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Circadian clock component, LHY, tells a plant when to respond photosynthetically to light in nature

机译:昼夜节律组件LHY告诉植物什么时候光合作用地响应自然光

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摘要

The circadian clock is known to increase plant growth and fitness, and thought to prepare plants for photosynthesis at dawn and dusk; whether this happens in nature was unknown. We transformed the native tobacco, Nicotiana attenuata to silence two core clock components, NaLHY (irLHY) and NaTOC1 (irTOC1). We characterized growth and light- and dark- adapted photosynthetic rates (A c ) throughout a 24 h day in empty vector-transformed (EV), irLHY, and irTOC1 plants in the field, and in NaPhyA- and NaPhyB1-silenced plants in the glasshouse. The growth rates of irLHY plants were lower than those of EV plants in the field. While irLHY plants reduced A c earlier at dusk, no differences between irLHY and EV plants were observed at dawn in the field. irLHY, but not EV plants, responded to light in the night by rapidly increasing A c . Under controlled conditions, EV plants rapidly increased A c in the day compared to dark-adapted plants at night; irLHY plants lost these time-dependent responses. The role of NaLHY in gating photosynthesis is independent of the light-dependent reactions and red light perceived by NaPhyA, but not NaPhyB1. In summary, the circadian clock allows plants not to respond photosynthetically to light at night by anticipating and gating red light-mediated in native tobacco.
机译:众所周知,生物钟可以增加植物的生长和适应性,并被认为可以使植物在黎明和黄昏时进行光合作用。这是否自然发生还不得而知。我们将天然烟草Nicotiana pleta进行了改造,以使两个核心时钟组件NaLHY(irLHY)和NaTOC1(irTOC1)沉默。我们在田间空载体转化(EV),irLHY和irTOC1植物以及NaPhyA和NaPhyB1沉默的植物中,在整个24小时内对生长和适应光明和黑暗的光合速率(A c)进行了表征。温室。 irLHY植物的生长速度低于EV植物。 irLHY植物在黄昏时降低了A c,而irLHY和EV植物在田间黎明时未观察到差异。 irLHY,而不是EV植物,在夜间通过快速增加A c对光做出响应。在受控条件下,与夜间适应黑暗的植物相比,EV植物在白天的Ac迅速增加; irLHY植物失去了这些时间依赖性反应。 NaLHY在门控光合作用中的作用独立于NaPhyA而非NaPhyB1所感知的光依赖性反应和红光。总而言之,昼夜节律时钟通过预期和控制天然烟草中介导的红光,使植物在夜间不对光有光合反应。

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