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14-3-3 isoforms participate in red light signaling and photoperiodic flowering

机译:14-3-3亚型参与红光信号传递和光周期开花

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摘要

Members of the 14-3-3 family of proteins participate in signal transduction by modulating flux through various pathways. Potential subfunctionalization within this family has produced a suite of related proteins with diverse client interactions and discrete localization. The associated study assesses the biological roles of two specific 14-3-3 isoforms, using genetic, biochemical and physiological assays to ascertain potential nodes of interaction. Arabidopsis T-DNA insertion mutants representing theupsilon and mu isoforms exhibited a short, yet clear delay in flowering time on long days. Tests of hypocotyl growth inhibition under narrow bandwidth light indicated a hyposensitivity to red light, while responses to blue and far-red light were normal.These physiological tests suggest a mechanistic link between 14-3-3 proteins, red light sensing, and the pathways that control photoperiodic flowering. The precise entry point into the pathway was assessed using yeast two hybrid assays targeted againstspecific proteins active in the circadian oscillator, light transduction and photoperiodic flowering. Yeast two hybrid interaction was observed with CONSTANS (CO), and then confirmed with coimmunoprecipitation. Functional interaction with phyB leading todefects in flowering time and direct interaction with CONSTANS circumstantially places these specific 14-3-3 isoforms into the pathway that regulates the transition between vegetative and floral development.
机译:14-3-3蛋白质家族的成员通过调节各种途径的通量参与信号转导。该家族中潜在的亚功能化产生了一系列具有不同客户相互作用和离散定位的相关蛋白质。相关研究使用遗传,生化和生理测定方法确定了潜在的相互作用节点,从而评估了两种特定的14-3-3同工型的生物学作用。代表upsilon和mu亚型的拟南芥T-DNA插入突变体在长的天数上表现出短暂但明显的延迟。窄带宽光下胚轴生长抑制试验表明对红光敏感,而对蓝光和远红光的反应正常,这些生理学试验表明14-3-3蛋白,红光感测和途径之间存在机械联系。控制光周期开花。使用两种针对生物钟中活跃的特定蛋白质,光转导和光周期开花的蛋白质的杂种酵母,评估了进入该途径的精确进入点。酵母与CONSTANS(CO)观察到两个杂种相互作用,然后用共免疫沉淀法确认。与phyB的功能相互作用会导致开花时间缩短,而与CONSTANS的直接相互作用会间接地将这些特定的14-3-3同工型置于调节营养和花卉发育之间过渡的途径中。

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