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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Bistable plant-soil dynamics and biogenic controls on the soil production function
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Bistable plant-soil dynamics and biogenic controls on the soil production function

机译:对土壤生产功能的双稳态植物-土壤动力学和生物控制

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摘要

Soil formation results from opposite processes of bedrock weathering and erosion, whose balance may be altered by natural events and human activities, resulting in reduced soil depth and function. The impacts of vegetation on soil production and erosion and the feedbacks between soil formation and vegetation growth are only beginning to be explored quantitatively. Since plants require suitable soil environments, disturbed soil states may support less vegetation, leading to a downward spiral of increased erosion and decline in ecosystem function. We explore these feedbacks with a minimal model of the soil-plant system described by two coupled nonlinear differential equations, which include key feedbacks, such as plant-driven soil production and erosion inhibition. We show that sufficiently strong positive plant-soil feedback can lead to a 'humped' soil production function, a necessary condition for soil depth bistability when erosion is assumed to vary monotonically with vegetation biomass. In bistable plant-soil systems, the sustainable soil condition engineered by plants is only accessible above a threshold vegetation biomass and occurs in environments where the high potential rate of erosion exerts a strong control on soil production and erosion. Vegetation removal for agriculture reduces the stabilizing effect of vegetation and lowers the system resilience, thereby increasing the likelihood of transition to a degraded soil state. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:土壤形成是由基岩风化和侵蚀的相反过程造成的,其平衡可能会因自然事件和人类活动而改变,从而导致土壤深度和功能降低。植被对土壤生产和侵蚀的影响以及土壤形成和植被生长之间的反馈才刚刚开始定量研究。由于植物需要合适的土壤环境,受干扰的土壤状态可能支持较少的植被,从而导致侵蚀加剧和生态系统功能下降的螺旋式下降。我们用两个耦合的非线性微分方程描述的土壤-植物系统的最小模型来探索这些反馈,其中包括关键反馈,例如植物驱动的土壤产量和侵蚀抑制。我们显示出足够强的植物土壤正反馈可以导致“驼峰”的土壤生产功能,这是假定侵蚀随植被生物量单调变化时土壤深度双稳性的必要条件。在双稳态植物-土壤系统中,由植物工程化的可持续土壤条件仅在阈值植被生物量以上才可访问,并且发生在潜在的高侵蚀速率对土壤生产和侵蚀施加强有力控制的环境中。农业上的植被清除降低了植被的稳定作用并降低了系统的复原力,从而增加了向退化的土壤状态过渡的可能性。版权所有(C)2016 John Wiley&Sons,Ltd.

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