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Inferences of glia-mediated control in Caenorhabditis elegans

机译:胶虫炎胶虫胶质炎的胶林介导的对照推论

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Astrocytes modulate synaptic transmission; yet, it remains unclear how glia influence complex behaviors. Here, we explore the effects of Caenorhabditis elegans astrocyte-like cephalic glia (CEPglia) and the glia-specific bHLH transcription factor HLH-17 on mating behavior and the defecation motor program (DMP). In C. elegans, male mating has been explicitly described through the male tail circuit and is characterized by coordination of multiple independent behaviors to ensure that copulation is achieved. Furthermore, the sex-specific male mating circuitry shares similar components with the DMP, which is complex and rhythmic, and requires a fixed sequence of behaviors to be activated periodically. We found that loss of CEPglia reduced persistence in executing mating behaviors and hindered copulation, while males that lacked HLH-17 demonstrated repetitive prodding behavior that increased the time spent in mating but did not hinder copulation. During the DMP, we found that posterior body wall contractions (pBocs) and enteric muscle contractions (EMCs) were differentially affected by loss of HLH-17 or CEPglia in males and hermaphrodites. pBocs and EMCs required HLH-17 activity in both sexes, whereas loss of CEPglia alone did not affect DMP in males. Our data suggest that CEPglia mediate complex behaviors by signaling to the GABAergic DVB neuron, and that HLH-17 activity influences those discrete steps within those behaviors. Collectively, these data provide evidence of glia as a link in cooperative regulation of complex and rhythmic behavior that, in C. elegans links circuitry in the head and the tail.
机译:星形胶质细胞调节突触传递;然而,目前尚不清楚胶质细胞如何影响复杂的行为。在这里,我们探讨了秀丽隐杆线虫星形胶质细胞样头胶质细胞(CEPglia)和胶质细胞特异性bHLH转录因子HLH-17对交配行为和排便运动程序(DMP)的影响。在秀丽隐杆线虫中,雄性交配是通过雄性尾回路明确描述的,其特点是协调多个独立的行为,以确保实现交配。此外,性别特异性雄性交配回路与DMP具有相似的组成部分,DMP复杂且有节奏,需要定期激活固定的行为序列。我们发现,头胶质细胞的缺失降低了交配行为的持续性,阻碍了交配,而缺乏HLH-17的雄性表现出重复的刺激行为,增加了交配时间,但不妨碍交配。在DMP期间,我们发现雄性和雌雄同体的后体壁收缩(PBOC)和肠肌收缩(EMCs)受到HLH-17或脑胶质细胞丢失的不同影响。PBOC和EMC在两性中都需要HLH-17活性,而在雄性中,仅头胶质细胞的缺失并不影响DMP。我们的数据表明,CEPglia通过向GABA能DVB神经元发送信号来介导复杂的行为,HLH-17活性影响这些行为中的离散步骤。总的来说,这些数据提供了证据,证明神经胶质细胞在复杂和节律性行为的协同调节中起着纽带作用,在秀丽隐杆线虫中,这种行为连接头部和尾部的电路。

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