Yang Xin, Li Yuyue, Liang Ruize, Ji Bo, Wang Zhanjun, Wang Hongmei, Shen Yue
College of Forestry and Prataculture Ningxia University Yinchuan China.
Ningxia Grassland and Animal Husbandry Engineering Technology Research Center Yinchuan China.
Ecol Evol. 2023 Aug 4;13(8):e10368. doi: 10.1002/ece3.10368. eCollection 2023 Aug.
The temporal stability of grassland plant communities is substantially affected by soil nutrient enrichment. However, the potential main and interactive effects of arbuscular mycorrhizal fungi (AMF) and soil nitrogen (N) and phosphorus (P) enrichment on the stability of plant productivity have not yet been clarified. We combined a three-year in situ field experiment to assess the impacts of soil fertilization and AMF on the stability of plant productivity. P addition decreased the stability of plant productivity by increasing the standard deviation relative to the mean of plant productivity. However, compared to species richness, the stability of C grasses and other functional groups asynchrony were the most important drivers changing the stability of plant productivity. The negative impacts of P addition overrode the impacts of AMF on the stability of plant productivity. Overall, our study suggests the importance of soil nutrient availability over AMF in terms of shaping the stability of plant productivity. Our results also suggest that three-year anthropogenic soil nutrient enrichment could reduce the stability of plant communities in grassland regardless of AMF in the P-limited grassland ecosystem.
草原植物群落的时间稳定性受到土壤养分富集的显著影响。然而,丛枝菌根真菌(AMF)与土壤氮(N)和磷(P)富集对植物生产力稳定性的潜在主要及交互作用尚未明确。我们结合了一项为期三年的原位田间试验,以评估土壤施肥和AMF对植物生产力稳定性的影响。添加P通过增加相对于植物生产力平均值的标准差降低了植物生产力的稳定性。然而,与物种丰富度相比,C类禾本科植物和其他功能组的异步性稳定性是改变植物生产力稳定性的最重要驱动因素。添加P的负面影响超过了AMF对植物生产力稳定性的影响。总体而言,我们的研究表明,就塑造植物生产力稳定性而言,土壤养分有效性比AMF更重要。我们的结果还表明,在P限制的草原生态系统中,无论有无AMF,三年的人为土壤养分富集都会降低草原植物群落的稳定性。