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An ecoclimatic framework for evaluating the resilience of vegetation to water deficit

机译:评价植被对缺水的适应力的生态气候框架

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The surge in global efforts to understand the causes and consequences of drought on forest ecosystems has tended to focus on specific impacts such as mortality. We propose an ecoclimatic framework that takes a broader view of the ecological relevance of water deficits, linking elements of exposure and resilience to cumulative impacts on a range of ecosystem processes. This ecoclimatic framework is underpinned by two hypotheses: (i) exposure to water deficit can be represented probabilistically and used to estimate exposure thresholds across different vegetation types or ecosystems; and (ii) the cumulative impact of a series of water deficit events is defined by attributes governing the resistance and recovery of the affected processes. We present case studies comprising Pinus edulis and Eucalyptus globulus, tree species with contrasting ecological strategies, which demonstrate how links between exposure and resilience can be examined within our proposed framework. These examples reveal how climatic thresholds can be defined along a continuum of vegetation functional responses to water deficit regimes. The strength of this framework lies in identifying climatic thresholds on vegetation function in the absence of more complete mechanistic understanding, thereby guiding the formulation, application and benchmarking of more detailed modelling.
机译:为了解干旱对森林生态系统的原因和后果而进行的全球努力已趋向于集中在诸如死亡率等具体影响上。我们提出了一个生态气候框架,该框架从更广泛的角度看待缺水的生态相关性,将暴露和复原力的要素与对一系列生态系统过程的累积影响联系起来。这一生态气候框架有两个假设:(i)可以以概率的方式表示缺水的暴露量,并用于估算不同植被类型或生态系统的暴露量阈值; (ii)一系列缺水事件的累积影响由控制受影响过程的抵抗力和恢复的属性来定义。我们目前进行的案例研究包括可食松和桉树(Eucalyptus globulus),具有相反生态策略的树种,这些案例说明了如何在我们提出的框架内检查暴露与弹性之间的联系。这些例子揭示了如何根据植被对缺水状况的连续响应来定义气候阈值。该框架的优势在于在没有更完整的机械理解的情况下确定植被功能的气候阈值,从而指导更详细的建模的制定,应用和基准测试。

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