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Methods for and approaches to evaluating susceptibility of ecological systems to hazardous chemicals.

机译:评估生态系统对危险化学品敏感性的方法和途径。

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摘要

Differences in genetic susceptibility to hazardous chemicals affect individuals of both human and nonhuman populations. In both cases, differences in response to chemicals or general ill health result as a function of these differences in genetic susceptibility. However, ecological systems are a compilation of hundreds or even thousands of different species, resulting in structural and functional characteristics that are themselves affected by differences in susceptibility. Although individual and population differences in susceptibility to hazardous chemicals underlie effects at the community and the ecosystem level, they do not account for all differences. I propose a two-tiered approach to evaluating susceptibility to ecological systems: a general susceptibility as a function of ecosystem type (based on structure and function of that system) and a differential in susceptibility within broad ecosystem types as a function of biotic and abiotic factors. In terrestrial ecosystems, the two factors that most affect overall susceptibility are species diversity and hydrology; evaluation of the effects of hazardous chemicals involves measuring species diversity and water movement. This same methodological approach can be applied to aquatic ecosystems and to highly altered ecosystems such as agriculture, forestry, fisheries, and urbanization.
机译:对危险化学品的遗传易感性差异影响人类和非人类人群。在这两种情况下,对化学物质或一般疾病的反应差异都是由于遗传易感性差异造成的。然而,生态系统是成百上千种不同物种的集合,其结构和功能特征本身受敏感性差异的影响。尽管个人和人群对危险化学物质的敏感性差异是社区和生态系统层面影响的基础,但它们并不能解决所有差异。我提出了一种两级方法来评估生态系统的敏感性:作为生态系统类型的函数的一般敏感性(基于该系统的结构和功能),以及根据生物和非生物因素在广泛的生态系统类型中的敏感性的差异。 。在陆地生态系统中,影响总体敏感性的两个因素是物种多样性和水文学。危险化学品影响的评估涉及测量物种多样性和水分流动。可以将相同的方法学方法应用于水生生态系统和高度变化的生态系统,例如农业,林业,渔业和城市化。

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