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茶树光周期对生物钟和光合效率的干扰:数学模型的深入分析

Interference of skeleton photoperiod in circadian clock and photosynthetic efficiency of tea plant: in-depth analysis of mathematical model.

作者信息

Hu Zhi-Hang, Huang Ting, Zhang Nan, Chen Chen, Yang Kai-Xin, Sun Meng-Zhen, Yang Ni, Chen Yi, Tao Jian-Ping, Liu Hui, Li Xing-Hui, Chen Xuan, You Xiong, Xiong Ai-Sheng, Zhuang Jing

机构信息

Tea Science Research Institute, College of Horticulture, Nanjing Agricultural University, Nanjing, Jiangsu 210095, China.

State Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, Nanjing Agricultural University, Nanjing, Jiangsu 210095, China.

出版信息

Hortic Res. 2024 Aug 8;11(10):uhae226. doi: 10.1093/hr/uhae226. eCollection 2024 Oct.

Abstract

The circadian system of plants is a complex physiological mechanism, a biological process in which plants can adjust themselves according to the day and night cycle. To understand the effects of different photoperiods on the biological clock of tea plants, we analyzed the expression levels of core clock genes (, , , ) and photosynthesis-related genes (, , ) under normal light (light/dark = 12 h/12 h, 12L12D) and took the cost function defined by cycle and phase errors as the basic model parameter. In the continuous light environment (24 h light, 24L), the peak activity and cycle of key genes that control the biological clock and photosynthesis were delayed by 1-2 h. Under a skeleton photoperiod (6L6D, 3L3D), the expression profiles of clock genes and photosynthesis-related genes in tea plants were changed and stomatal opening showed a circadian rhythm. These observations suggest that a skeleton photoperiod may have an effect on the circadian rhythm, photosynthetic efficiency and stomatal regulation of tea plants. Our study and model analyzed the components of circadian rhythms under different photoperiodic pathways, and also revealed the underlying mechanisms of circadian regulation of photosynthesis in tea plants.

摘要

植物的昼夜节律系统是一种复杂的生理机制,是植物能够根据昼夜循环进行自我调节的生物学过程。为了解不同光周期对茶树生物钟的影响,我们分析了正常光照(光/暗 = 12小时/12小时,12L12D)下核心生物钟基因(、、、)和光合作用相关基因(、、)的表达水平,并将由周期和相位误差定义的代价函数作为基本模型参数。在持续光照环境(24小时光照,24L)下,控制生物钟和光合作用的关键基因的峰值活性和周期延迟了1 - 2小时。在骨架光周期(6L6D,3L3D)下,茶树中生物钟基因和光合作用相关基因的表达谱发生了变化,气孔开放呈现出昼夜节律。这些观察结果表明,骨架光周期可能对茶树的昼夜节律、光合效率和气孔调节产生影响。我们的研究和模型分析了不同光周期途径下昼夜节律的组成部分,也揭示了茶树光合作用昼夜调节的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7ff/11480659/14e70488eb92/uhae226f1.jpg

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