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蜜蜂的嗅觉子系统:感觉供应与性别特异性。

Olfactory subsystems in the honeybee: sensory supply and sex specificity.

作者信息

Kropf Jan, Kelber Christina, Bieringer Kathrin, Rössler Wolfgang

机构信息

Department of Behavioral Physiology and Sociobiology, Biozentrum, University of Würzburg, Am Hubland, 97074, Würzburg, Germany,

出版信息

Cell Tissue Res. 2014 Sep;357(3):583-95. doi: 10.1007/s00441-014-1892-y. Epub 2014 May 13.

Abstract

The antennae of honeybee (Apis mellifera) workers and drones differ in various aspects. One striking difference is the presence of Sensilla basiconica in (female) workers and their absence in (male) drones. We investigate the axonal projection patterns of olfactory receptor neurons (ORNs) housed in S. basiconica in honeybee workers by using selective anterograde labeling with fluorescent tracers and confocal-microscopy analysis of axonal projections in antennal lobe glomeruli. Axons of S. basiconica-associated ORNs preferentially projected into a specific glomerular cluster in the antennal lobe, namely the sensory input-tract three (T3) cluster. T3-associated glomeruli had previously been shown to be innervated by uniglomerular projection (output) neurons of the medial antennal lobe tract (mALT). As the number of T3 glomeruli is reduced in drones, we wished to determine whether this was associated with the reduction of glomeruli innervated by medial-tract projection neurons. We retrogradely traced mALT projection neurons in drones and counted the innervated glomeruli. The number of mALT-associated glomeruli was strongly reduced in drones compared with workers. The preferential projections of S. basiconica-associated ORNs in T3 glomeruli together with the reduction of mALT-associated glomeruli support the presence of a female (worker)-specific olfactory subsystem that is partly innervated by ORNs from S. basiconica and is associated with the T3 cluster of glomeruli and mALT projection neurons. We propose that this olfactory subsystem supports parallel olfactory processing related to worker-specific olfactory tasks such as the coding of colony odors, colony pheromones and/or odorants associated with foraging on floral resources.

摘要

蜜蜂(西方蜜蜂)工蜂和雄蜂的触角在多个方面存在差异。一个显著的差异是(雌性)工蜂有锥形感器,而(雄性)雄蜂没有。我们通过使用荧光示踪剂进行选择性顺行标记以及对触角叶小球中轴突投射进行共聚焦显微镜分析,来研究工蜂锥形感器中嗅觉受体神经元(ORN)的轴突投射模式。与锥形感器相关的ORN轴突优先投射到触角叶中的一个特定小球簇,即感觉输入束三(T3)簇。先前已表明,与T3相关的小球由内侧触角叶束(mALT)的单小球投射(输出)神经元支配。由于雄蜂中T3小球的数量减少,我们希望确定这是否与内侧束投射神经元支配的小球减少有关。我们对雄蜂中的mALT投射神经元进行逆行追踪并计数受支配的小球。与工蜂相比,雄蜂中与mALT相关的小球数量大幅减少。与锥形感器相关的ORN在T3小球中的优先投射以及与mALT相关的小球数量减少,支持存在一个雌性(工蜂)特异性嗅觉子系统,该子系统部分由来自锥形感器的ORN支配,并与小球的T3簇和mALT投射神经元相关。我们提出,这个嗅觉子系统支持与工蜂特异性嗅觉任务相关的并行嗅觉处理,例如对蜂群气味、蜂群信息素和/或与采集花蜜资源相关的气味剂进行编码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0a6/4148592/f79d785a3b27/441_2014_1892_Fig1_HTML.jpg

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