Department of Biological Sciences and Engineering, Indian Institute of Technology Gandhinagar, Gandhinagar, Gujarat, India.
Plant Mol Biol. 2024 Aug 29;114(5):93. doi: 10.1007/s11103-024-01493-2.
Most organisms have evolved specific mechanisms to respond to changes in environmental conditions such as light and temperature over the course of day. These periodic changes in the physiology and behaviour of organisms, referred to as circadian rhythms, are a consequence of intricate molecular mechanisms in the form of transcription and translational feedback loops. The plant circadian regulatory network is a complex web of interconnected feedback loops involving various transcription factors such as CCA1, LHY, PRRs, TOC1, LUX, ELF3, ELF4, RVE8, and more. This network enables plants to adapt and thrive in diverse environmental conditions. It responds to entrainment signals, including light, temperature, and nutrient concentrations and interacts with most of the physiological functions such as flowering, growth and stress response. Mathematical modelling of these gene regulatory networks enables a deeper understanding of not only the function but also the perturbations that may affect the plant growth and function with changing climate. Over the years, numerous mathematical models have been developed to understand the diverse aspects of plant circadian regulation. In this review, we have delved into the systematic development of these models, outlining the model components and refinements over time. We have also highlighted strengths and limitations of each of the models developed so far. Finally, we conclude the review by describing the prospects for investigation and advancement of these models for better understanding of plant circadian regulation.
大多数生物都进化出了特定的机制来应对环境条件的变化,例如白天的光和温度。这些生物体生理和行为的周期性变化,被称为昼夜节律,是转录和翻译反馈环等复杂分子机制的结果。植物昼夜节律调节网络是一个复杂的相互关联的反馈环网络,涉及各种转录因子,如 CCA1、LHY、PRRs、TOC1、LUX、ELF3、ELF4、RVE8 等。这个网络使植物能够适应和在各种环境条件下茁壮成长。它对包括光、温度和营养浓度在内的同步信号做出反应,并与大多数生理功能(如开花、生长和应激反应)相互作用。对这些基因调控网络进行数学建模,不仅可以深入了解其功能,还可以深入了解可能影响植物生长和功能的变化气候下的干扰。多年来,已经开发出许多数学模型来了解植物昼夜节律调节的各个方面。在这篇综述中,我们深入探讨了这些模型的系统发展,概述了随着时间的推移模型组件和改进。我们还强调了迄今为止开发的每个模型的优缺点。最后,我们通过描述这些模型的调查和改进前景来结束综述,以更好地理解植物昼夜节律调节。