Borges Lígia Miranda Ferreira, Li Andrew Yongsheng, Olafson Pia Untalan, Renthal Robert, Bauchan Gary Roy, Lohmeyer Kimberly Hutchison, León Adalberto Angel Pérez de
Instituto de Patologia Tropical e Saúde Pública, Universidade Federal de Goiás, Universidade Federal de Goiás, Goiânia GO , Brasil, Departamento de Microbiologia, Imunologia, Parasitologia e Patologia, Instituto de Patologia Tropical e Saúde Pública, Universidade Federal de Goiás - UFG, Goiânia, GO, Brasil.
United States Department of Agriculture, Agriculture Research Service, Beltsville MD , U.S.A., Invasive Insect Biocontrol & Behavior Laboratory, United States Department of Agriculture, Agriculture Research Service, Beltsville, MD, U.S.A.
Rev Bras Parasitol Vet. 2016 Jun 14;25(2):217-24. doi: 10.1590/S1984-29612016039.
The present study was conducted to elucidate the neuronal pathways between peripheral olfactory and taste sensilla and the synganglion in an Ixodidae tick species. The tarsus of the front legs (olfactory nerves) and the fourth palpal segment (gustatory nerves) of unfed Amblyomma americanum males and females were excised. A neuronal tracer, dextran tetramethylrhodamine, was used for filling of the sensory neurons. The synganglion preparations were examined using a confocal microscope. Neuronal arborizations from the Haller's organ were confined to the olfactory lobes and the first pedal ganglion. The estimated number of olfactory glomeruli ranged from 16 to 22 per olfactory lobe in the females. The number of glomeruli was not counted in males because they were densely packed. Sensory neurons associated with sensilla at the distal end of the palpal organ projected into the palpal ganglion in the synganglion through the palpal nerve. Gustatory sensory neurons associated with palpal sensilla projected into a commissure with several bulges, which are confined in the palpal ganglion. The findings of distinct projection patterns of sensory neurons associated with the Haller's organ and palpal organ in the lone star tick from this study advanced our knowledge on mechanisms of sensory information processing in ticks.
本研究旨在阐明硬蜱科一种蜱虫外周嗅觉和味觉感受器与神经节之间的神经通路。切除未进食的美洲钝眼蜱雄蜱和雌蜱前腿跗节(嗅觉神经)和第四触须节(味觉神经)。使用神经元示踪剂四甲基罗丹明葡聚糖对感觉神经元进行填充。使用共聚焦显微镜检查神经节标本。哈勒氏器的神经元分支局限于嗅叶和第一足神经节。雌性每个嗅叶的嗅小球估计数量在16到22个之间。未对雄性的小球数量进行计数,因为它们排列紧密。与触须器官远端感受器相关的感觉神经元通过触须神经投射到神经节中的触须神经节。与触须感受器相关的味觉感觉神经元投射到一个有几个凸起的连合处,这些凸起局限于触须神经节。本研究中关于孤星蜱哈勒氏器和触须器官相关感觉神经元独特投射模式的发现,增进了我们对蜱虫感觉信息处理机制的了解。