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对选择具有不同压力应对方式的虹鳟鱼的环境变化的反应。

Response to environmental change in rainbow trout selected for divergent stress coping styles.

机构信息

Fish Biology Group, Institute of Biomedical and Life Sciences, Graham Kerr Building, University of Glasgow, Glasgow G12 8QQ, UK.

出版信息

Physiol Behav. 2011 Mar 1;102(3-4):317-22. doi: 10.1016/j.physbeh.2010.11.023. Epub 2010 Dec 2.

Abstract

An extensive literature has documented differences in the way individual animals cope with environmental challenges and stressors. Two broad patterns of individual variability in behavioural and physiological stress responses are described as the proactive and reactive stress coping styles. In addition to variability in the stress response, contrasting coping styles may encompass a general difference in behavioural flexibility as opposed to routine formation in response to more subtle environmental changes and non-threatening novelties. In the present study two different manipulations, relocating food from a previously learned location, and introducing a novel object yielded contrasting responses in rainbow trout selected for high (HR) and low (LR) post stress plasma cortisol levels. No difference was seen in the rate of learning the original food location; however, proactive LR fish were markedly slower than reactive HR fish in altering their food seeking behaviour in response to relocated food. In contrast, LR fish largely ignored a novel object which disrupted feeding in HR fish. Hence, it appears that the two lines appraise environmental cues differently. This observation suggests that differences in responsiveness to environmental change are an integral component of heritable stress coping styles, which in this particular case, had opposite effects on foraging efficiency in different situations. Context dependent fitness effects may thus explain the persistence of stable divergence of this evolutionary widespread trait complex.

摘要

大量文献记录了个体动物应对环境挑战和压力的方式存在差异。个体在行为和生理应激反应方面的两种广泛的变异性模式被描述为主动和被动应激应对方式。除了应激反应的可变性之外,相反的应对方式可能包括在行为灵活性方面的一般差异,而不是对更微妙的环境变化和非威胁性新奇事物的常规形成。在本研究中,两种不同的处理方式,即从先前学习的位置重新分配食物和引入新物体,导致了选择用于高(HR)和低(LR)应激后血浆皮质醇水平的虹鳟鱼的相反反应。在学习原始食物位置的速度上没有差异;然而,主动的 LR 鱼在改变其对重新分配的食物的觅食行为方面明显比被动的 HR 鱼慢。相比之下,LR 鱼基本上忽略了一个新物体,这会干扰 HR 鱼的进食。因此,似乎这两种线对环境线索的评价不同。这一观察结果表明,对环境变化的反应性差异是遗传应激应对方式的一个组成部分,在这种特殊情况下,这对不同情况下的觅食效率有相反的影响。因此,情境相关的适应度效应可能解释了这种广泛存在的进化特征复合体稳定分歧的持续存在。

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