Salomé Patrice A, McClung C Robertson
Dartmouth College, Department of Biological Sciences, Hanover, New Hampshire 03755-3576, USA.
Plant Cell. 2005 Mar;17(3):791-803. doi: 10.1105/tpc.104.029504. Epub 2005 Feb 10.
Environmental time cues, such as photocycles (light/dark) and thermocycles (warm/cold), synchronize (entrain) endogenous biological clocks to local time. Although much is known about entrainment of the Arabidopsis thaliana clock to photocycles, the determinants of thermoperception and entrainment to thermocycles are not known. The Arabidopsis PSEUDO-RESPONSE REGULATOR (PRR) genes, including the clock component TIMING OF CAB EXPRESSION 1/PRR1, are related to bacterial, fungal, and plant response regulators but lack the conserved Asp that is normally phosphorylated by an upstream sensory kinase. Here, we show that two PRR family members, PRR7 and PRR9, are partially redundant; single prr7-3 or prr9-1 mutants exhibit modest period lengthening, but the prr7-3 prr9-1 double mutant shows dramatic and more than additive period lengthening in the light and becomes arrhythmic in constant darkness. The prr7-3 prr9-1 mutant fails both to maintain an oscillation after entrainment to thermocycles and to reset its clock in response to cold pulses and thus represents an important mutant strongly affected in temperature entrainment in higher plants. We conclude that PRR7 and PRR9 are critical components of a temperature-sensitive circadian system. PRR7 and PRR9 could function in temperature and light input pathways or they could represent elements of an oscillator necessary for the clock to respond to temperature signals.
环境时间线索,如光周期(光/暗)和温度周期(暖/冷),使内源性生物钟与当地时间同步(校准)。尽管对于拟南芥生物钟被光周期校准的情况已了解很多,但温度感知和被温度周期校准的决定因素仍不清楚。拟南芥的伪反应调节因子(PRR)基因,包括生物钟组分CAB表达时间1/PRR1,与细菌、真菌和植物的反应调节因子相关,但缺少通常由上游传感激酶磷酸化的保守天冬氨酸。在此,我们表明PRR家族的两个成员PRR7和PRR9存在部分冗余;单个prr7 - 3或prr9 - 1突变体表现出适度的周期延长,但prr7 - 3 prr9 - 1双突变体在光照下表现出显著且超过累加效应的周期延长,在持续黑暗中变得无节律。prr7 - 3 prr9 - 1突变体在被温度周期校准后既不能维持振荡,也不能响应冷脉冲重置其生物钟,因此代表了一个在高等植物温度校准中受到强烈影响的重要突变体。我们得出结论,PRR7和PRR9是温度敏感型昼夜节律系统的关键组分。PRR7和PRR9可能在温度和光输入途径中起作用,或者它们可能代表生物钟响应温度信号所必需的振荡器元件。