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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Physiological mismatching between neurons innervating olfactory glomeruli in a moth
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Physiological mismatching between neurons innervating olfactory glomeruli in a moth

机译:蛾类中嗅神经球的神经元之间的生理失配

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摘要

The primary olfactory centres of most vertebrates and most neopteran insects are characterized by the presence of spherical neuropils, glomeruli, where synaptic interactions between olfactory receptor neurons and second-order neurons take place. In the neopteran insect taxa investigated so far, receptor neurons of a specific physiological identity target one glomerulus and thus bestow a functional identity on the glomerulus. In moths, input from pheromone-specific receptor neurons is received in a male-specific structure of the antennal lobe, called the macroglomerular complex (MGC), which consists of a number of specialized glomeruli. Each glomerulus of the complex receives a set of peripheral sensory afferents that encode one of several compounds involved in sexual communication. The complex is also innervated by dendritic branches of antennal lobe output neurons called projection neurons, which transfer information from the antennal lobe to higher centres of the brain. A hypothesis stemming from earlier work on moths claims that the receptor neuron innervation pattern of the MGC should be reflected in the pattern of dendrites of projection neurons invading the different MGC glomeruli. In this study we show that in the noctuid moth Trichoplusia ni, as in several other noctuid moth species, this hypothesis does not hold. The degree of matching between axon terminals of receptor neurons and the dendritic branches of identified projection neurons that express similar physiological specificity is very low.
机译:大多数脊椎动物和大多数新翅类昆虫的主要嗅觉中心的特征是存在球形神经小球,肾小球,其中嗅觉受体神经元和二阶神经元之间发生突触相互作用。在迄今为止研究的新翅类昆虫类群中,具有特定生理特性的受体神经元靶向一个肾小球,因此赋予了肾小球功能性身份。在飞蛾中,来自信息素特异性受体神经元的输入在触角叶的雄性特异性结构中被接收,这种结构称为巨球复合体(MGC),它由许多专门的肾小球组成。复合体的每个肾小球都接受一组外周感觉传入,这些传入编码编码涉及性交的几种化合物之一。该复合物还被称为“投射神经元”的触角叶输出神经元的树突状分支支配,该树突状分支将信息从触角叶转移到大脑的较高中心。一个基于飞蛾早期工作的假设认为,MGC的受体神经元神经支配模式应反映在侵入不同MGC肾小球的投射神经元树突模式中。在这项研究中,我们表明在夜蛾中,与其他几种夜蛾一样,该假设不成立。受体神经元的轴突末端与表达出类似生理特异性的已识别投射神经元的树突分支之间的匹配程度非常低。

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