Chou Ya-Hui, Yang Chi-Jen, Huang Hao-Wei, Liou Nan-Fu, Panganiban Michael Raphael, Luginbuhl David, Yin Yijie, Taisz Istvan, Liang Liang, Jefferis Gregory S X E, Luo Liqun
Institute of Cellular and Organismic Biology, Academia Sinica, Taipei 11529, Taiwan.
Neuroscience Program of Academia Sinica, Academia Sinica, Taipei 11529, Taiwan.
Sci Adv. 2022 Feb 18;8(7):eabm7723. doi: 10.1126/sciadv.abm7723.
Variations in neuronal connectivity occur widely in nervous systems from invertebrates to mammals. Yet, it is unclear how neuronal variability originates, to what extent and at what time scales it exists, and what functional consequences it might carry. To assess inter- and intraindividual neuronal variability, it would be ideal to analyze the same identified neuron across different brain hemispheres and individuals. Here, using genetic labeling and electron microscopy connectomics, we show that an identified inhibitory olfactory local interneuron, TC-LN, exhibits extraordinary variability in its glomerular innervation patterns. Moreover, TC-LN's innervation of the VL2a glomerulus, which processes food signals and modulates mating behavior, is sexually dimorphic, is influenced by female's courtship experience, and correlates with food intake in mated females. Mating also affects output connectivity of TC-LN to specific local interneurons. We propose that mating-associated variability of TC-LNs regulates how food odor is interpreted by an inhibitory network to modulate feeding.
从无脊椎动物到哺乳动物,神经系统中神经元连接的变化广泛存在。然而,目前尚不清楚神经元变异性是如何产生的,它在何种程度和时间尺度上存在,以及可能带来哪些功能后果。为了评估个体间和个体内的神经元变异性,理想的做法是在不同的脑半球和个体中分析同一个已识别的神经元。在这里,我们利用基因标记和电子显微镜连接组学技术表明,一种已识别的抑制性嗅觉局部中间神经元TC-LN在其小球状神经支配模式上表现出非凡的变异性。此外,TC-LN对处理食物信号并调节交配行为的VL2a小球的神经支配具有性别二态性,受雌性求偶经历的影响,并与已交配雌性的食物摄入量相关。交配还会影响TC-LN与特定局部中间神经元的输出连接。我们提出,TC-LN与交配相关的变异性调节了抑制性网络对食物气味的解读方式,从而调节进食。