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Anatomic and Physiologic Heterogeneity of Subgroup-A Auditory Sensory Neurons in Fruit Flies

机译:果蝇A组听觉感觉神经元的解剖和生理异质性

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The antennal ear of the fruit fly detects acoustic signals in intraspecific communication, such as the courtship song and agonistic sounds. Among the five subgroups of mechanosensory neurons in the fly ear, subgroup-A neurons respond maximally to vibrations over a wide frequency range between 100 and 1,200 Hz. The functional organization of the neural circuit comprised of subgroup-A neurons, however, remains largely unknown. In the present study, we used 11 GAL4 strains that selectively label subgroup-A neurons and explored the diversity of subgroup-A neurons by combining single-cell anatomic analysis and Ca2+ imaging. Our findings indicate that the subgroup-A neurons that project into various combinations of subareas in the brain are more anatomically diverse than previously described. Subgroup-A neurons were also physiologically diverse, and some types were tuned to a narrow frequency range, suggesting that the response of subgroup-A neurons to sounds of a wide frequency range is due to the existence of several types of subgroup-A neurons. Further, we found that an auditory behavioral response to the courtship song of flies was attenuated when most subgroup-A neurons were silenced. Together, these findings characterize the heterogeneous functional organization of subgroup-A neurons, which might facilitate species-specific acoustic signal detection.
机译:果蝇的触角耳检测种内通讯中的声音信号,例如求爱歌曲和激动的声音。在苍蝇耳的机械感觉神经元的五个亚组中,A亚组神经元在100至1200 Hz的较宽频率范围内对振动产生最大响应。但是,由A亚组神经元组成的神经回路的功能组织仍然很大程度上未知。在本研究中,我们使用了11种GAL4菌株,这些菌株选择性地标记了A组神经元,并通过结合单细胞解剖分析和Ca2 +成像探索了A组神经元的多样性。我们的发现表明,投射到大脑子区域各种组合中的A亚组神经元在解剖学上比以前描述的更为多样化。 A组亚群神经元在生理上也各不相同,有些类型已调整到较窄的频率范围,这表明A组亚群神经元对较宽频率范围的声音的响应是由于存在几种类型的A组亚群神经元。此外,我们发现,当大多数A组神经元沉默时,对苍蝇求爱歌的听觉行为反应就会减弱。总之,这些发现表征了A组亚神经元的异质功能组织,这可能有助于特定物种的声信号检测。

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