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Arabidopsis B-BOX32 interacts with CONSTANS-LIKE3 to regulate flowering

机译:拟南芥B-BOX32与CONSTANS-LIKE3相互作用以调节花期

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摘要

Plants have the ability to respond to seasonal environmental variations by monitoring day length to initiate flowering. The transition from vegetative to the reproductive stage is the critical developmental switch in flowering plants to ensure optimal fitness and/or yield. It has been previously reported that B-BOX32 (BBX32) has the potential to increase grain yield when ectopically expressed in soybean. In the present study, we performed a detailed molecular characterization of the Arabidopsis B-box domain gene BBX32. We showed that the circadian clock in Arabidopsis regulates BBX32 and expressed in the early morning. To understand the molecular mechanism of BBX32 regulation, we performed a large-scale yeast two-hybrid screen and identified CONSTANS-LIKE 3 (COL3)/BBX4 as one of its interacting protein partners. Using different genetic and biochemical assays, we have validated this interaction and shown that COL3 targets FT in the presence of BBX32 to regulate the flowering pathway. Based on these findings, we hypothesized that this BBX32-COL3 module could be an additional regulatory mechanism affecting the reproductive development in Arabidopsis that could be translated to crops for increased agricultural productivity.
机译:植物有能力通过监测日长以启动开花来应对季节性环境变化。从营养到生殖阶段的过渡是开花植物发展的关键,以确保最佳适应性和/或产量。先前已有报道,当在大豆中异位表达时,B-BOX32(BBX32)具有增加谷物产量的潜力。在本研究中,我们对拟南芥B-box域基因BBX32进行了详细的分子表征。我们表明拟南芥中的生物钟调节BBX32,并在清晨表达。为了了解BBX32调控的分子机制,我们进行了大规模酵母双杂交筛选,并确定CONSTANS-LIKE 3(COL3)/ BBX4是其相互作用的蛋白质伴侣之一。使用不同的遗传和生化分析,我们验证了这种相互作用,并表明在BBX32存在下,COL3靶向FT来调节开花途径。基于这些发现,我们假设该BBX32-COL3模块可能是影响拟南芥生殖发育的另一种调控机制,可以转化为农作物以提高农业生产力。

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