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C. elegans dauer formation and the molecular basis of plasticity

机译:C. elegans dauer的形成和可塑性的分子基础

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摘要

Because life is often unpredictable, dynamic, and complex, all animals have evolved remarkable abilities to cope with changes in their external environment and internal physiology. This regulatory plasticity leads to shifts in behavior and metabolism, as well as to changes in development, growth, and reproduction, which is thought to improve the chances of survival and reproductive success. In favorable environments, the nematode Caenorhabditis elegans develops rapidly to reproductive maturity, but in adverse environments, animals arrest at the dauer diapause, a long-lived stress resistant stage. A molecular and genetic analysis of dauer formation has revealed key insights into how sensory and dietary cues are coupled to conserved endocrine pathways, including insulin/IGF, TGF-β, serotonergic, and steroid hormone signal transduction, which govern the choice between reproduction and survival. These and other pathways reveal a molecular basis for metazoan plasticity in response to extrinsic and intrinsic signals.
机译:由于生命通常是不可预测的,动态的和复杂的,因此所有动物都已经发展出了应付外部环境和内部生理变化的出色能力。这种调节可塑性导致行为和新陈代谢的改变,以及发育,生长和繁殖的变化,这被认为可以提高生存和生殖成功的机会。在有利的环境中,线虫秀丽隐杆线虫会迅速发育到生殖成熟,但在不利的环境中,动物会滞留在dauer滞育期,这是一个长期的抗压力期。 dauer形成的分子和遗传分析揭示了关于感觉和饮食线索如何与保守的内分泌途径(包括胰岛素/ IGF,TGF-β,血清素能和类固醇激素信号转导)耦合的关键见解,它们决定着繁殖和生存之间的选择。这些和其他途径揭示了对外部和内在信号响应的后生可塑性的分子基础。

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