首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >The Fat/Hippo signaling pathway links within-disc morphogen patterning to whole-animal signals during phenotypically plastic growth in insects
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The Fat/Hippo signaling pathway links within-disc morphogen patterning to whole-animal signals during phenotypically plastic growth in insects

机译:在昆虫表型可塑性生长过程中,Fat / Hippo信号通路将碟内形态发生子模式与全动物信号联系起来

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Background: Insects exhibit a diversity of environmentally sensitive phenotypes that allow them to be an extraordinarily successful group. For example, mandible size in male stag beetles is exquisitely sensitive to the larval nutritional environment and is a reliable signal of male condition. Results: To date, studies of how such phenotypically plastic traits develop have focused on two types of mechanistic processes. Local, tissue-specific genetic mechanisms specify the shape and approximate final size of structures, whereas whole-animal hormonal signaling mechanisms modulate trait growth in response to environmental circumstance, including the body size and nutritional state of each individual. Hormones such as juvenile hormone, ecdysteroids, and/or ligands of the insulin-signaling pathway specify whether traits grow and regulate how much growth occurs across a diversity of insect groups. What remains to be shown is how the local, tissue-specific developmental genetic pathways interact with these whole animal hormonal signaling pathways during development to yield phenotypically plastic patterns of trait growth. Conclusions: Because the Fat/Hippo signaling pathway coordinates trait growth and development through its interactions with morphogens and hormonal pathways, we propose that Fat/Hippo signaling is a missing mechanistic link coordinating environmentally sensitive trait development in insects. (C) 2015 Wiley Periodicals, Inc.
机译:背景:昆虫表现出对环境敏感的表型多样性,使其成为非常成功的群体。例如,雄鹿甲虫的下颌骨大小对幼虫的营养环境极为敏感,是雄性状况的可靠信号。结果:迄今为止,关于这种表型可塑性性状如何发展的研究集中在两种类型的机械过程上。局部的,组织特异性的遗传机制规定了结构的形状和近似最终的大小,而全动物激素信号传导机制则根据环境条件调节性状的生长,包括每个人的体型和营养状况。激素,例如幼年激素,蜕皮类固醇和/或胰岛素信号传导途径的配体,指定了性状是否生长并调节在各种昆虫群体中发生多少生长。尚待证明的是,局部,组织特异性发育遗传途径在发育过程中如何与这些整个动物激素信号通路相互作用,从而产生性状生长的表型可塑性模式。结论:由于Fat / Hippo信号通路通过与形态发生子和激素途径的相互作用来协调性状的生长和发育,因此我们认为Fat / Hippo信号通路是协调昆虫对环境敏感性状发育的缺失机制。 (C)2015威利期刊公司

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