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The GCR1 GPA1 PRN1 NF-Y Signal Chain Mediates Both Blue Light and Abscisic Acid Responses in Arabidopsis

机译:GCR1GPA1PRN1NF-Y信号链介导拟南芥中的蓝光和脱落酸反应。

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摘要

Different classes of biotic (e.g. plant hormones) and abiotic (e.g. different wavelengths of light) signals act through specific signal transduction mechanisms to coordinate higher plant development. While a great deal of progress has been made, full signal transduction chains have not yet been described for most blue light- or abscisic acid-mediated events. Based on data derived from T-DNA insertion mutants and yeast (Saccharomyces cerevisiae) two-hybrid and coprecipitation assays, we report a signal transduction chain shared by blue light and abscisic acid leading to light-harvesting chlorophyll a/b-binding protein expression in etiolated Arabidopsis (Arabidopsis thaliana) seedlings. The chain consists of GCR1 (the sole Arabidopsis protein coding for a potential G-protein-coupled receptor), GPA1 (the sole Arabidopsis Gα-subunit), Pirin1 (PRN1; one of four members of an iron-containing subgroup of the cupin superfamily), and a nuclear factor Y heterotrimer comprised of A5, B9, and possibly C9. We also demonstrate that this mechanism is present in imbibed seeds wherein it affects germination rate.
机译:不同种类的生物信号(例如植物激素)和非生物信号(例如不同波长的光)通过特定的信号转导机制起作用,以协调更高的植物发育。尽管已经取得了很大进展,但对于大多数蓝光或脱落酸介导的事件,尚未描述完整的信号转导链。基于来自T-DNA插入突变体和酵母(Saccharomyces cerevisiae)两种杂交和共沉淀测定的数据,我们报告了蓝光和脱落酸共有的信号转导链,导致光捕获叶绿素a / b结合蛋白的表达黄化拟南芥(Arabidopsis thaliana)幼苗。该链由GCR1(编码潜在的G蛋白偶联受体的唯一拟南芥蛋白),GPA1(唯一的拟南芥Gα亚基),Pirin1(PRN1;铜蛋白超家族含铁亚组的四个成员之一)组成),以及由A5,B9和可能的C9组成的核因子Y异源三聚体。我们还证明了该机制存在于吸收种子中,在其中影响发芽率。

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