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神经元调节的 Wnt 产生有助于使器官发育对 中的环境变化具有稳健性。

Sensory regulated Wnt production from neurons helps make organ development robust to environmental changes in .

机构信息

Department of Oncological Sciences, Huntsman Cancer Institute, University of Utah, Salt Lake City, UT 84112, USA.

Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, Ontario, M5G 1X5, Canada.

出版信息

Development. 2020 Jul 23;147(14):dev186080. doi: 10.1242/dev.186080.

DOI:10.1242/dev.186080
PMID:32586974
Abstract

Long-term survival of an animal species depends on development being robust to environmental variations and climate changes. We used to study how mechanisms that sense environmental changes trigger adaptive responses that ensure animals develop properly. In water, the nervous system induces an adaptive response that reinforces vulval development through an unknown backup signal for vulval induction. This response involves the heterotrimeric G-protein EGL-30//G acting in motor neurons. It also requires body-wall muscle, which is excited by EGL-30-stimulated synaptic transmission, suggesting a behavioral function of neurons induces backup signal production from muscle. We now report that increased acetylcholine during liquid growth activates an EGL-30-Rho pathway, distinct from the synaptic transmission pathway, that increases Wnt production from motor neurons. We also provide evidence that this neuronal Wnt contributes to EGL-30-stimulated vulval development, with muscle producing a parallel developmental signal. As diverse sensory modalities stimulate motor neurons via acetylcholine, this mechanism enables broad sensory perception to enhance Wnt-dependent development. Thus, sensory perception improves animal fitness by activating distinct neuronal functions that trigger adaptive changes in both behavior and developmental processes.

摘要

动物物种的长期生存取决于其发育对环境变化和气候变化的稳健性。我们利用 来研究感知环境变化的机制如何引发适应性反应,以确保动物正常发育。在水中,神经系统通过未知的后备信号诱导一种适应性反应,通过该信号加强了阴道发育,该后备信号诱导涉及异三聚体 G 蛋白 EGL-30//G 在运动神经元中的作用。它还需要体壁肌肉,EGL-30 刺激的突触传递会兴奋体壁肌肉,这表明神经元的行为功能会从肌肉中产生后备信号。我们现在报告说,在液体生长过程中增加的乙酰胆碱会激活 EGL-30-Rho 途径,该途径与突触传递途径不同,它会增加运动神经元中 Wnt 的产生。我们还提供了证据表明,这种神经元 Wnt 有助于 EGL-30 刺激的阴道发育,肌肉产生平行的发育信号。由于各种感觉模式通过乙酰胆碱刺激运动神经元,这种机制使广泛的感觉感知能够增强依赖 Wnt 的发育。因此,通过激活不同的神经元功能,感觉感知可提高动物的适应性,从而改善动物的适应性和发育过程。

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