胰岛素信号在昆虫行为中的多种作用

Anastasia A. Weger, Clare C. Rittschof
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引用次数: 0

摘要

在昆虫和其他动物中,营养介导的行为是通过大脑和外周系统之间的交流来调节的,这一过程在很大程度上依赖于胰岛素/类胰岛素生长因子信号途径(IIS)。以往的研究主要集中在类胰岛素肽(ILPs)在关键的发育和成体里程碑(如化蛹或卵黄发生)中的机理和生理功能。较少研究详细阐述了 ILPs 与成体营养介导的生存和繁殖成功相关行为的连接机制。在此,我们简要回顾了昆虫中与 IIS 相关的一系列行为,从保守的摄食行为调控到进化衍生的多重机制。在可能的情况下,我们结合黑腹果蝇和其他模式物种的信息,描述通过 IIS 将营养状况与行为表现联系起来的分子和神经机制。我们发现的知识空白包括外周ILPs的不同功能作用、ILPs如何调节整个生命周期的神经功能和行为,以及缺乏对广泛类群的详细机制研究。填补这些空白将有助于更好地理解这一保守而广泛应用的工具包途径的进化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The diverse roles of insulin signaling in insect behavior
In insects and other animals, nutrition-mediated behaviors are modulated by communication between the brain and peripheral systems, a process that relies heavily on the insulin/insulin-like growth factor signaling pathway (IIS). Previous studies have focused on the mechanistic and physiological functions of insulin-like peptides (ILPs) in critical developmental and adult milestones like pupation or vitellogenesis. Less work has detailed the mechanisms connecting ILPs to adult nutrient-mediated behaviors related to survival and reproductive success. Here we briefly review the range of behaviors linked to IIS in insects, from conserved regulation of feeding behavior to evolutionarily derived polyphenisms. Where possible, we incorporate information from Drosophila melanogaster and other model species to describe molecular and neural mechanisms that connect nutritional status to behavioral expression via IIS. We identify knowledge gaps which include the diverse functional roles of peripheral ILPs, how ILPs modulate neural function and behavior across the lifespan, and the lack of detailed mechanistic research in a broad range of taxa. Addressing these gaps would enable a better understanding of the evolution of this conserved and widely deployed tool kit pathway.
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