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南方家蚊触角叶的三维结构。

Three-dimensional structure of the antennal lobe in the Southern house mosquito Culex quinquefasciatus.

机构信息

Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee, USA.

Department of Entomology and Plant Pathology, Auburn University, Auburn, Alabama, USA.

出版信息

Insect Sci. 2021 Feb;28(1):93-102. doi: 10.1111/1744-7917.12767. Epub 2020 Apr 13.

Abstract

The Southern house mosquito Culex quinquefasciatus relies on its olfactory system to locate the human hosts for blood meals, by which several deadly diseases are transmitted. Olfactory sensory neurons (OSNs) housed in the sensilla on the olfactory appendages send their axons into the antennal lobes (ALs), the primary olfactory center in the brain, where the OSNs expressing the same olfactory receptors converge upon the same spherical structures known as glomeruli in the AL. The structure of the antennal lobe, that is, the spatial organization of the glomeruli, governs the insect's odor identification and discrimination. Drosophila studies have demonstrated the specific connections between receptors and glomeruli based on the 3D structure of the antennal lobe, deepening our understanding of the relationships between glomerular activities and behaviors, but as yet the structure of the Cx. quinquefasciatus antennal lobe remains unknown. We therefore constructed a 3D model of the Cx. quinquefasciatus antennal lobe using nc82 antibody staining, identifying 62 and 44 glomeruli in the female and male mosquito antennal lobe, respectively, with a significant sexual dimorphism in terms of the antennal lobe volume and glomerulus number. These results demonstrate the structural basis of mosquito odor coding and provide a platform for future studies of the mosquito olfactory signal processing mechanism.

摘要

南方家蚊 Culex quinquefasciatus 依赖其嗅觉系统来定位人类宿主以获取血液,通过这种方式传播了几种致命疾病。位于嗅觉附器上的嗅觉感觉神经元 (OSN) 将其轴突发送到触角叶 (AL),这是大脑中的主要嗅觉中心,在那里表达相同嗅觉受体的 OSN 汇聚到相同的称为 AL 中的小球体结构上。触角叶的结构,即小球体的空间组织,控制着昆虫的气味识别和辨别。果蝇研究基于触角叶的 3D 结构,证明了受体和小球体之间的特定连接,加深了我们对小球体活动和行为之间关系的理解,但迄今为止,Cx. quinquefasciatus 触角叶的结构仍然未知。因此,我们使用 nc82 抗体染色构建了 Cx. quinquefasciatus 触角叶的 3D 模型,在雌性和雄性蚊子触角叶中分别鉴定出 62 和 44 个小球体,触角叶体积和小球体数量存在显著的性别二态性。这些结果表明了蚊子气味编码的结构基础,并为未来研究蚊子嗅觉信号处理机制提供了一个平台。

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