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Flowering time control in rice by introducing Arabidopsis clock-associated PSEUDO-RESPONSE REGULATOR 5

机译:通过引入拟南芥时钟相关的伪响应调节器5开花时间控制

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摘要

Plants flower under appropriate day-length conditions by integrating temporal information provided by the circadian clock with light and dark information from the environment. A sub-group of plant specific circadian clock-associated PSEUDO-RESPONSE REGULATOR (PRR) genes (PRR7/PRR3 sub-group) controls flowering time both in long-day and short-day plants; however, flowering control by the other two PRR gene sub-groups has been reported only in Arabidopsis thaliana (Arabidopsis), a model long-day plant. Here, we show that an Arabidopsis PRR9/PRR5 sub-group gene can control flowering time (heading date) in rice, a short-day plant. Although PRR5 promotes flowering in Arabidopsis, transgenic rice overexpressing Arabidopsis PRR5 caused late flowering. Such transgenic rice plants produced significantly higher biomass, but not grain yield, due to the late flowering. Concomitantly, expression of Hd3a, a rice florigen gene, was reduced in the transgenic rice.
机译:通过将昼夜时钟提供的时间信息与环境从环境中的光线和黑暗信息集成,在适当的日间长度条件下植物。 植物特异性昼夜时钟相关的伪响应调节剂(PRR)基因(PRR7 / PRR3子组)对漫长的日期和短日植物进行开花时间; 然而,仅在拟南芥(Arabidopsis),模型漫长的植物中报告了另外两种PRR基因子组的开花控制。 在这里,我们表明拟南芥PRR9 / PRR5亚组基因可以控制水稻的开花时间(标题日期),短日植物。 虽然PRR5在拟南芥中促进开花,但转基因水稻过表达拟南芥PRR5引起的延迟开花。 这种转基因水稻植物产生了显着更高的生物量,但由于延迟开花,粮食产量不佳。 同时,在转基因水稻中减少了HD3a,水稻弗洛里芬基因的表达。

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