Centro de Estudios Biomédicos Básicos, Aplicados y Desarrollo (CEBBAD) Universidad Maimónides, Buenos Aires, Argentina.
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.
Transcription. 2023 Nov;14(1-2):27-48. doi: 10.1080/21541264.2023.2190295. Epub 2023 Mar 23.
can enter a diapause stage called "dauer" when it senses that the environment is not suitable for development. This implies a detour from the typical developmental trajectory and requires a tight control of the developmental clock and a massive tissue remodeling. In the last decades, core components of the signaling pathways that govern the dauer development decision have been identified, but the tissues where they function for the acquisition of dauer-specific traits are still under intense study. Growing evidence demonstrates that these pathways engage in complex cross-talk and feedback loops. In this review, we summarize the current knowledge regarding the transcriptional regulation of the dauer program and the relevant tissues for its achievement. A better understanding of this process will provide insight on how developmental plasticity is achieved and how development decisions are under a robust regulation to ensure an all-or-nothing response. Furthermore, this developmental decision can also serve as a simplified model for relevant developmental disorders. AID Auxin Induced Degron DA dafachronic acid Daf-c dauer formation constitutive Daf-d dauer formation defective DTC Distal Tip Cells ECM modified extracellular matrix GPCRs G protein-coupled receptors IIS insulin/IGF-1 signaling ILPs insulin-like peptides LBD Ligand Binding Domain PDL4 Post Dauer L4 TGF-β transforming growth factor beta WT wild-type.
它可以进入一种称为“ dauer”的休眠阶段,当它感觉到环境不适合发育时。这意味着从典型的发育轨迹上绕道而行,需要对发育时钟进行严格的控制,并进行大规模的组织重塑。在过去的几十年中,控制 dauer 发育决策的信号通路的核心组成部分已经被确定,但是它们在哪些组织中发挥作用以获得 dauer 特异性特征仍在深入研究中。越来越多的证据表明,这些途径会发生复杂的串扰和反馈回路。在这篇综述中,我们总结了 dauer 程序的转录调控以及实现 dauer 程序的相关组织的最新知识。更好地理解这个过程将有助于了解如何实现发育可塑性,以及如何对发育决策进行强有力的调节,以确保全有或全无的反应。此外,这种发育决策也可以作为相关发育障碍的简化模型。AID Auxin Induced Degron DA dafachronic acid Daf-c dauer formation constitutive Daf-d dauer formation defective DTC Distal Tip Cells ECM modified extracellular matrix GPCRs G protein-coupled receptors IIS insulin/IGF-1 signaling ILPs insulin-like peptides LBD Ligand Binding Domain PDL4 Post Dauer L4 TGF-β transforming growth factor beta WT wild-type。