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衰老叶片中昼夜节律基因表达的基因编程节律性改变。

The genetically programmed rhythmic alteration of diurnal gene expression in the aged leaves.

作者信息

Jung Sukjoon, Kim Hyunmin, Lee Juhyeon, Kang Myeong Hoon, Kim Jungyeon, Kim Jong Kyoung, Lim Pyung Ok, Nam Hong Gil

机构信息

Department of New Biology, Daegu Gyeongbuk Institute of Science&Technology (DGIST), Daegu, Republic of Korea.

Center for Plant Aging Research, Institute for Basic Science, Daegu, Republic of Korea.

出版信息

Front Plant Sci. 2024 Nov 4;15:1481682. doi: 10.3389/fpls.2024.1481682. eCollection 2024.

Abstract

The circadian clock regulates the daily pattern of temporal gene expression. In Arabidopsis, aging is associated with a shortening of the endogenous period of circadian rhythms under circadian conditions. However, the functional link between the circadian clock and aging under diurnal conditions and its physiological relevance remain elusive. In this study, we investigate and characterize the effect of aging on the waveforms of rhythmic gene expression patterns under light/dark cycles. Our analysis revealed that the diurnal rhythmic patterns of core clock genes undergo significant rhythmic alteration with phase shift and change of waveforms in aged plants compared to younger plants. Transcriptomic analysis indicated that this age-dependent rhythmic alteration occurs not only in core clock genes but also globally. Due to the rhythmic alteration patterns of the diurnal rhythmic gene expression, aged plants experience subjectively a shorter day and longer night. We also observed that genetic mutants of core clock component genes exhibited broadly yet distinctively altered changes in diurnal rhythmic gene expression patterns as aging progresses. Collectively, our findings support that age-dependent rhythmic alteration of diurnal gene expression rhythms reprograms the timetable of daily gene expression, leading to the physiological changes required for plant senescence.

摘要

生物钟调节基因表达的日常时间模式。在拟南芥中,衰老与昼夜条件下生物钟节律的内源性周期缩短有关。然而,在昼夜条件下生物钟与衰老之间的功能联系及其生理相关性仍不清楚。在本研究中,我们研究并表征了衰老对光/暗循环下节律性基因表达模式波形的影响。我们的分析表明,与年轻植株相比,衰老植株中核心生物钟基因的昼夜节律模式发生了显著的节律性改变,包括相位偏移和波形变化。转录组分析表明,这种年龄依赖性的节律性改变不仅发生在核心生物钟基因中,而且在整体上也存在。由于昼夜节律基因表达的节律性改变模式,衰老植株主观上经历了更短的白天和更长的夜晚。我们还观察到,随着衰老进程,核心生物钟组件基因的基因突变体在昼夜节律基因表达模式上表现出广泛但独特的改变。总的来说,我们的研究结果支持,昼夜基因表达节律的年龄依赖性节律性改变会重新编程每日基因表达的时间表,导致植物衰老所需的生理变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8531/11570267/5322737ba9b5/fpls-15-1481682-g001.jpg

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