid Stipa grassland. However, increased grazing indirectly enhanced species richness by elevating community dominance (increasing the sheltering effect of Stipa grass). Importantly, intensified grazing also regulates excessive community biomass resulting from increased inter-annual wetness (SPEI), amplifying the positive influence of annual humidity index on species richness. Lastly, we emphasize that, in water-constrained grassland ecosystems, intra-annual precipitation variability (PCI) was the most crucial factor driving species richness. Therefore, the water-heat synchrony during the growing season may alleviate physiological constraints on plants, significantly enhancing species richness as a result of multifactorial interactions. Our study provides strong evidence for how to regulate grazing intensity to increase biodiversity under future variable climate patterns. We suggest adapting grazing intensity according to local climate variability to achieve grassland biodiversity conservation.

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