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A Unique Short-Chain Dehydrogenase/Reductase in Arabidopsis Glucose Signaling and Abscisic Acid Biosynthesis and Functions

机译:拟南芥葡萄糖信号传导和脱落酸的生物合成和功能中的独特的短链脱氢酶/还原酶。

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摘要

Glc has hormone-like functions and controls many vital processes through mostly unknown mechanisms in plants. We report here on the molecular cloning of GLUCOSE INSENSITIVE1 (GIN1) and ABSCISIC ACID DEFICIENT2 (ABA2) which encodes a unique Arabidopsis short-chain dehydrogenase/reductase (SDR1) that functions as a molecular link between nutrient signaling and plant hormone biosynthesis. SDR1 is related to SDR superfamily members involved in retinoid and steroid hormone biosynthesis in mammals and sex determination in maize. Glc antagonizes ethylene signaling by activating ABA2/GIN1 and other abscisic acid (ABA) biosynthesis and signaling genes, which requires Glc and ABA synergistically. Analyses of aba2/gin1 null mutants define dual functions of endogenous ABA in inhibiting the postgermination developmental switch modulated by distinct Glc and osmotic signals and in promoting organ and body size and fertility in the absence of severe stress. SDR1 is sufficient for the multistep conversion of plastid- and carotenoid-derived xanthoxin to abscisic aldehyde in the cytosol. The surprisingly restricted spatial and temporal expression of SDR1 suggests the dynamic mobilization of ABA precursors and/or ABA.
机译:Glc具有激素样功能,并通过植物中大多数未知的机制控制许多重要过程。我们在这里报告了葡萄糖克隆INSENSITIVE1(GIN1)和ABSCISIC ACID DEFICIENT2(ABA2)的分子克隆,该分子编码一种独特的拟南芥短链脱氢酶/还原酶(SDR1),其功能是营养信号与植物激素生物合成之间的分子联系。 SDR1与参与哺乳动物类维生素A和类固醇激素生物合成以及玉米性别确定的SDR超家族成员有关。 Glc通过激活ABA2 / GIN1和其他脱落酸(ABA)生物合成和信号传导基因来拮抗乙烯信号传导,这需要Glc和ABA协同作用。 aba2 / gin1 null突变体的分析定义了内源ABA的双重功能,即在没有严重压力的情况下抑制由独特的Glc和渗透信号调节的发芽后发育开关,并促进器官和身体大小以及繁殖力。 SDR1足以将质体和类胡萝卜素的黄体素多步转化为胞质溶胶中的脱落醛。 SDR1的空间和时间表达受到惊人的限制,表明ABA前体和/或ABA的动态动员。

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