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EDL3 is an F-box protein involved in the regulation of abscisic acid signalling in Arabidopsis thaliana

机译:EDL3是一种F-box蛋白参与拟南芥中脱落酸信号的调控

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摘要

The EID1-like protein 3 (EDL3) shows high similarity to EID1 (Empfindlicher im dunkelroten Licht 1), an F-box protein that functions as a negative regulator in the signalling cascade downstream of the phytochrome A photoreceptor in Arabidopsis thaliana. Analyses revealed a strong and rapid induction of EDL3 gene expression under osmotic stress, high salinity, and upon abscisic acid (ABA) application. Therefore, it was speculated that EDL3 is involved in the regulation of responses controlled by this plant hormone, which not only regulates many aspects of plant development but also integrates responses towards temperature, drought, osmotic, and salt stresses. Physiological data obtained with over-expresser lines and a conditional knock-down mutant demonstrated that EDL3 functions as a positive regulator in ABA-dependent signalling cascades that control seed germination, root growth, greening of etiolated seedlings, and transition to flowering. Results further demonstrate that EDL3 regulates anthocyanin accumulation under drought stress. The observed effects on physiological responses fit to tissue-specific expression patterns obtained with EDL3-promoter:GUS lines. Bimolecular Fluorescence Complementation assays and yeast two-hybrid analyses showed that EDL3 carries a functional F-box domain. Thus, the protein is presumed to act as a component of a ubiquitin ligase complex that specifically directs negatively acting factors in ABA signalling to degradation via the proteasome.
机译:EID1样蛋白3(EDL3)与EID1(Empfindlicher im dunkelroten Licht 1)具有高度相似性,EID1是在拟南芥中植物色素A光感受器下游的信号级联反应中起负调控作用的F盒蛋白。分析表明,在渗透胁迫,高盐度和脱落酸(ABA)作用下,EDL3基因表达强烈而快速地诱导。因此,据推测EDL3参与了这种植物激素控制的应答的调节,该调节不仅调节植物发育的许多方面,而且整合了对温度,干旱,渗透和盐胁迫的应答。用过量表达株系和条件性敲除突变体获得的生理数据表明,EDL3在ABA依赖的信号级联反应中起正调节剂的作用,该信号级联控制种子发芽,根系生长,黄化幼苗的绿化以及过渡到开花。结果进一步证明,EDL3调节干旱胁迫下的花色苷积累。观察到的对生理反应的影响符合使用EDL3-promoter:GUS品系获得的组织特异性表达模式。双分子荧光互补测定法和酵母双杂交分析表明,EDL3携带功能性的F框域。因此,推测该蛋白质充当泛素连接酶复合物的组分,其特异性地指导ABA信号传导中的负性作用因子经由蛋白酶体降解。

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