Department of Biology, Brooklyn College, The City University of New York, Brooklyn, NY, USA.
Biology Subprogram in Ecology, Evolutionary Biology, and Behavior, The Graduate Center, City University of New York, New York, NY, USA.
Integr Comp Biol. 2017 Oct 1;57(4):820-834. doi: 10.1093/icb/icx053.
Little is known regarding the coordination of audition with decision-making and subsequent motor responses that initiate social behavior including mate localization during courtship. Using the midshipman fish model, we tested the hypothesis that the time spent by females attending and responding to the advertisement call is correlated with the activation of a specific subset of catecholaminergic (CA) and social decision-making network (SDM) nuclei underlying auditory- driven sexual motivation. In addition, we quantified the relationship of neural activation between CA and SDM nuclei in all responders with the goal of providing a map of functional connectivity of the circuitry underlying a motivated state responsive to acoustic cues during mate localization. In order to make a baseline qualitative comparison of this functional brain map to unmotivated females, we made a similar correlative comparison of brain activation in females who were unresponsive to the advertisement call playback. Our results support an important role for dopaminergic neurons in the periventricular posterior tuberculum and ventral thalamus, putative A11 and A13 tetrapod homologues, respectively, as well as the posterior parvocellular preoptic area and dorsomedial telencephalon, (laterobasal amygdala homologue) in auditory attention and appetitive sexual behavior in fishes. These findings may also offer insights into the function of these highly conserved nuclei in the context of auditory-driven reproductive social behavior across vertebrates.
关于听觉与决策以及随后发起社交行为的运动反应的协调,包括在求偶期间对配偶的定位,人们知之甚少。我们使用鲷鱼模型检验了以下假设:雌性花时间关注和回应求偶叫声,与听觉驱动的性动机所涉及的特定儿茶酚胺能(CA)和社会决策网络(SDM)核的激活相关。此外,我们量化了所有响应者中 CA 和 SDM 核之间的神经激活关系,目的是提供一个功能性连接图谱,该图谱是对配偶定位过程中声音线索做出反应的动机状态的基础。为了将此功能脑图谱与无动机的雌性进行基线定性比较,我们对不响应求偶叫声播放的雌性的大脑激活进行了类似的相关比较。我们的结果支持多巴胺能神经元在室周后结节和腹侧丘脑中的重要作用,分别是假定的 A11 和 A13 四足同源物,以及后小细胞视前区和背内侧端脑(侧基底杏仁核同源物)在鱼类听觉注意力和性吸引力行为中的重要作用。这些发现还可能为这些高度保守的核在跨脊椎动物的听觉驱动生殖社交行为中的功能提供见解。