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Flowering responses to light and temperature

机译:开花对光和温度的反应

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Light and temperature signals are the most important environmental cues regulating plant growth and development. Plants have evolved various strategies to prepare for, and adapt to environmental changes. Plants integrate environmental cues with endogenous signals to regulate various physiological processes, including flowering time. There are at least five distinct pathways controlling flowering in the model plant Arabidopsis thaliana : the photoperiod pathway, the vernalization/thermosensory pathway, the autonomous floral initiation, the gibberellins pathway, and the age pathway. The photoperiod and temperature/ vernalization pathways mainly perceive external signals from the environment, while the autonomous and age pathways transmit endogenous cues within plants. In many plant species, floral transition is precisely controlled by light signals (photoperiod) and temperature to optimize seed production in specific environments. The molecular mechanisms by which light and temperature control flowering responses have been revealed using forward and reverse genetic approaches. Here we focus on the recent advances in research on flowering responses to light and temperature.
机译:光和温度信号是调节植物生长和发育的最重要的环境线索。植物已经进化出各种策略来准备并适应环境变化。植物将环境线索与内源信号整合在一起,以调节各种生理过程,包括开花时间。在模型植物拟南芥中至少有五个控制开花的不同途径:光周期途径,春化/热感途径,自主花生,赤霉素途径和衰老途径。光周期和温度/春化途径主要感知来自环境的外部信号,而自主途径和衰老途径则在植物内部传递内源性线索。在许多植物物种中,花卉过渡都受光信号(光周期)和温度的精确控制,以优化特定环境下的种子产量。使用正向和反向遗传方法揭示了光和温度控制开花反应的分子机制。在这里,我们重点研究开花对光和温度的响应的最新研究进展。

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