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The Arabidopsis dwarf1 Mutant Is Defective in the Conversion of 24-Methylenecholesterol to Campesterol in Brassinosteroid Biosynthesis

机译:拟南芥dwarf1突变体是有缺陷的。 油菜甾醇中的24-甲基胆固醇转化为菜油甾醇 生物合成

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摘要

Since the isolation and characterization of dwarf1-1 (dwf1-1) from a T-DNA insertion mutant population, phenotypically similar mutants, including deetiolated2 (det2), constitutive photomorphogenesis and dwarfism (cpd), brassinosteroid insensitive1 (bri1), and dwf4, have been reported to be defective in either the biosynthesis or the perception of brassinosteroids. We present further characterization of dwf1-1 and additional dwf1 alleles. Feeding tests with brassinosteroid-biosynthetic intermediates revealed that dwf1 can be rescued by 22α-hydroxycampesterol and downstream intermediates in the brassinosteroid pathway. Analysis of the endogenous levels of brassinosteroid intermediates showed that 24-methylenecholesterol in dwf1 accumulates to 12 times the level of the wild type, whereas the level of campesterol is greatly diminished, indicating that the defective step is in C-24 reduction. Furthermore, the deduced amino acid sequence of DWF1 shows significant similarity to a flavin adenine dinucleotide-binding domain conserved in various oxidoreductases, suggesting an enzymatic role for DWF1. In support of this, 7 of 10 dwf1 mutations directly affected the flavin adenine dinucleotide-binding domain. Our molecular characterization of dwf1 alleles, together with our biochemical data, suggest that the biosynthetic defect in dwf1 results in reduced synthesis of bioactive brassinosteroids, causing dwarfism.
机译:由于从T-DNA插入突变体群体中分离并鉴定了dwarf1-1(dwf1-1),因此在表型上相似的突变体,包括deetiolated2(det2),组成型光形态和矮化(cpd),油菜素甾体不敏感1(bri1)和dwf4,据报道,在油菜素类固醇的生物合成或感知方面均存在缺陷。我们提出了dwf1-1和其他dwf1等位基因的进一步表征。用油菜素固醇生物合成中间体进行饲喂试验表明,dwf1可通过22α-羟基菜油酸酯和油菜素固醇途径中的下游中间体来拯救。对油菜素甾体中间体的内源性水平的分析表明,dwf1中的24-亚甲基胆固醇积累到了野生型水平的12倍,而菜油甾醇的水平大大降低,表明该缺陷步骤在C-24中 减少。此外,推导的DWF1氨基酸序列显示 与黄素腺嘌呤二核苷酸结合域显着相似 在各种氧化还原酶中均保守,提示 DWF1。为此,在10个dwf1突变中有7个 直接影响黄素腺嘌呤二核苷酸结合域。我们的 dwf1等位基因的分子表征 根据我们的生化数据,表明 dwf1导致生物活性物质合成减少 油菜素类固醇,引起侏儒症。

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