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Soil fertility shifts the relative importance of saprotrophic and mycorrhizal fungi for maintaining ecosystem stability

机译:土壤肥力改变了腐生真菌和菌根真菌对维持生态系统稳定性的相对重要性

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Abstract Soil microbial communities are essential for regulating the dynamics of plant productivity. However, how soil microbes mediate temporal stability of plant productivity at large scales across various soil fertility conditions remains unclear. Here, we combined a regional survey of 51 sites in the temperate grasslands of northern China with a global grassland survey of 120 sites to assess the potential roles of soil microbial diversity in regulating ecosystem stability. The temporal stability of plant productivity was quantified as the ratio of the mean normalized difference vegetation index to its standard deviation. Soil fungal diversity, but not bacterial diversity, was positively associated with ecosystem stability, and particular fungal functional groups determined ecosystem stability under contrasting conditions of soil fertility. The richness of soil fungal saprobes was positively correlated with ecosystem stability under high‐fertility conditions, while a positive relationship was observed with the richness of mycorrhizal fungi under low‐fertility conditions. These relationships were maintained after accounting for plant diversity and environmental factors. Our findings highlight the essential role of fungal diversity in maintaining stable grassland productivity, and suggest that future studies incorporating fungal functional groups into biodiversity–stability relationships will advance our understanding of their linkages under different fertility conditions.
机译:摘要 土壤微生物群落是调控植物生产力动态的重要途径。然而,土壤微生物如何在各种土壤肥力条件下大尺度介导植物生产力的时间稳定性仍不清楚。本文将中国北方温带草原51个地点的区域调查与120个地点的全球草地调查相结合,评估了土壤微生物多样性在调控生态系统稳定性中的潜在作用。植物生产力的时间稳定性被量化为平均归一化差异植被指数与其标准差的比值。土壤真菌多样性与生态系统稳定性呈正相关,而非细菌多样性与生态系统稳定性呈正相关,在土壤肥力对比条件下,特定的真菌功能群决定了生态系统的稳定性。在高肥力条件下,土壤真菌菌株的丰富度与生态系统稳定性呈正相关,而在低肥力条件下,土壤真菌的丰富度与菌根真菌的丰富度呈正相关。在考虑了植物多样性和环境因素后,这些关系得以维持。我们的研究结果强调了真菌多样性在维持稳定的草地生产力中的重要作用,并表明未来将真菌功能群纳入生物多样性-稳定性关系的研究将促进我们对它们在不同生育条件下的联系的理解。

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