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Coexistence trend contingent to Mediterranean oaks with different leaf habits

机译:共存趋势与地中海橡树有不同的叶子习惯

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Abstract In a previous work we developed a mathematical model to explain the co-occurrence of evergreen and deciduous oak groups in the Mediterranean region, regarded as one of the distinctive features of Mediterranean biodiversity. The mathematical analysis showed that a stabilizing mechanism resulting from niche difference (i.e. different water use and water stress tolerance) between groups allows their coexistence at intermediate values of suitable soil water content. A simple formal derivation of the model expresses this hypothesis in a testable form linked uniquely to the actual evapotranspiration of forests community. In the present work we ascertain whether this simplified conclusion possesses some degree of explanatory power by comparing available data on oaks distributions and remotely sensed evapotranspiration (MODIS product) in a large-scale survey embracing the western Mediterranean area. Our findings confirmed the basic assumptions of model addressed on large scale, but also revealed asymmetric responses to water use and water stress tolerance between evergreen and deciduous oaks that should be taken into account to increase the understating of species interactions and, ultimately, improve the modeling capacity to explain co-occurrence.
机译:摘要在以前的工作中,我们开发了一种数学模型,以解释地中海地区的常绿和落叶橡树集团的共同发生,被视为地中海生物多样性的独特特征之一。数学分析表明,基团之间的利基差异(即不同的用水和水胁迫耐受性和水胁迫耐受性)允许它们在合适的土壤含水量的中间值中共存。该模型的简单正式推导以可经可测试的形式表达了这一假设,与森林群落的实际蒸散相连。在目前的工作中,我们确定了这种简化的结论是否通过比较橡木分布的可用数据和远程感测的蒸散(MODIS产品)在拥有西地中海地区的大规模调查中具有一定程度的解释能力。我们的调查结果证实了模型的基本假设在大规模上寻址,但也揭示了对常绿和落叶橡木之间的水使用和水胁迫耐受的不对称反应,以增加物种相互作用的低估,并最终改善建模解释合作的能力。

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