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Arabidopsis Response Regulators ARR3 and ARR4 Play Cytokinin-Independent Roles in the Control of Circadian Period

机译:拟南芥响应调节因子ARR3和ARR4在昼夜节律的控制中发挥细胞分裂素非依赖性作用。

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摘要

Light and temperature are potent environmental signals used to synchronize the circadian oscillator with external time and photoperiod. Phytochrome and cryptochrome photoreceptors integrate light quantity and quality to modulate the pace and phase of the clock. PHYTOCHROME B (phyB) controls period length in red light as well as the phase of the clock in white light. phyB interacts with ARABIDOPSIS RESPONSE REGULATOR4 (ARR4) in a light-dependent manner. Accordingly, we tested ARR4 and other members of the type-A ARR family for roles in clock function and show that ARR4 and its closest relative, ARR3, act redundantly in the Arabidopsis thaliana circadian system. Loss of ARR3 and ARR4 lengthens the period of the clock even in the absence of light, demonstrating that they do so independently of active phyB. In addition, in white light, arr3,4 mutants show a leading phase similar to phyB mutants, suggesting that circadian light input is modulated by the interaction of phyB with ARR4. Although type-A ARRs are involved in cytokinin signaling, the circadian defects appear to be independent of cytokinin, as exogenous cytokinin affects the phase but not the period of the clock. Therefore, ARR3 and ARR4 are critical for proper circadian period and define an additional level of regulation of the circadian clock in Arabidopsis.
机译:光和温度是有效的环境信号,用于使生物钟振荡器与外部时间和光周期同步。植物色素和隐色光感受器整合了光量和质量,以调节时钟的速度和相位。 PHYTOCHROME B(phyB)控制红光下的周期长度以及白光下的时钟相位。 phyB以依赖于光的方式与拟南芥反应调节剂4(ARR4)相互作用。因此,我们测试了ARR4和A型ARR家族的其他成员在时钟功能中的作用,并表明ARR4及其最接近的亲戚ARR3在拟南芥昼夜节律系统中有多余的作用。即使在没有光照的情况下,ARR3和ARR4的丢失也会延长时钟周期,这表明它们与活动phyB无关。此外,在白光中,arr3,4突变体显示出与phyB突变体相似的前相,这表明昼夜节律的光输入受phyB与ARR4的相互作用调节。尽管A型ARR参与细胞分裂素信号传导,但昼夜节律缺陷似乎与细胞分裂素无关,因为外源细胞分裂素会影响相位而不是时钟周期。因此,ARR3和ARR4对于适当的昼夜节律至关重要,并在拟南芥中定义了昼夜节律时钟的额外调节水平。

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