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首页> 外文期刊>The Journal of Experimental Biology >What is environmental stress? Insights from fish living in a variable environment
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What is environmental stress? Insights from fish living in a variable environment

机译:什么是环境压力?生活在变化环境中的鱼类的见解

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摘要

Although the term environmental stress is used across multiple fields in biology, the inherent ambiguity associated with its definition has caused confusion when attempting to understand organismal responses to environmental change. Here I provide a brief summary of existing definitions of the term stress, and the related concepts of homeostasis and allostasis, and attempt to unify them to develop a general framework for understanding how organisms respond to environmental stressors. I suggest that viewing stressors as environmental changes that cause reductions in performance or fitness provides the broadest and most useful conception of the phenomenon of stress. I examine this framework in the context of animals that have evolved in highly variable environments, using the Atlantic killifish, Fundulus heteroclitus, as a case study. Consistent with the extreme environmental variation that they experience in their salt marsh habitats, killifish have substantial capacity for both short-term resistance and long-term plasticity in the face of changing temperature, salinity and oxygenation. There is inter-population variation in the sensitivity of killifish to environmental stressors, and in their ability to acclimate, suggesting that local adaptation can shape the stress response even in organisms that are broadly tolerant and highly plastic. Whole-organism differences between populations in stressor sensitivity and phenotypic plasticity are reflected at the biochemical and molecular levels in killifish, emphasizing the integrative nature of the response to environmental stressors. Examination of this empirical example highlights the utility of using an evolutionary perspective on stressors, stress and stress responses.
机译:尽管术语“环境胁迫”已在生物学的多个领域中使用,但在试图理解机体对环境变化的反应时,与其定义相关的内在歧义已引起混淆。在这里,我简要介绍了压力这一术语的现有定义以及体内稳态和同态平衡的相关概念,并试图将它们统一起来,以建立一个总体框架,以了解生物体如何应对环境应激源。我建议将压力源视为导致性能或体适能下降的环境变化,从而提供关于压力现象的最广泛,最有用的概念。我将在大西洋变化多变的鱼类(底栖鱼类Fundulus heteroclitus)作为案例研究的背景下,对在高度可变环境中进化的动物进行研究。与它们在盐沼栖息地中经历的极端环境变化相一致,面对变化的温度,盐度和氧合作用,kill鱼具有强大的短期抵抗力和长期可塑性。种群间在对环境应激物的敏感性和适应能力方面存在差异,这表明即使在广泛耐受和高度可塑性的生物中,局部适应也可以塑造应激反应。应激鱼敏感性和表型可塑性之间种群之间的全生物差异反映在鱼类的生化和分子水平上,强调了对环境应激物反应的综合性质。这个经验例子的检验突出了对压力源,压力和压力响应使用进化观点的实用性。

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