School of Biological Science, University of Utah, Salt Lake City, United States.
Elife. 2023 May 15;12:e86299. doi: 10.7554/eLife.86299.
Across phyla, males often produce species-specific vocalizations to attract females. Although understanding the neural mechanisms underlying behavior has been challenging in vertebrates, we previously identified two anatomically distinct central pattern generators (CPGs) that drive the fast and slow clicks of male using an ex vivo preparation that produces fictive vocalizations Here, we extended this approach to four additional species, by developing ex vivo brain preparation from which fictive vocalizations are elicited in response to a chemical or electrical stimulus. We found that even though the courtship calls are species-specific, the CPGs used to generate clicks are conserved across species. The fast CPGs, which critically rely on reciprocal connections between the parabrachial nucleus and the nucleus ambiguus, are conserved among fast-click species, and slow CPGs are shared among slow-click species. In addition, our results suggest that testosterone plays a role in organizing fast CPGs in fast-click species, but not in slow-click species. Moreover, fast CPGs are not inherited by all species but monopolized by fast-click species. The results suggest that species-specific calls of the genus have evolved by utilizing conserved slow and/or fast CPGs inherited by each species.
在各个门纲中,雄性通常会发出具有物种特异性的叫声来吸引雌性。尽管理解脊椎动物行为背后的神经机制具有挑战性,但我们之前已经在一个产生虚拟发声的离体准备中鉴定出了两个解剖上不同的中央模式发生器 (CPG),它们驱动雄性的快速和慢速点击。在这里,我们通过开发离体脑准备,从该准备中可以响应化学或电刺激来引出虚拟发声,从而将这种方法扩展到另外四个物种。我们发现,尽管求偶叫声具有物种特异性,但用于产生点击的 CPG 在物种间是保守的。快速 CPG 严重依赖于臂旁核和疑核之间的相互连接,在快速点击物种中是保守的,而慢速 CPG 在慢速点击物种中是共享的。此外,我们的结果表明,睾酮在快速点击物种的快速 CPG 组织中起作用,但在慢速点击物种中不起作用。此外,快速 CPG 并非由所有物种遗传,但被快速点击物种垄断。结果表明, 属的特定物种叫声是通过利用每个物种遗传的保守慢速和/或快速 CPG 进化而来的。