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The stability of African savannas: Insights from the indirect estimation of the parameters of a dynamic model

机译:非洲稀树草原的稳定性:从动态模型参数的间接估计中获得的见解

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Savannas are characterized by a competitive tension between grasses and trees, and theoretical models illustrate how this competitive tension is influenced by resource availability, competition for these resources, and disturbances. How this universe of theoretical possibilities translates into the real world is, however, poorly understood. In this paper we indirectly parameterize a theoretical model of savanna dynamics with the aim of gaining insights as to how the grass-tree balance changes across a broad biogeographical gradient. We use data on the abundance of trees in African savannas and Markov chain Monte Carlo methods to estimate the model parameters. The analysis shows that grasses and trees can coexist over a broad range of rainfall regimes. Further, our results indicate that savannas may be regulated by either asymptotically stable dynamics (in the absence of fire) or by stable limit cycles (in the presence of fire). Rainfall does not influence which, of these two classes of dynamics occurs. We conclude that, even though fire might not be necessary for grass-tree coexistence, it nonetheless is an important modifier of grass: tree ratios.
机译:稀树草原的特征是草木之间存在竞争压力,理论模型说明了这种竞争压力如何受到资源可用性,对这些资源的竞争以及干扰的影响。但是,人们对这种理论可能性的宇宙如何转化为现实世界知之甚少。在本文中,我们间接地对热带稀树草原动力学的理论模型进行参数化,以期获得有关草木平衡如何在较宽的生物地理梯度范围内变化的见识。我们使用有关非洲大草原树木数量的数据和马尔可夫链蒙特卡洛方法来估计模型参数。分析表明,草木可以在多种降雨方式下共存。此外,我们的结果表明,稀树草原可能通过渐近稳定的动力学(在没有火的情况下)或稳定的极限环(在有火的情况下)进行调节。降雨不影响这两类动力学中的哪一种发生。我们得出的结论是,尽管对于树与树的共存而言可能不需要火,但它仍然是草与树之比的重要修饰符。

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