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A Double Mutant for the CYP85A1 and CYP85A2 Genes of Arabidopsis Exhibits a Brassinosteroid Dwarf Phenotype

机译:CYP85A1和CYP85A2基因的双突变体展示了芸苔类固醇淋巴细胞型

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摘要

Brassinosteroid (BR)-6-oxidases mediate the bridge reactions that connect the late and early C-6 oxidation pathways by converting 6-deoxoBR to 6-oxoBRs. Two similar genes of Arabidopsis, CYP85A1 (At5g38970) and CYP85A2 (At3g30180), are proposed to encode BR-6-oxidases based on findings that heterologously expressed genes mediate BR-6-oxidation reactions in yeast. However, genetic evidence that both genes are critically involved in the BR-6-oxida-tion step in Arabidopsis has been limited. Here, we show that a double mutant for the two genes displays dwarfism similar to that of typical BR biosynthesis-deficient mutants, suggesting that they are the major BR-6-oxidases in Arabidopsis. Examination of endogenous BR levels and metabolism monitoring testsusing this double mutant revealed a great reduction in the levels of 6-oxoBRs, e.g., TY and CS, due to a lack in the conversion reactions from 6-deoxoCS to CS, and from 6-deoxoTY to TY. Surprisingly, the double mutant accumulated a significant amount of6-oxocampestanol, suggesting that the upstream C-6 oxidation of campestanol to 6-oxocampestanol is not catalyzed by the two BR-6-oxi-dases in Arabidopsis, rather, by another enzyme yet to be discovered.
机译:芸苔类固醇(BR)-6-氧化酶通过转化6-Deoxobr至6-氧比转化为6-Oxobrs来介导连接晚期和早期的C-6氧化途径的桥接反应。提出了基于异源表达基因在酵母中介导BR-6-氧化反应的结果编码BR-6-氧化酶来编码BR-6-氧化酶的两种类似拟南芥基因。然而,遗传证据称,两个基因批判性地参与拟南芥的BR-6-氧化阶段。在这里,我们表明两个基因的双突变体显示与典型的Br生物合成型突变体类似的矮主义,表明它们是拟南芥中的主要BR-6-氧化酶。内源性Br水平和代谢监测测试的测试术语揭示了6-氧比,例如Ty和Cs的水平的大大降低,因为缺乏来自6-脱颂的转化反应,以及6-脱氧ty。令人惊讶的是,双突变体累积了大量的6-氧代醇,表明拟南芥中的两个BR-6-oxi-dia碱基,而不是另一种酶尚未催化CAMPESTANOL的上游C-6氧化至6-氧代溶液。被发现。

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