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通过性别转换移植的触角会改变蛾类中由信息素引导的行为。

Trans-sexually grafted antennae alter pheromone-directed behaviour in a moth.

作者信息

Schneiderman A M, Hildebrand J G, Brennan M M, Tumlinson J H

出版信息

Nature. 1986;323(6091):801-3. doi: 10.1038/323801a0.

Abstract

When tobacco hornworm moths (Manduca sexta) are tested in a wind tunnel with a source of female pheromones upwind, males but not normal females show pheromone-modulated anemotaxis and a characteristic mate-seeking behavioural sequence. These behaviours are produced by stimulation of sensory neurones found only in male antennae. These neurones project axons only to dendrites of pheromone-specific interneurones in the macroglomerular complex, a region of neuropil in the antennal lobe characteristic of males but not present in normal females. Some interneurones in the antennal lobes of female moths that have received grafts of male antennae (gynandromorphs) respond postsynaptically to stimulation with bombykal, a major component of the pheromone. They branch into a region resembling the macroglomerular complex, like their counterparts in normal males. We show here that gynandromorphic females respond to pheromonal stimulation with anemotaxis. We also find that normal females display a similar sequence in response to the odour of their egg-laying site, the tobacco plant. It is likely that a common motor path is used either by pheromone-specific interneurones in the antennal lobes of males or by tobacco-specific interneurones in females. We assume that the interneurones in gynandromorphic females that branch into the macroglomerular complex induced by a grafted male antenna can activate this pathway.

摘要

当在风洞中对烟草天蛾(烟草天蛾)进行测试时,若在逆风方向设置雌性信息素源,雄性而非正常雌性会表现出信息素调节的风趋向性以及特定的求偶行为序列。这些行为是由仅在雄性触角中发现的感觉神经元的刺激所产生的。这些神经元的轴突仅投射到巨大嗅球复合体中信息素特异性中间神经元的树突上,巨大嗅球复合体是触角叶中神经纤维网的一个区域,是雄性特有的,正常雌性中不存在。一些接受了雄性触角移植的雌性蛾(雌雄嵌合体)的触角叶中的中间神经元,会对信息素的主要成分家蚕醛的刺激产生突触后反应。它们会分支进入一个类似于巨大嗅球复合体的区域,就像正常雄性中的对应神经元一样。我们在此表明,雌雄嵌合体雌性会对信息素刺激产生风趋向性反应。我们还发现,正常雌性对其产卵场所烟草植株的气味也会表现出类似的行为序列。很可能是雄性触角叶中信息素特异性中间神经元或雌性中烟草特异性中间神经元使用了共同的运动路径。我们推测,因移植雄性触角而分支进入巨大嗅球复合体的雌雄嵌合体雌性中的中间神经元能够激活这条路径。

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