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Identification and ranking of environmental threats with ecosystem vulnerability distributions

机译:通过生态系统脆弱性分布识别和排序环境威胁

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摘要

Responses of ecosystems to human-induced stress vary in space and time, because both stressors and ecosystem vulnerabilities vary in space and time. Presently, ecosystem impact assessments mainly take into account variation in stressors, without considering variation in ecosystem vulnerability. We developed a method to address ecosystem vulnerability variation by quantifying ecosystem vulnerability distributions (EVDs) based on monitoring data of local species compositions and environmental conditions. The method incorporates spatial variation of both abiotic and biotic variables to quantify variation in responses among species and ecosystems. We show that EVDs can be derived based on a selection of locations, existing monitoring data and a selected impact boundary, and can be used in stressor identification and ranking for a region. A case study on Ohio’s freshwater ecosystems, with freshwater fish as target species group, showed that physical habitat impairment and nutrient loads ranked highest as current stressors, with species losses higher than 5% for at least 6% of the locations. EVDs complement existing approaches of stressor assessment and management, which typically account only for variability in stressors, by accounting for variation in the vulnerability of the responding ecosystems.
机译:生态系统对人为压力的响应在时空上有所不同,因为压力源和生态系统的脆弱性在时空上都不同。当前,生态系统影响评估主要考虑压力源的变化,而不考虑生态系统脆弱性的变化。我们开发了一种方法,可以根据对本地物种组成和环境条件的监测数据来量化生态系统脆弱性分布(EVD),从而解决生态系统脆弱性变化的问题。该方法结合了非生物和生物变量的空间变化,以量化物种和生态系统之间响应的变化。我们表明,EVD可以基于位置的选择,现有的监视数据和选定的冲击边界来得出,并且可以用于应力源的识别和区域排名。以俄亥俄州淡水鱼为目标物种组的俄亥俄州淡水生态系统的案例研究表明,物理栖息地的破坏和营养负荷是当前的压力源,在至少6%的地区,物种损失高于5%。 EVD通过考虑响应生态系统脆弱性的变化,补充了现有压力源评估和管理方法,这些方法通常仅考虑压力源的可变性。

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