Zha Xi, Xu Xiao-Hong
Institute of Neuroscience, State Key Laboratory of Neuroscience, CAS Center for Excellence in Brain Science and Intelligence Technology, Shanghai Center for Brain Science and Brain-Inspired Intelligence Technology, Chinese Academy of Sciences, Shanghai, 200031, China.
Cell Mol Life Sci. 2021 Dec;78(23):7289-7307. doi: 10.1007/s00018-021-03956-x. Epub 2021 Oct 23.
Individuals of many species fight with conspecifics to gain access to or defend critical resources essential for survival and reproduction. Such intraspecific fighting is evolutionarily selected for in a species-, sex-, and environment-dependent manner when the value of resources secured exceeds the cost of fighting. One such example is males fighting for chances to mate with females. Recent advances in new tools open up ways to dissect the detailed neural circuit mechanisms that govern intraspecific, particularly inter-male, aggression in the model organism Mus musculus (house mouse). By targeting and functional manipulating genetically defined populations of neurons and their projections, these studies reveal a core neural circuit that controls the display of reactive male-male attacks in mice, from sensory detection to decision making and action selection. Here, we summarize these critical results. We then describe various modulatory inputs that route into the core circuit to afford state-dependent and top-down modulation of inter-male attacks. While reviewing these exciting developments, we note that how the inter-male attack circuit converges or diverges with neural circuits that mediate other forms of social interactions remain not fully understood. Finally, we emphasize the importance of combining circuit, pharmacological, and genetic analysis when studying the neural control of aggression in the future.
许多物种的个体与同种个体争斗,以获取或保卫对生存和繁殖至关重要的关键资源。当获取的资源价值超过争斗成本时,这种种内争斗会以物种、性别和环境依赖的方式进行进化选择。一个例子是雄性为获得与雌性交配的机会而争斗。新工具的最新进展为剖析控制模式生物小家鼠(家鼠)种内,特别是雄性间攻击行为的详细神经回路机制开辟了道路。通过靶向和功能性操纵基因定义的神经元群体及其投射,这些研究揭示了一个核心神经回路,该回路控制小鼠中反应性雄性间攻击行为的表现,从感觉检测到决策和行动选择。在这里,我们总结这些关键结果。然后,我们描述各种调节性输入,这些输入进入核心回路,以实现对雄性间攻击行为的状态依赖和自上而下的调节。在回顾这些令人兴奋的进展时,我们注意到雄性间攻击回路与介导其他形式社会互动的神经回路如何汇聚或发散仍未完全了解。最后,我们强调在未来研究攻击行为的神经控制时,结合回路、药理学和遗传学分析的重要性。