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Global environmental changes impact soil hydraulic functions through biophysical feedbacks

机译:全球环境变化通过生物物理反馈将土壤液压功能撞击

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Although only representing 0.05% of global freshwater, or 0.001% of all global water, soil water supports all terrestrial biological life. Soil moisture behaviour in most models is constrained by hydraulic parameters that do not change. Here we argue that biological feedbacks from plants, macro-fauna and the microbiome influence soil structure, and thus the soil hydraulic parameters and the soil water content signals we observe. Incorporating biological feedbacks into soil hydrological models is therefore important for understanding environmental change and its impacts on ecosystems. We anticipate that environmental change will accelerate and modify soil hydraulic function. Increasingly, we understand the vital role that soil moisture exerts on the carbon cycle and other environmental threats such as heatwaves, droughts and floods, wildfires, regional precipitation patterns, disease regulation and infrastructure stability, in addition to agricultural production. Biological feedbacks may result in changes to soil hydraulic function that could be irreversible, resulting in alternative stable states (ASS) of soil moisture. To explore this, we need models that consider all the major feedbacks between soil properties and soil-plant-faunal-microbial-atmospheric processes, which is something we currently do not have. Therefore, a new direction is required to incorporate a dynamic description of soil structure and hydraulic property evolution into soil-plant-atmosphere, or land surface, models that consider feedbacks from land use and climate drivers of change, so as to better model ecosystem dynamics.
机译:虽然仅代表全球淡水的0.05%,但占全球全球水的0.001%,土壤水支持所有陆地生物生命。大多数模型中的土壤水分行为受到不会改变的液压参数的限制。在这里,我们认为来自植物,宏动植物和微生物组的生物反馈影响土壤结构,从而进行土壤液压参数和我们观察到的土壤水分含量信号。因此,将生物反馈纳入土壤水文模型对于了解环境变化以及对生态系统的影响很重要。我们预计环境变化将加速和改变土壤液压功能。我们越来越了解土壤水分对碳循环和其他环境威胁等散热,干旱和洪水,野火,区域降水模式,疾病监管和基础设施稳定性的重要作用,以及农业生产。生物反馈可能导致土壤液压功能的变化,这可能是不可逆的,导致土壤水分的替代稳定状态(屁股)。为了探索这一点,我们需要模型,以考虑土壤性质和土壤 - 植物 - 粪便 - 微生物 - 微生物过程之间的所有主要反馈,这是我们目前没有的。因此,需要新的方向来将土壤结构和液压性能进化的动态描述纳入土壤 - 植物 - 植物 - 大气层或陆地表面,考虑从土地利用和变化的气候驱动程序反馈的模型,以更好地模范生态系统动态。

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