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连接组学分析揭示了成年果蝇大脑中的第一、第二和第三级热敏和湿敏神经元。

Connectomics Analysis Reveals First-, Second-, and Third-Order Thermosensory and Hygrosensory Neurons in the Adult Drosophila Brain.

机构信息

Department of Zoology, University of Cambridge, Cambridge CB2 3EJ, UK.

Department of Biology, Brandeis University, Waltham, MA 02454, USA.

出版信息

Curr Biol. 2020 Aug 17;30(16):3167-3182.e4. doi: 10.1016/j.cub.2020.06.028. Epub 2020 Jul 2.

Abstract

Animals exhibit innate and learned preferences for temperature and humidity-conditions critical for their survival and reproduction. Leveraging a whole-brain electron microscopy volume, we studied the adult Drosophila melanogaster circuitry associated with antennal thermo- and hygrosensory neurons. We have identified two new target glomeruli in the antennal lobe, in addition to the five known ones, and the ventroposterior projection neurons (VP PNs) that relay thermo- and hygrosensory information to higher brain centers, including the mushroom body and lateral horn, seats of learned and innate behavior. We present the first connectome of a thermo- and hygrosensory neuropil, the lateral accessory calyx (lACA), by reconstructing neurons downstream of heating- and cooling-responsive VP PNs. A few mushroom body-intrinsic neurons solely receive thermosensory input from the lACA, while most receive additional olfactory and thermo- and/or hygrosensory PN inputs. Furthermore, several classes of lACA-associated neurons form a local network with outputs to other brain neuropils, suggesting that the lACA serves as a hub for thermo- and hygrosensory circuitry. For example, DN1a neurons link thermosensory PNs in the lACA to the circadian clock via the accessory medulla. Finally, we survey strongly connected downstream partners of VP PNs across the protocerebrum; these include a descending neuron targeted by dry-responsive VP PNs, meaning that just two synapses might separate hygrosensory inputs from motor circuits. These data provide a comprehensive first- and second-order layer analysis of Drosophila thermo- and hygrosensory systems and an initial survey of third-order neurons that could directly modulate behavior.

摘要

动物表现出对温度和湿度的先天和后天偏好,这些条件对它们的生存和繁殖至关重要。利用整个大脑的电子显微镜体积,我们研究了与触角热敏和湿度感觉神经元相关的成年果蝇大脑回路。我们在触角叶中除了已经知道的五个以外,还发现了两个新的目标神经节,以及将热敏和湿度感觉信息传递到包括蘑菇体和侧角在内的更高脑区的腹后投射神经元(VP PNs),这些脑区是学习和先天行为的所在地。我们通过重建加热和冷却反应性 VP PNs 下游的神经元,呈现了第一个热敏和湿度感觉神经丛——侧 accessory 花萼(lACA)的连接组。少数蘑菇体内在神经元仅从 lACA 接收热敏感觉输入,而大多数则接收额外的嗅觉和热敏和/或湿度感觉 PN 输入。此外,几类 lACA 相关神经元与其他脑神经丛形成局部网络,表明 lACA 作为热敏和湿度感觉回路的枢纽。例如,DN1a 神经元通过附属 medulla 将热敏感觉 PN 与生物钟联系起来。最后,我们调查了 VP PNs 在大脑前脑的强连接下游伙伴;这些包括受干燥反应 VP PNs 靶向的下行神经元,这意味着只有两个突触可能将湿度感觉输入与运动回路分开。这些数据提供了果蝇热敏和湿度感觉系统的全面第一和第二级分析,以及可能直接调节行为的第三级神经元的初步调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69c6/7443704/865fa9341d5f/fx1.jpg

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