Anton S, Hansson B S
Department of Ecology, Lund University, Sweden.
J Comp Neurol. 1994 Dec 8;350(2):199-214. doi: 10.1002/cne.903500205.
Physiological and anatomical characteristics of antennal lobe interneurons in female Spodoptera littoralis (Boisd.) were investigated using intracellular recording and staining techniques. Responses of local interneurons and projection neurons to female sex pheromone components, host plant odours, and behaviourally active oviposition deterrents were recorded. We found local interneurons and projection neurons that responded specifically to only one or two of the tested odours, but we also found less specific cells, and neurons that responded to most of the tested odourants. These findings show that there are not only specific olfactory pathways in female moths up to the protocerebral level, but also that integration can begin in the antennal lobe. No correlation was found between the degree of specificity of either local interneurons or projection neurons and their respective morphological characteristics. Specialized and unspecialized local interneurons arborized throughout the antennal lobe. Specialized and unspecialized projection neurons had uniglomerular arborizations in the antennal lobe and sent their axons to the calyces of the mushroom body, and to the lateral horn of the protocerebrum. One specific projection neuron had multiglomerular arborizations and projected only to the lateral horn of the protocerebrum. Projection neurons arborizing in the glomeruli closest to the entrance of the antennal nerve always responded to pheromone components. No other correlations were found between the arborization pattern of projection neurons in the antennal lobe or in the protocerebrum and their response characteristics. The sensitivity of local interneurons and projection neurons was in the same range as that of receptor neurons in olfactory sensilla on the antennae, suggesting a much lower convergence in the central nervous system in females than in the pheromone-processing pathway in males.
采用细胞内记录和染色技术,研究了雌性埃及棉铃虫触角叶中间神经元的生理和解剖特征。记录了局部中间神经元和投射神经元对雌性性信息素成分、寄主植物气味以及具有行为活性的产卵抑制剂的反应。我们发现,有的局部中间神经元和投射神经元仅对一两种测试气味有特异性反应,但也发现了特异性较低的细胞以及对大多数测试气味剂都有反应的神经元。这些发现表明,雌性蛾类直至原脑水平不仅存在特定的嗅觉通路,而且整合作用可在触角叶开始。未发现局部中间神经元或投射神经元的特异性程度与其各自的形态特征之间存在相关性。专门化和非专门化的局部中间神经元在整个触角叶内分支。专门化和非专门化的投射神经元在触角叶内有单小球分支,并将其轴突发送至蘑菇体的杯状细胞以及原脑的侧角。一个特定的投射神经元有多小球分支,仅投射至原脑的侧角。在最靠近触角神经入口处的小球内分支的投射神经元总是对性信息素成分有反应。未发现投射神经元在触角叶或原脑内的分支模式与其反应特征之间存在其他相关性。局部中间神经元和投射神经元的敏感性与触角上嗅觉感器中受体神经元的敏感性处于同一范围,这表明雌性中枢神经系统中的汇聚程度远低于雄性性信息素处理通路中的汇聚程度。