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Subtype-specific neuronal remodeling during Drosophila metamorphosis.

机译:果蝇变态过程中的亚型特异性神经元重塑。

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摘要

During metamorphosis in holometabolous insects, the nervous system undergoes dramatic remodeling as it transitions from its larval to its adult form. Many neurons are generated through post-embryonic neurogenesis to have adult-specific roles, but perhaps more striking is the dramatic remodeling that occurs to transition neurons from functioning in the larval to the adult nervous system. These neurons exhibit a remarkable degree of plasticity during this transition; many subsets undergo programmed cell death, others remodel their axonal and dendritic arbors extensively, whereas others undergo trans-differentiation to alter their terminal differentiation gene expression profiles. Yet other neurons appear to be developmentally frozen in an immature state throughout larval life, to be awakened at metamorphosis by a process we term temporally-tuned differentiation. These multiple forms of remodeling arise from subtype-specific responses to a single metamorphic trigger, ecdysone. Here, we discuss recent progress in Drosophila melanogaster that is shedding light on how subtype-specific programs of neuronal remodeling are generated during metamorphosis.Registry Number/Name of Substance 0 (Juvenile Hormones). 3604-87-3 (Ecdysone).
机译:在全代谢昆虫的变态过程中,神经系统会从其幼虫过渡到成年形式,经历剧烈的重塑。许多神经元是通过胚胎后神经发生而产生的,它们具有成年特定的作用,但也许更引人注目的是发生剧烈的重塑,使神经元从幼虫的功能转变为成年的神经系统。这些神经元在此过渡过程中表现出显着的可塑性。许多子集经历了程序性细胞死亡,其他子集广泛地重塑了它们的轴突和树突状乔木,而其他子集则经历了转分化,以改变其终末分化基因表达谱。还有其他神经元在幼虫的整个生命中似乎处于发育不成熟的状态,并通过我们称为时间调谐的分化过程在变态时被唤醒。这些多种形式的重塑源自对单个变态触发因子蜕皮激素的亚型特异性反应。在这里,我们讨论果蝇的最新进展,这揭示了在变态过程中如何生成亚型特定的神经元重塑程序。登记号/物质0(少年荷尔蒙)的名称。 3604-87-3(蜕皮激素)。

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