首页> 美国卫生研究院文献>Frontiers in Behavioral Neuroscience >The Mechanosensory Lateral Line System Mediates Activation of Socially-Relevant Brain Regions during Territorial Interactions
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The Mechanosensory Lateral Line System Mediates Activation of Socially-Relevant Brain Regions during Territorial Interactions

机译:机械感应侧线系统介导领土互动期间与社会相关的大脑区域的激活。

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摘要

Animals use multiple senses during social interactions and must integrate this information in the brain to make context-dependent behavioral decisions. For fishes, the largest group of vertebrates, the mechanosensory lateral line system provides crucial hydrodynamic information for survival behaviors, but little is known about its function in social communication. Our previous work using the African cichlid fish, Astatotilapia burtoni, provided the first empirical evidence that fish use their lateral line system to detect water movements from conspecifics for mutual assessment and behavioral choices. It is unknown, however, where this socially-relevant mechanosensory information is processed in the brain to elicit adaptive behavioral responses. To examine for the first time in any fish species which brain regions receive contextual mechanosensory information, we quantified expression of the immediate early gene cfos as a proxy for neural activation in sensory and socially-relevant brain nuclei from lateral line-intact and -ablated fish following territorial interactions. Our in situ hybridization results indicate that in addition to known lateral line processing regions, socially-relevant mechanosensory information is processed in the ATn (ventromedial hypothalamus homolog), Dl (putative hippocampus homolog), and Vs (putative medial extended amygdala homolog). In addition, we identified a functional network within the conserved social decision-making network (SDMN) whose co-activity corresponds with mutual assessment and behavioral choice. Lateral line-intact and –ablated fight winners had different patterns of co-activity of these function networks and group identity could be determined solely by activation patterns, indicating the importance of mechanoreception to co-activity of the SDMN. These data show for the first time that the mechanosensory lateral line system provides relevant information to conserved decision-making centers of the brain during territorial interactions to mediate crucial behavioral choices such as whether or not to engage in a territorial fight. To our knowledge, this is also the first evidence of a subpallial nucleus receiving mechanosensory input, providing important information for elucidating homologies of decision-making circuits across vertebrates. These novel results highlight the importance of considering multimodal sensory input in mediating context-appropriate behaviors that will provide broad insights on the evolution of decision-making networks across all taxa.
机译:动物在社交互动中会使用多种感官,必须将这些信息整合到大脑中才能做出与情境有关的行为决策。对于鱼类(最大的脊椎动物群体)而言,机械感测侧向线系统为生存行为提供了至关重要的水动力信息,但对其在社会交往中的功能知之甚少。我们以前使用非洲丽鱼科鱼类阿氏隐孢子虫的工作,提供了第一个经验证据,表明鱼类使用其侧线系统检测特定物种的水运动,以进行相互评估和行为选择。但是,尚不知道在大脑中如何处理与社会相关的机械感官信息,以引起适应性行为反应。为了首次检查大脑区域接收上下文机械感官信息的任何鱼类,我们对即刻早期基因cfos的表达进行了定量,以作为来自侧面线完整和消融的鱼类的感官和与社会相关的脑核中神经激活的代理。以下区域互动。我们的原位杂交结果表明,除已知的侧线加工区域外,与社会相关的机械感觉信息还以ATn(下丘脑下丘脑同源物),Dl(假定的海马体同源物)和Vs(假定的内侧延伸杏仁核同源物)处理。此外,我们在保守的社会决策网络(SDMN)中确定了一个功能网络,其协作性与相互评估和行为选择相对应。横向完整的和消融的战斗获胜者具有这些功能网络的共同活动的不同模式,而群体身份只能由激活模式来确定,这表明机械感受对SDMN共同活动的重要性。这些数据首次表明,机械感应侧线系统在区域交互过程中为保守的大脑决策中心提供了相关信息,以调解重要的行为选择,例如是否进行区域斗争。据我们所知,这也是p下核接受机械感官输入的第一个证据,为阐明整个脊椎动物决策回路的同调性提供了重要信息。这些新颖的结果突显了在调适情境适当的行为时考虑多模态感觉输入的重要性,这将为所有分类群决策网络的发展提供广泛的见识。

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