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Bridging Drought Experiment and Modeling: Representing the Differential Sensitivities of Leaf Gas Exchange to Drought

机译:桥接干旱实验和建模:代表叶片气体交换对干旱的不同敏感性

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摘要

Global climate change is expected to increase drought duration and intensity in certain regions while increasing rainfall in others. The quantitative consequences of increased drought for ecosystems are not easy to predict. Process-based models must be informed by experiments to determine the resilience of plants and ecosystems from different climates. Here, we demonstrate what and how experimentally derived quantitative information can improve the representation of stomatal and non-stomatal photosynthetic responses to drought in large-scale vegetation models. In particular, we review literature on the answers to four key questions: (1) Which photosynthetic processes are affected under short-term drought? (2) How do the stomatal and non-stomatal responses to short-term drought vary among species originating from different hydro-climates? (3) Do plants acclimate to prolonged water stress, and do mesic and xeric species differ in their degree of acclimation? (4) Does inclusion of experimentally based plant functional type specific stomatal and non-stomatal response functions to drought help Land Surface Models to reproduce key features of ecosystem responses to drought? We highlighted the need for evaluating model representations of the fundamental eco-physiological processes under drought. Taking differential drought sensitivity of different vegetation into account is necessary for Land Surface Models to accurately model drought responses, or the drought impacts on vegetation in drier environments may be over-estimated.
机译:预计全球气候变化将增加某些地区的干旱持续时间和强度,同时增加其他地区的降雨。干旱增加给生态系统带来的定量后果不容易预测。基于过程的模型必须通过实验来确定来自不同气候的植物和生态系统的复原力。在这里,我们演示了在大型植被模型中,实验得出的定量信息如何以及如何能够改善对干旱的气孔和非气孔光合响应的表征。特别是,我们回顾了有关以下四个关键问题的答案的文献:(1)短期干旱会影响哪些光合作用过程? (2)源自不同水文气候的物种对短期干旱的气孔和非气孔反应如何变化? (3)植物能适应长时间的水分胁迫吗?中度和干燥度物种的适应程度是否不同? (4)纳入以实验为基础的植物功能类型对干旱的气孔和非气孔响应功能是否有助于陆地表面模型重现生态系统对干旱的响应的关键特征?我们强调了需要评估干旱条件下基本生态生理过程的模型表示。为了准确模拟干旱响应,需要考虑到不同植被的不同干旱敏感性,否则就可能高估了干旱对干旱环境中植被的影响。

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