Structure and function of antennal pore plate sensilla of oryctes rhinoceros (L.) (Coleoptera : Dynastidae)

M Renou , D Tauban , J-P Morin
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引用次数: 30

Abstract

The antennae of the rhinoceros beetle, Oryctes rhinoceros (Coleoptera : Dynastidae), comprise 4 parts : the scape, the pedicel, a funicle, and a club of 3 lamellate segments. The inner surfaces of the lamellate club segments carry one type of trichoid sensilla, 2 types of sensilla coeloconica, and 3 types of multiporous pore plate sensilla. The total surface occupied by the sensilla on the antenna is 5.2±0.4 mm2 in males (mean±SD) and 5.4±0.5 mm2 in females. With a measured density of 8665±1254 sensilla per mm2 in males and 8952±1642 sensilla per mm2 in females, the total number of pore plate sensilla was estimated to be between 45,000 and 50,000. The structure of the 3 types of pore plate sensilla is described. SP1 are the most abundant type of placoid sensilla. They show a convex and rugged plate whose infoldings form a circle of irregular cavities. SP2 sensilla are characterised by a smooth and convex plate, surrounded by a furrow with a ridge. SP2 are localised on a wide band situated along the straight side of the lamella. The plate of SP3 is nearly flat and there is no furrow. SP3 are confined within a narrow margin along the convex edge of lamellae. The 3 types of pore plate sensilla house 2 neurones whose dendrites branch repeatedly under a plate of thin (0.2 μm) cuticle, which is pitted with numerous pores, 40 nm in diameter. Single sensillum recordings with tungsten microelectrodes revealed the firing activity of 2 neurones. These receptor neurones responded specifically to olfactory stimulus. Olfactory receptor neurones tuned to the male pheromone compound, ethyl 4-methyl octanoate, were found in male and female antennae. Other receptor neurones responded to plant volatiles. Morphological and electrophysiological data suggest the absence of a sexual dimorphism in the olfactory organs. The functional organisation of the olfactory organs is discussed in terms of their adaptation to the ecology of O. rhinoceros.

稻角犀触角孔板感受器的结构与功能(鞘翅目:朝科)
犀牛甲虫(Oryctes rhinoceros,鞘翅目:朝科)的触角由四部分组成:触角、花梗、触角柄和由3片片组成的触角棒。层状棒节内表面有1种毛状感受器、2种腔锥感受器和3种多孔板感受器。触角上感受器占据的总表面积雄性为5.2±0.4 mm2(平均±SD),雌性为5.4±0.5 mm2。雄性和雌性孔板感受器的测量密度分别为8665±1254个/ mm2和8952±1642个/ mm2,估计孔板感受器总数在4.5万至5万个之间。描述了三种孔板感受器的结构。SP1是最丰富的类胎盘感受器类型。它们呈现出一个凹凸不平的板块,其内含物形成了一个不规则的空腔圈。SP2感受器的特征是光滑和凸板,周围有带脊的沟。SP2分布在沿薄片直侧的宽波段上。SP3的板面几乎平整,没有沟壑。SP3被限制在沿薄片凸缘的狭窄边缘内。3种孔板感受器分别容纳2个神经元,其树突在薄(0.2 μm)的角质层下反复分支,角质层上有许多直径为40 nm的孔。钨微电极单感觉器记录显示2个神经元的放电活动。这些受体神经元对嗅觉刺激有特异性反应。在雄性和雌性触角中都发现了对雄性信息素化合物——4-甲基辛酸乙酯——敏感的嗅觉受体神经元。其他受体神经元对植物挥发物有反应。形态学和电生理数据表明嗅觉器官中没有两性二态性。从嗅觉器官适应生态的角度讨论了犀牛嗅觉器官的功能组织。
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