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Mechanisms linking plant community properties to soil aggregate stability in an experimental grassland plant diversity gradient

机译:在实验性草原植物多样性梯度中将植物群落特性与土壤团聚体稳定性联系起来的机制

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摘要

Soil aggregate stability depends on plant community properties, such as functional group composition, diversity and biomass production. However, little is known about the relative importance of these drivers and the role of soil organisms in mediating plant community effects. We studied soil aggregate stability in an experimental grassland plant diversity gradient and considered several explanatory variables to mechanistically explain effects of plant diversity and plant functional group composition. Three soil aggregate stability measures (slaking, mechanical breakdown and microcracking) were considered in path analyses. Soil aggregate stability increased significantly from monocultures to plant species mixtures and in the presence of grasses, while it decreased in the presence of legumes, though effects differed somewhat between soil aggregate stability measures. Using path analysis plant community effects could be explained by variations in root biomass, soil microbial biomass, soil organic carbon concentrations (all positive relationships), and earthworm biomass (negative relationship with mechanical breakdown). The present study identified important drivers of plant community effects on soil aggregate stability. The effects of root biomass, soil microbial biomass, and soil organic carbon concentrations were largely consistent across plant diversity levels suggesting that the mechanisms identified are of general relevance.
机译:土壤团聚体的稳定性取决于植物群落的特性,例如官能团的组成,多样性和生物量的产生。然而,关于这些驱动因素的相对重要性以及土壤生物在介导植物群落效应中的作用知之甚少。我们研究了实验性草地植物多样性梯度中的土壤团聚体稳定性,并考虑了几个解释变量以机械方式解释植物多样性和植物功能基团组成的影响。在路径分析中考虑了三种土壤团聚体稳定性措施(崩解,机械破坏和微裂纹)。从单一栽培到植物物种混合物以及存在草,土壤团聚体稳定性显着提高,而在存在豆类的情况下,土壤团聚体稳定性下降,尽管在土壤团聚体稳定性措施之间效果有所不同。使用路径分析可以通过根生物量,土壤微生物生物量,土壤有机碳浓度(所有正相关)和worm生物量(与机械分解的负相关)的变化来解释植物群落的影响。本研究确定了植物群落对土壤团聚体稳定性的重要驱动力。在植物多样性水平上,根系生物量,土壤微生物生物量和土壤有机碳浓度的影响在很大程度上是一致的,这表明所确定的机制具有普遍的相关性。

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