共向生态毒理学:理解生态系统对压力脆弱性的启发式模型

Timothy J. Downs, Richard F. Ambrose
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引用次数: 7

摘要

摘要:本文提出了生态毒理学的一个同向性的、多层次的概念,超越了毒素的简单生物水平效应。这一概念包括复杂系统、生态毒理学、生态流行病学以及生态系统的健康和完整性。考虑生态系统及其生物和非生物组成部分的相对稳定性的一种方法是它们对扰动的相干与非相干响应的条件(贝叶斯)概率。人为和自然压力可能在任何水平上改变耗散系统的结构、功能和/或组织,损害自我调节,使不稳定的不连贯反应更有可能发生。共向生态毒理学主张增加对生态毒性物质或事件如何在分子、细胞、有机体、种群和/或群落水平上破坏自我调节机制的理解——它们的多层次生态毒理学。与此同时,为了适应新知识,跨学科的科学家、决策者和其他利益相关者团队必须有效地合作,动员和整合财政、人力、物质和信息资源,以预防和控制现有的优先确定性压力源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Syntropic Ecotoxicology: A Heuristic Model for Understanding the Vulnerability of Ecological Systems to Stress

ABSTRACT This paper argues for a syntropic, multilevel conceptualization of ecotoxicology beyond the simple organism-level effects of poisons. Such a concept embraces complex systems, ecotoxicology, ecoepidemiology, and ecosystem health and integrity. One way of thinking about the relative stability of ecosystems and their biological and nonbiological components is the conditional (Bayesian) probability of their coherent versus incoherent response to perturbation. Anthropogenic and natural stress may change the structure, function and/or organization of dissipative systems at any level, compromising self-regulation and making unstable incoherent responses more probable. Syntropic ecotoxicology argues for increased understanding of how ecotoxic agents or events may be disrupting self-regulating mechanisms at the molecular, cellular, organismal, population, and/or community levels—their multilevel ecotoxicodynamics. In parallel, and adaptive to new knowledge, interdisciplinary teams of scientists, policy makers, and other stakeholders must collaborate effectively to mobilize and integrate financial, human, material, and information resources to prevent and control existing priority deterministic stressors.

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