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首页> 外文期刊>The Journal of Experimental Biology >Predator detection in Lymnaea stagnalis
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Predator detection in Lymnaea stagnalis

机译:捕虫草的捕食者检测

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Laboratory-reared Lymnaea are capable of detecting and responding to the scent of a crayfish predator. The present investigation is a first attempt to characterize multiple stress-related behavioural responses resulting from predator detection and to depict the neurophysiological correlates of one of these illustrated behaviours. Snails respond to crayfish effluent (CE) by increasing the following behaviours: aerial respiration, exploratory/searching phase and sensitivity to the shadow-elicited full-body withdrawal response. In contrast, when snails detect CE they decrease both their righting response time when dislodged from the substratum and their basal cutaneous oxygen consumption. Interestingly, basal heart rate does not change in response to CE exposure. Finally, we directly measured the activity of the neuron that initiates aerial respiratory behaviour, RPeD1, in semi-intact preparations. Naive snails exposed to CE prior to recording demonstrated both a significantly reduced spontaneous firing rate and fewer bouts of bursting activity compared with non-exposed snails. These data show that laboratory-reared Lymnaea that have never experienced a natural predator are still capable of detecting and responding to the presence of a historically sympatric predator. These data open a new avenue of research, which may allow a direct investigation from the behavioural to the neuronal level as to how an ecologically relevant stressful stimulus alters behaviour.
机译:实验室饲养的Lymnaea能够检测和响应小龙虾捕食者的气味。本研究是表征捕食者检测到的多种与应激相关的行为反应并描述其中一种所示行为的神经生理学关联的首次尝试。蜗牛通过增加以下行为来响应小龙虾的出水(CE):空中呼吸,探索/搜索阶段以及对阴影引起的全身撤离反应的敏感性。相反,当蜗牛检测到CE时,它们既减少了从基底移出时的扶正响应时间,又减少了其基础皮肤耗氧量。有趣的是,基础心率不会因暴露于CE而改变。最后,我们直接测量了半完整制剂中引发空中呼吸行为RPeD1的神经元的活性。与未暴露的蜗牛相比,在记录之前暴露于CE的幼稚蜗牛既显示出明显的自发放电速度,又显示出较少的爆发活动。这些数据表明,从未经历过自然捕食者的实验室饲养的猫科动物仍然能够检测和响应历史上同胞掠食者的存在。这些数据开辟了新的研究途径,这可以允许从行为学到神经元水平的直接调查,以了解与生态相关的压力刺激如何改变行为。

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