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利用树木-草地-土壤水分动态模型探索食草动物-火参数空间中的热带稀树草原域。

Savanna domain in the herbivores-fire parameter space exploiting a tree-grass-soil water dynamic model.

机构信息

DIIAR, Politecnico di Milano, P.zza L. da Vinci 32, 20133 Milano, Italy.

出版信息

J Theor Biol. 2011 Nov 21;289:74-82. doi: 10.1016/j.jtbi.2011.08.014. Epub 2011 Aug 24.

Abstract

The tree-grass co-existence in savannas involves multiple and sometimes connected biogeophysical conditions. The savanna domain, its boundaries, and transitions (gradual or abrupt) to other vegetation types (i.e., grassland or forest) are fundamental for the management of ecosystems and for preserving the biodiversity in present conditions and in future changing scenarios. Here we investigate the savanna domain within grazers-fire and browsers-fire parameter planes through a simple ecohydrological model of tree-grass-soil water dynamics. Stability maps allow to identify savanna domains and to show the behavior of vegetation under increasing pressure of grazing and browsing. Stability maps shed light on the causes behind possible vegetation abrupt transitions (e.g., forest collapse and bush encroachment). An application to 15 African savannas sites is presented and discussed with the support of a local sensitivity analysis of the model's parameters.

摘要

稀树草原中的树木-草本共存涉及多种生物地球物理条件,有时这些条件还相互关联。稀树草原域及其边界,以及向其他植被类型(即草地或森林)的过渡(逐渐或突然),对生态系统的管理和保护当前条件下以及未来变化情景中的生物多样性至关重要。在这里,我们通过一个简单的树木-草本-土壤水动力学生态水文学模型,在食草动物-火和食叶动物-火参数平面内研究稀树草原域。稳定图可用于确定稀树草原域,并展示在放牧和觅食压力不断增加的情况下植被的行为。稳定图揭示了可能导致植被突然过渡(例如森林崩溃和灌木入侵)的原因。本文还对 15 个非洲稀树草原地点进行了应用,并通过对模型参数进行局部敏感性分析进行了讨论。

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