Attenuated TOR signaling lengthens circadian period in Arabidopsis

Attenuated TOR signaling lengthens circadian period in Arabidopsis
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拟南芥中 TOR 信号减弱可延长昼夜节律

DOI:
10.1080/15592324.2019.1710935
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发表时间:
2020-01
影响因子:
2.9
通讯作者:
Lei Wang
Lei Wang
中科院分区:
生物学4区
文献类型:
--
作者:
Yan Wang;Yumei Qin;Bin Li;Yuanyuan Zhang;Lei Wang

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摘要生物钟通过对许多昼夜节律事件进行计时,为高等植物提供了一种适应优势。同时,生物钟具有可塑性,可以受到外界环境和自身因素的影响。然而,在高等植物中,细胞能量状态是否能够调节生物钟还很不清楚。真核生物中进化上保守的TOR(雷帕霉素靶蛋白)信号转导被认为是细胞营养和能量状态的整合者。在这里,我们证明了化学阻断线粒体的电子传递链可以延长昼夜节律周期。类似地,Torin 1(TOR激酶的特异性抑制剂)对TOR活性的化学抑制以及TOR转录物水平的敲低也显著延长了昼夜节律周期。我们的研究结果表明,TOR信号可能介导植物能量状态调节的生物钟,生物钟与TOR信号之间的相互调节可能是植物适应性和适应性的进化机制。
ABSTRACT By timing many diel rhythmic events, circadian clock provides an adaptive advantage for higher plants. Meanwhile, circadian clock displays plasticity and can be entrained by the external environmental cues and internal factors. However, whether cellular energy status can regulate circadian clock is largely unknown in higher plants. The evolutionarily conserved TOR (target of rapamycin) signaling among eukaryotic organisms has been implicated as an integrator for cellular nutrient and energy status. Here, we demonstrated that chemically blocking electron transport chain of mitochondrial can lengthen the circadian period. Similarly, chemical inhibition of TOR activity by Torin 1, a specific inhibitor for TOR kinase, and knockdown of TOR transcript levels significantly elongate the circadian period as well. Our findings imply that TOR signaling may mediate energy status-regulated circadian clock in plants, and the reciprocal regulation between the circadian clock and TOR signaling might be an evolutionary mechanism for fitness and adaptation in plants.
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