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Metamorphosing reef fishes avoid predator scent when choosing a home

机译:选择住所时变质的暗礁鱼类避免了捕食者的气味

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摘要

Most organisms possess anti-predator adaptations to reduce their risk of being consumed, but little is known of the adaptations prey employ during vulnerable life-history transitions when predation pressures can be extreme. We demonstrate the use of a transition-specific anti-predator adaptation by coral reef fishes as they metamorphose from pelagic larvae to benthic juveniles, when over half are consumed within 48 h. Our field experiment shows that naturally settling damselfish use olfactory, and most likely innate, predator recognition to avoid settling to habitat patches manipulated to emit predator odour. Settlement to patches emitting predator odour was on average 24–43% less than to control patches. Evidence strongly suggests that this avoidance of sedentary and patchily distributed predators by nocturnal settlers will gain them a survival advantage, but also lead to non-lethal predator effects: the costs of exhibiting anti-predator adaptations. Transition-specific anti-predator adaptations, such as demonstrated here, may be widespread among organisms with complex life cycles and play an important role in prey population dynamics.
机译:大多数生物都具有抗捕食者的适应能力,以减少被捕食的风险,但是,在捕食压力极高的情况下,对于脆弱的生命历史过渡过程中的猎物所采用的适应能力知之甚少。我们证明了当珊瑚礁鱼类从上层幼体变成底栖幼体时变态,而在48小时内消耗了一半以上时,珊瑚礁鱼类使用了过渡特异性的抗捕食者适应性。我们的野外实验表明,自然定居的雀鲷使用嗅觉,并且最有可能是天生的掠食性动物识别,以避免定居到被操纵以散发出食肉气味的栖息地。散布有捕食者气味的斑块的沉降平均比对照斑块的沉降低24–43%。强有力的证据表明,夜间定居者避免久坐和分布不规则的捕食者将为其带来生存优势,但也会导致非致命的捕食者效应:展示反捕食者适应能力的成本。如此处所示,特定于过渡的反捕食者适应可能在生命周期复杂的生物中广泛传播,并在猎物种群动态中发挥重要作用。

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