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From the Cover: Compensatory mechanisms for ameliorating the fundamental trade-off between predator avoidance and foraging

机译:从封面开始:补偿机制可改善避免捕食和觅食之间的基本权衡

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摘要

Most organisms face the problem of foraging and maintaining growth while avoiding predators. Typical animal responses to predator exposure include reduced feeding, elevated metabolism, and altered development rate, all of which can be beneficial in the presence of predators but detrimental in their absence. How then do animals balance growth and predator avoidance? In a series of field and greenhouse experiments, we document that the tobacco hornworm caterpillar, Manduca sexta, reduced feeding by 30–40% owing to the risk of predation by stink bugs, but developed more rapidly and gained the same mass as unthreatened caterpillars. Assimilation efficiency, extraction of nitrogen from food, and percent body lipid content all increased during the initial phase (1-3 d) of predation risk, indicating that enhanced nutritional physiology allows caterpillars to compensate when threatened. However, we report physiological costs of predation risk, including altered body composition (decreased glycogen) and reductions in assimilation efficiency later in development. Our findings indicate that hornworm caterpillars use temporally dynamic compensatory mechanisms that ameliorate the trade-off between predator avoidance and growth in the short term, deferring costs to a period when they are less vulnerable to predation.
机译:大多数生物都面临着觅食和保持生长同时避免捕食者的问题。动物对捕食者暴露的典型反应包括减少食量,增加新陈代谢和改变发育速度,所有这些在捕食者存在时都是有益的,但在缺乏捕食者时有害。那么动物如何平衡生长和避免捕食?在一系列的田间和温室实验中,我们记录到烟草天蛾幼虫Manduca sexta由于有臭虫捕食的危险而使进食量减少了30%至40%,但发育更快并获得了与未威胁的幼虫相同的质量。在捕食风险的初始阶段(1-3天),同化效率,从食物中提取的氮以及体内脂质含量的百分比都增加了,这表明增强的营养生理学使毛毛虫在受到威胁时能够进行补偿。但是,我们报告了捕食风险的生理成本,包括机体组成发生变化(糖原减少)和开发后期同化效率降低。我们的发现表明,天蛾幼虫使用时间动态补偿机制来改善短期内避免捕食者与生长之间的权衡,从而将成本推迟到它们较不容易受到捕食的时期。

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