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A null model for assessing the cover-independent role of bare soil connectivity as indicator of dryland functioning and dynamics

机译:用于评估裸土连通性作为干旱区功能和动态指标的与覆盖无关的作用的零模型

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摘要

Recent research has identified the connectivity of the bare-soil interpatch areas as a key pattern attribute that controls resource conservation and structure-function feedbacks in dryland ecosystems, and several indices have been developed for this attribute. We aimed to characterize the dependence of bare-soil connectivity on vegetation cover and provide a null model that helps differentiate the independent roles of vegetation pattern and cover in hydrological connectivity and dryland functioning. Using a simple hydrological connectivity index, Flowlength, we developed explicit theoretical expressions for its expected value and variance under a null model of random vegetation cover distribution and constant slope. We also obtained the expected value of Flowlength for a model including an aggregation parameter. We found a non-linear inverse relationship between bare-soil connectivity and vegetation cover, which accounts for sharp increases in runoff and sediment yield for low cover values. The expressions for the mean values and standard errors for the random model allow the construction of confidence intervals, and thus testing for deviations from the null random model in experimental data. We found that positive deviations of Flowlength from the expected values, either under random or aggregated-pattern null models, sharply increase before transitions to a degraded state in a spatially-explicit dryland vegetation model, suggesting that an extraordinary increase in bare-soil connectivity may lead to unavoidable degradation. Our results show that increased deviation from the expected cover-dependent bare-soil connectivity may serve as indicator of ecosystem functional status and imminent transitions.
机译:最近的研究已将裸露土壤插补区的连通性确定为控制干旱地区生态系统中资源保护和结构功能反馈的关键模式属性,并且为此属性开发了一些指标。我们旨在表征裸土连通性对植被覆盖的依赖性,并提供一个空模型,以帮助区分植被格局和覆盖物在水文连通性和旱地功能方面的独立作用。使用简单的水文连通性指数Flowlength,在随机植被覆盖分布和恒定坡度的零模型下,针对其期望值和方差开发了明确的理论表达式。我们还获得了包含聚合参数的模型的Flowlength的期望值。我们发现裸露土壤连通性与植被覆盖之间存在非线性反比关系,这解释了低覆盖率下径流量和沉积物产量的急剧增加。随机模型的平均值和标准误差的表达式允许构造置信区间,从而测试实验数据中与零随机模型的偏差。我们发现,在空间明晰的旱地植被模型中,在过渡到退化状态之前,Flowlength与期望值的正偏差(在随机模型或聚集模式无效模型下)会急剧增加,这表明裸土连通性可能会异常增加导致不可避免的降解。我们的结果表明,与预期的依赖于覆盖物的裸露土壤连通性增加的偏差可能是生态系统功能状态和即将过渡的指示。

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