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首页> 外文期刊>The Journal of Experimental Biology >Predation risk modifies behaviour by shaping the response of identified brain neurons
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Predation risk modifies behaviour by shaping the response of identified brain neurons

机译:掠食风险通过塑造已识别的大脑神经元的反应来改变行为

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Interpopulation comparisons in species that show behavioural variations associated with particular ecological disparities offer good opportunities for assessing how environmental factors may foster specific functional adaptations in the brain. Yet, studies on the neural substrate that can account for interpopulation behavioural adaptations are scarce. Predation is one of the strongest driving forces for behavioural evolvability and, consequently, for shaping structural and functional brain adaptations. We analysed the escape response of crabs Neohelice granulata from two isolated populations exposed to different risks of avian predation. Individuals from the high-risk area proved to be more reactive to visual danger stimuli (VDS) than those from an area where predators are rare. Control experiments indicate that the response difference was specific for impending visual threats. Subsequently, we analysed the response to VDS of a group of giant brain neurons that are thought to play a main role in the visually guided escape response of the crab. Neurons from animals of the population with the stronger escape response were more responsive to VDS than neurons from animals of the less reactive population. Our results suggest a robust linkage between the pressure imposed by the predation risk, the response of identified neurons and the behavioural outcome.
机译:物种之间的种群间比较显示出与特定生态差异有关的行为差异,为评估环境因素如何促进大脑中特定功能适应性提供了很好的机会。然而,关于神经基质可以解释种群间行为适应的研究很少。捕食是行为演化能力最强的驱动力之一,因此,也是塑造大脑结构和功能适应能力的最强驱动力之一。我们分析了两个新种群蟹的逃逸反应,它们来自两个面临不同鸟类捕食风险的孤立种群。高危地区的人对视觉危险刺激(VDS)的反应比掠食者稀少的地区的人对反应更为敏感。对照实验表明,反应差异是针对即将到来的视觉威胁的。随后,我们分析了一组巨大的大脑神经元对VDS的反应,这些神经元在蟹的视觉引导逃逸反应中起主要作用。逃避反应较强的动物的神经元对VDS的反应性比反应性较低的动物的神经元更敏感。我们的结果表明,捕食风险所施加的压力,所识别出的神经元的反应与行为结果之间存在牢固的联系。

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