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首页> 外文期刊>Functional Ecology >Enhanced anti-predator defence in the presence of food stress in the water flea Daphnia magna
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Enhanced anti-predator defence in the presence of food stress in the water flea Daphnia magna

机译:在食物跳蚤水蚤Daphnia magna存在食物压力的情况下增强了抗捕食者的防御能力

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1. Many prey organisms show adaptive trait shifts in response to predation. These responses are often studied under benign conditions, yet energy stress may be expected to interfere with optimal shifts in trait values. 2. We exposed the water flea Daphnia magna to fish predation and food stress and quantified both life history responses as well as physiological responses (metabolic rate, stress proteins, energy storage and immune function) to explore the architecture of defence strategies in the face of the combined stressors and the occurrence of trade-offs associated with energy constraints. 3. All traits studied showed either an overall or clone-dependent response to food stress. The chronic response to predation risk was less strong for the measured physiological traits than for life history traits, and stronger under food stress than under benign conditions for age at maturity, intrinsic population growth rate and offspring performance (measured as juvenile growth). Immune function (measured as phenoloxidase activity) was lower under predation risk but only at high food, probably because minimum levels were maintained at low food. 4. Overall, food stress induced stronger adaptive predator-induced responses, whereas more energy was invested in reproduction under benign conditions at the cost of being less defended. Our results suggest that food stress may increase the capacity to cope with predation risk and underscore the importance of integrating responses to different stressors and traits, and show how responses towards one stressor can have consequences for the susceptibility to other stressors.
机译:1.许多猎物生物都表现出对捕食的适应性状转变。通常在良性条件下研究这些反应,但可能会预期能量压力会干扰性状值的最佳变化。 2.我们将跳蚤水蚤(Daphnia magna)暴露在鱼类的捕食和食物压力中,并量化了其生活史反应和生理反应(代谢率,应激蛋白,能量存储和免疫功能),以探索面对鱼的防御策略的体系结构。组合的压力源和与能量约束有关的权衡取舍。 3.研究的所有性状均显示出对食物压力的整体或克隆依赖性反应。对于所测量的生理特征,其对捕食风险的慢性反应不如对生活史特征的强烈反应,在食物压力下,其对成熟年龄,内在人口增长率和后代表现(衡量为幼年生长)的抵抗力要强于在良性条件下。在被捕食的风险下,免疫功能(以酚氧化酶活性衡量)较低,但仅在高食物时,可能是因为在低食物中维持了最低水平。 4.总的来说,食物压力引起了更强的适应性捕食者引起的反应,而在良性条件下,更多的能量被投入到繁殖中,却受到了更少的防御。我们的结果表明,食物压力可能会提高应对捕食风险的能力,并强调整合对不同压力源和性状的反应的重要性,并表明对一个压力源的反应如何对其他压力源易感性产生影响。

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