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Identification of novel vibration- and deflection-sensitive neuronal subgroups in Johnstons organ of the fruit fly

机译:鉴定果蝇约翰斯顿器官中新的对振动和偏转敏感的神经元亚群

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摘要

The fruit fly Drosophila melanogaster responds behaviorally to sound, gravity, and wind. Johnston's organ (JO) at the antennal base serves as a sensory organ in the fruit fly to detect these mechanosensory stimuli. Among the five anatomically defined subgroups of sensory neurons in JO, subgroups A and B detect sound vibrations and subgroups C and E respond to static deflections, such as gravity and wind. The functions of subgroup-D JO neurons, however, remain unknown. In this study, we used molecular-genetic methods to explore the physiologic properties of subgroup-D JO neurons. Both vibrations and static deflection of the antennal receiver activated subgroup-D JO neurons. This finding clearly revealed that zone D in the antennal mechanosensory and motor center (AMMC), the projection target of subgroup-D JO neurons, is a primary center for antennal vibrations and deflection in the fly brain. We anatomically identified two types of interneurons downstream of subgroup-D JO neurons, AMMC local neurons (AMMC LNs), and AMMC D1 neurons. AMMC LNs are local neurons whose projections are confined within the AMMC, connecting zones B and D. On the other hand, AMMC D1 neurons have both local dendritic arborizations within the AMMC and descending projections to the thoracic ganglia, suggesting that AMMC D1 neurons are likely to relay information of the antennal movement detected by subgroup-D JO neurons from the AMMC directly to the thorax. Together, these findings provide a neural basis for how JO and its brain targets encode information of complex movements of the fruit fly antenna.
机译:果蝇果蝇对声音,重力和风做出反应。触角基部的约翰斯顿氏器官(JO)在果蝇中充当感觉器官,以检测这些机械感觉刺激。在JO中的五个感觉神经元的解剖学定义子组中,子组A和B检测声音振动,子组C和E对静态偏转(例如重力和风)做出响应。然而,亚组D JO神经元的功能仍然未知。在这项研究中,我们使用分子遗传学方法探讨了D组D JO神经元的生理特性。触角接收器的振动和静态挠曲都激活了D JO D亚神经元。这一发现清楚地表明,D类神经元JO神经元的投射目标,触觉机械感觉和运动中心(AMMC)中的D区是蝇脑中触角振动和偏转的主要中心。我们在解剖学上确定了亚型D JO神经元下游的两种中间神经元,即AMMC局部神经元(AMMC LNs)和AMMC D1神经元。 AMMC LNs是局部神经元,其投影局限于AMMC内,连接区域B和D。另一方面,AMMC D1神经元既在AMMC内具有局部树突状乔木,又具有到胸神经节的下降投影,这表明AMMC D1神经元很可能将亚组D JO神经元检测到的触角运动信息直接从AMMC中继到胸腔。总之,这些发现为JO及其大脑目标如何编码果蝇触角复杂运动的信息提供了神经基础。

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