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位于黑腹果蝇触角囊内的感器的精细结构和初级感觉投射

Fine structure and primary sensory projections of sensilla located in the sacculus of the antenna of Drosophila melanogaster.

作者信息

Shanbhag S R, Singh K, Singh R N

机构信息

Molecular Biology Unit, Tata Institute of Fundamental Research, Colaba, Bombay, India.

出版信息

Cell Tissue Res. 1995 Nov;282(2):237-49. doi: 10.1007/BF00319115.

Abstract

Sensilla lining the inner walls of the sacculus on the third antennal segment of Drosophila melanogaster were studied by light and transmission electron microscopy. The sacculus consists of three chambers: I, II and III. Inside each chamber morphologically distinct groups of sensilla having inflexible sockets were observed. Chamber I contains no-pore sensilla basiconica (np-SB). The lumen of all np-SB are innervated by two neurons, both resembling hygroreceptors. However, a few np-SB contain one additional neuron, presumed to be thermoreceptive. Chamber II houses no-pore sensilla coeloconica (np-SC). All np-SC are innervated by three neurons. The outer dendritic segments of two of these neurons fit tightly to the wall of the lumen and resemble hygroreceptor neurons. A third, more electron-dense sensory neuron, terminates at the base of the sensillum and resembles a thermoreceptor cell. Chamber III of the sacculus is divided into ventral and dorsal compartments, each housing morphologically distinct grooved sensilla (GS). The ventral compartment contains thick GS1, and the dorsal compartment has slender sensilla GS2. Ultrastructurally, both GS1 and GS2 are double-walled sensilla with a longitudinal slit-channel system and are innervated by two neurons. The dendritic outer segment of one of the two neurons innervates the lumen of the GS and branches. On morphological criteria, we infer this neuron to be olfactory. The other sensory neuron is probably thermoreceptive. Thus, the sacculus in Drosophila has sensilla that are predominantly involved in hygroreception, thermoreception, and olfaction. We have traced the sensory projections of the neurons innervating the sacculus sensilla of chamber III using cobaltous lysine or ethanolic cobalt (II) chloride. The fibres project to the antennal lobes, and at least four glomeruli (VM3, DA3 and DL2-3) are projection areas of sensory neurons from these sensilla. Glomerulus DL2 is a common target for the afferent fibres of the surface sensilla coeloconica and GS, whereas the VM3, DA3 and DL3 glomeruli receive sensory fibres only from the GS.

摘要

利用光学显微镜和透射电子显微镜对黑腹果蝇第三触角节球囊内壁的感器进行了研究。球囊由三个腔室组成:I、II和III。在每个腔室内观察到形态上不同的具有刚性窝的感器群。腔室I包含无孔锥形感器(np-SB)。所有np-SB的管腔由两个神经元支配,这两个神经元都类似于湿感受器。然而,少数np-SB包含另一个神经元,推测为温度感受器。腔室II容纳无孔腔锥感器(np-SC)。所有np-SC由三个神经元支配。其中两个神经元的外树突段紧密贴合管腔壁,类似于湿感受器神经元。第三个电子密度更高的感觉神经元在感器基部终止,类似于温度感受器细胞。球囊的腔室III分为腹侧和背侧部分,每个部分容纳形态上不同的有槽感器(GS)。腹侧部分包含粗壮的GS1,背侧部分有细长的感器GS2。在超微结构上,GS1和GS2都是具有纵向裂隙通道系统的双壁感器,由两个神经元支配。两个神经元中的一个的树突外段支配GS的管腔并分支。根据形态学标准,我们推断这个神经元是嗅觉神经元。另一个感觉神经元可能是温度感受器。因此,果蝇的球囊具有主要参与湿感、温感和嗅觉的感器。我们使用赖氨酸钴或乙醇氯化钴(II)追踪了支配腔室III球囊感器的神经元的感觉投射。纤维投射到触角叶,至少四个小球(VM3、DA3和DL2-3)是来自这些感器的感觉神经元的投射区域。小球DL2是腔锥感器和GS表面感器传入纤维的共同靶点,而VM3、DA3和DL3小球仅接收来自GS的感觉纤维。

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