Structural and Computational Biology, European Molecular Biology Laboratory, Heidelberg, Germany. Electronic address: https://twitter.com/@bournsupremacy.
Structural and Computational Biology, European Molecular Biology Laboratory, Heidelberg, Germany.
Curr Opin Genet Dev. 2024 Apr;85:102155. doi: 10.1016/j.gde.2024.102155. Epub 2024 Feb 9.
Temperature exerts a fundamental influence across scales of biology, from the biophysical nature of molecules, to the sensitivity of cells, and the coordinated progression of development in embryos. Species-specific developmental rates and temperature-induced acceleration of development indicate that these sensing mechanisms are harnessed to influence developmental dynamics. Tracing how temperature sensitivity propagates through biological scales to influence the pace of development can therefore reveal how embryogenesis remains robust to environmental influences. Cellular protein homeostasis (proteostasis), and cellular metabolic rate are linked to both temperature-induced and species-specific developmental tempos in specific cell types, hinting toward generalized mechanisms of timing control. New methods to extract timing information from single-cell profiling experiments are driving further progress in understanding how mechanisms of temperature sensitivity can direct cell-autonomous responses, coordination across cell types, and evolutionary modifications of developmental timing.
温度对生物学各个层次都有着根本的影响,从分子的生物物理学性质,到细胞的敏感性,再到胚胎发育的协调进展。物种特异性的发育速度和温度诱导的发育加速表明,这些感应机制被用来影响发育动力学。因此,追踪温度敏感性如何通过生物尺度传播以影响发育速度,可以揭示胚胎发生如何对环境影响保持稳健。特定细胞类型中,细胞蛋白平衡(蛋白质稳态)和细胞代谢率与温度诱导和物种特异性发育时空调制相关,暗示存在一般性的定时控制机制。从单细胞分析实验中提取定时信息的新方法正在推动进一步的进展,以了解温度敏感性机制如何指导细胞自主反应、细胞类型之间的协调以及发育定时的进化修饰。