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首页> 外文期刊>The Plant Cell >Circadian Stress Regimes Affect the Circadian Clock and Cause Jasmonic Acid-Dependent Cell Death in Cytokinin-Deficient Arabidopsis Plants
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Circadian Stress Regimes Affect the Circadian Clock and Cause Jasmonic Acid-Dependent Cell Death in Cytokinin-Deficient Arabidopsis Plants

机译:昼夜节律机制影响昼夜节律,并导致细胞分裂素缺乏的拟南芥植物茉莉酸依赖性细胞死亡。

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摘要

The circadian clock helps plants measure daylength and adapt to changes in the day-night rhythm. We found that changes in the light-dark regime triggered stress responses, eventually leading to cell death, in leaves of Arabidopsis thaliana plants with reduced cytokinin levels or defective cytokinin signaling. Prolonged light treatment followed by a dark period induced stress and cell death marker genes while reducing photosynthetic efficiency. This response, called circadian stress, is also characterized by altered expression of clock and clock output genes. In particular, this treatment strongly reduced the expression of CIRCADIAN CLOCK ASSOCIATED1 (CCA1) and LATE ELONGATED HYPOCOTYL (LHY). Intriguingly, similar changes in gene expression and cell death were observed in clock mutants lacking proper CCA1 and LHY function. Circadian stress caused strong changes in reactive oxygen species-and jasmonic acid (JA)-related gene expression. The activation of the JA pathway, involving the accumulation of JA metabolites, was crucial for the induction of cell death, since the cell death phenotype was strongly reduced in the jasmonate resistant1 mutant background. We propose that adaptation to circadian stress regimes requires a normal cytokinin status which, acting primarily through the AHK3 receptor, supports circadian clock function to guard against the detrimental effects of circadian stress.
机译:昼夜节律时钟有助于植物测量昼长并适应昼夜节律的变化。我们发现,在具有降低的细胞分裂素水平或缺陷的细胞分裂素信号转导的拟南芥植物叶片中,明暗制度的变化触发了应激反应,最终导致细胞死亡。长时间的光照处理以及随后的黑暗时期诱导了应激和细胞死亡标记基因,同时降低了光合作用效率。这种反应称为昼夜节律应激,其特征还在于时钟和时钟输出基因表达的改变。尤其是,这种治疗方法大大降低了CIRCADIAN CLOCK ASSOCIATED1(CCA1)和晚期加长的hypocotyty(LHY)的表达。有趣的是,在缺乏适当CCA1和LHY功能的时钟突变体中,观察到基因表达和细胞死亡的类似变化。昼夜节律引起活性氧和茉莉酸(JA)相关基因表达的强烈变化。 JA途径的激活,涉及JA代谢产物的积累,对于诱导细胞死亡至关重要,因为在茉莉酸抗性的突变体背景下细胞死亡表型被大大降低。我们提出,要适应昼夜节律,需要正常的细胞分裂素状态,该状态主要通过AHK3受体发挥作用,支持昼夜节律功能,以防范昼夜节律的不利影响。

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