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Metabolomic characterization of the possible involvement of a Cytochrome P450, CYP81F4, in the biosynthesis of indolic glucosinolate in Arabidopsis

机译:拟南芥中吲哚芥子油苷生物合成中细胞色素P450,CYP81F4可能参与的代谢组学表征

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We studied the biosynthetic role of a cytochrome P450, CYP81F4, in Arabidopsis . The CYP81F4 gene was found within a gene expression network containing the transcription factor gene MYB34/ATR1 involved in tryptophan metabolisms. Root metabolic profiles in null cyp81f4 mutant lines were analyzed using an in-house metabolomics scheme based on Fourier transform ion cyclotron resonance mass spectrometry. The cyp81f4 mutant plants exhibited a build-up of indole-3-yl-methyl glucosinolate with concomitant loss of 1-methoxy-indole-3-yl-methyl glucosinolate. A pathway prediction supported by a detailed glucosinolate analysis indicated that CYP81F4, together with an unidentified methyltransferase, is involved in the formation of the methoxy group in the indole ring to yield 1-methoxy-indole-3-yl-methyl glucosinolate in Arabidopsis roots. Current results suggest that 1-methoxy-indole-3-yl-methyl glucosinolate is produced by the activity of CYP81F4 in Arabidopsis roots.
机译:我们研究了拟南芥中细胞色素P450 CYP81F4的生物合成作用。 CYP81F4基因存在于一个基因表达网络中,该网络包含与色氨酸代谢有关的转录因子基因MYB34 / ATR1。使用基于傅立叶变换离子回旋共振质谱的内部代谢组学方案分析了无效cyp81f4突变株系中的根代谢谱。 cyp81f4突变植物表现出吲哚-3-基-甲基芥子油苷的积累,同时损失了1-甲氧基-吲哚-3-基-甲基芥子油苷。详细的芥子油苷分析支持的途径预测表明,CYP81F4与未知的甲基转移酶一起参与吲哚环中甲氧基的形成,从而在拟南芥根中产生1-甲氧基-吲哚-3-基-甲基芥子油苷。目前的结果表明1-甲氧基吲哚-3-基-甲基芥子油苷是由CYP81F4在拟南芥根中的活性产生的。

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