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Forest biogeochemistry in response to drought

机译:森林生物地球化学对干旱的响应

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摘要

Trees alter their use and allocation of nutrients in response to drought, and changes in soil nutrient cycling and trace gas flux (N2O and CH4) are observed when experimental drought is imposed on forests. In extreme droughts, trees are increasingly susceptible to attack by pests and pathogens, which can lead to major changes in nutrient flux to the soil. Extreme droughts often lead to more common and more intense forest fires, causing dramatic changes in the nutrient storage and loss from forest ecosystems. Changes in the future manifestation of drought will affect carbon uptake and storage in forests, leading to feedbacks to the Earth's climate system. We must improve the recognition of drought in nature, our ability to manage our forests in the face of drought, and the parameterization of drought in earth system models for improved predictions of carbon uptake and storage in the world's forests.
机译:树木会因干旱而改变其养分的使用和分配方式,当对森林施加实验性干旱时,会观察到土壤养分循环和微量气体通量(N2O和CH4)的变化。在极端干旱中,树木越来越容易受到病虫害和病原体的攻击,这可能导致养分流向土壤的重大变化。极端干旱经常导致更常见和更严重的森林大火,导致养分储存量发生急剧变化,并从森林生态系统流失。未来干旱表现形式的变化将影响森林的碳吸收和储存,从而导致对地球气候系统的反馈。我们必须提高人们对自然干旱的认识,提高我们面对干旱管理森林的能力,并在地球系统模型中对干旱进行参数化,以改善对世界森林碳吸收和储存的预测。

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