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神经元兴奋性调节果蝇发育时间。

Neuronal excitability modulates developmental time of Drosophila melanogaster.

机构信息

College of the Holy Cross, Department of Biology, Worcester, MA, USA.

College of the Holy Cross, Department of Biology, Worcester, MA, USA.

出版信息

Dev Biol. 2024 Apr;508:38-45. doi: 10.1016/j.ydbio.2024.01.006. Epub 2024 Jan 14.

Abstract

Developmental time is a fundamental life history trait that affects the reproductive success of animals. Developmental time is known to be regulated by many genes and environmental conditions, yet mechanistic understandings of how various cellular processes influence the developmental timing of an organism are lacking. The nervous system is known to control key processes that affect developmental time, including the release of hormones that signal transitions between developmental stages. Here we show that the excitability of neurons plays a crucial role in modulating developmental time. Genetic manipulation of neuronal excitability in Drosophila melanogaster alters developmental time, which is faster in animals with increased neuronal excitability. We find that selectively modulating the excitability of peptidergic neurons is sufficient to alter developmental time, suggesting the intriguing hypothesis that the impact of neuronal excitability on DT may be at least partially mediated by peptidergic regulation of hormone release. This effect of neuronal excitability on developmental time is seen during embryogenesis and later developmental stages. Observed phenotypic plasticity in the effect of genetically increasing neuronal excitability at different temperatures, a condition also known to modulate excitability, suggests there is an optimal level of neuronal excitability, in terms of shortening DT. Together, our data highlight a novel connection between neuronal excitability and developmental time, with broad implications related to organismal physiology and evolution.

摘要

发育时间是影响动物生殖成功的一个基本生命史特征。已知发育时间受许多基因和环境条件的调控,但对于各种细胞过程如何影响生物体的发育时间的机制理解还很缺乏。神经系统被认为控制着影响发育时间的关键过程,包括释放信号转导发育阶段之间转变的激素。在这里,我们表明神经元的兴奋性在调节发育时间方面起着至关重要的作用。在黑腹果蝇中对神经元兴奋性进行遗传操作会改变发育时间,增加神经元兴奋性的动物发育时间更快。我们发现,选择性地调节肽能神经元的兴奋性足以改变发育时间,这表明一个有趣的假设,即神经元兴奋性对 DT 的影响至少部分是通过肽能调节激素释放介导的。这种神经元兴奋性对发育时间的影响在胚胎发生和后期发育阶段都可以观察到。在不同温度下增加神经元兴奋性的遗传效应观察到的表型可塑性,这也是已知调节兴奋性的条件,这表明在缩短 DT 方面,神经元兴奋性存在一个最佳水平。总之,我们的数据强调了神经元兴奋性和发育时间之间的新联系,这与机体生理学和进化有广泛的关联。

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