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Management of Biodiversity in Australia

机译:澳大利亚生物多样性管理

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The concept of holistic ecosystem research, termed community-physiology, has gradually developed over the last 150 years. The discipline of community-physiology investigates the physico-chemical processes that determine the structure, growth and biodiversity of plant communities (with associated consumers and decomposers), both above and below ground, in space and time, from the tropical north to the temperate south of Australia. These physico-chemical processes (aerodynamic fluxes — frictional, thermal, evaporative ± atmospheric salinity — plus available soil water and soil nutrients) need to be clearly enunciated and integrated in ‘ecosystem models’ in order to predict the effect of perturbations (such as Global Warming, nutrient pollution, invasive biota, fire, overgrazing, etc.) on Australian ecosystems. An increase in global temperatures of 2oC is predicted to affect the development of the foliage covers of overstorey and understorey strata resulting in open-forests — woodlands — open-woodlands — tall shrublands — low shrublands throughout Australia.
机译:在过去的150年中,整体生态系统研究的概念被称为社区生理学。社区生理学学科研究从物理上北方到热带南部到温带南方在空间和时间上确定地下和地下植物群落(及其相关的消费者和分解者)的结构,生长和生物多样性的物理化学过程。澳大利亚。这些物理化学过程(空气动力学通量-摩擦,热,蒸发±大气盐度-加上可用的土壤水和土壤养分)需要清楚地阐明并整合到“生态系统模型”中,以便预测扰动的影响(例如全球澳大利亚生态系统的变暖,营养物污染,生物入侵,火灾,过度放牧等)。据预测,全球气温升高2℃会影响上层和下层地层的植被,从而导致开阔的森林->林地->开阔的林地->高大的灌木丛->整个澳大利亚的低灌木丛。

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