Evoked ink release in Aplysia produces inhibition of the siphon withdrawal reflex in neighboring conspecifics

Mark Stopfer, Xinghai Chen , Thomas J. Carew
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引用次数: 8

Abstract

Aplysia californica exhibit a dramatic defensive reaction, the release of a cloud of dark purple ink, in response to noxious stimuli. Although the neural control of this behavior has been studied rather extensively, the functional significance of the inking response is not well understood. We have found that ink released by animals that are subjected to noxious stimuli rapidly induces inhibition of the tail-elicited siphon withdrawal reflex in neighboring Aplysia. Further experiments indicated that the inhibitor is the ink itself, and not some other substance released by the donor animals. Finally, we examined whether ink-induced inhibition of siphon withdrawal might be a secondary consequence of an elevated competing response such as increased locomotion. We found that locomotion is not affected by the concentrations of ink we employed, indicating that the ink probably modulates the withdrawal reflex directly. Because the neural circuits responsible for both tail-elicited siphon withdrawal and the inking response have already been partly delineated, one can now bring the neurobiological advantages of Aplysia to bear on the ethologically important issue of signaling between conspecifics.

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诱发墨水释放在澳大利亚产生抑制虹吸撤回反射在邻近的同种
加利福尼亚海百合在受到有害刺激时表现出强烈的防御反应,释放出一团深紫色的墨水。虽然对这种行为的神经控制已经进行了相当广泛的研究,但对墨迹反应的功能意义还不是很清楚。我们发现,受到有害刺激的动物释放的墨水会迅速抑制邻近的澳大利亚动物尾巴引发的虹吸撤退反射。进一步的实验表明,抑制剂是墨水本身,而不是由供体动物释放的其他物质。最后,我们研究了墨水诱导的虹吸退出抑制是否可能是竞争反应升高(如运动增加)的次要后果。我们发现运动不受墨水浓度的影响,这表明墨水可能直接调节退缩反射。由于负责尾巴引发的虹吸撤退和连接反应的神经回路已经被部分描绘出来,人们现在可以把海雀的神经生物学优势应用到同种生物之间信号传导的行为学重要问题上。
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