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Phytochemical genomics in Arabidopsis thaliana:A case study for functional identification of flavonoid biosynthesis genes

机译:拟南芥植物化学基因组学:以黄酮类生物合成基因功能鉴定为例

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摘要

The completion of the whole genome sequence of Arabidopsis thaliana has made it possible to explore the phytochemical genomics in this species by determining gene-to-metabolite correlation through the comprehensive analysis of metabolite accumulation and gene expression.In this study,flavonoid profiling of wild-type plants and T-DNA insertion mutants was analyzed using ultra-performance liquid chromatography (UPLC)/photodiode array detection (PDA)/electrospray ionization (ESI)/multiple-stage mass spectrometry (MSn).Detailed analysis of the metabolite changes in the mutants suggested the functions of genes that have been mutated.In silico coexpression analysis of genes involved in flavonoid metabolism in Arabidopsis was performed using a publicly available transcriptome database of DNA microarrays.We inferred a coexpression framework model of the genes involved in the pathways of flavonol,anthocyanin,and proanthocyanidin synthesis,suggesting specific functions and coregulation of the genes of pathway enzymes and transcription factors.The metabolic profiling of the omt1 mutant lacking a methyltransferase gene narrowed down by the coexpression analysis showed that AtOMTl (At5g54160)is involved not only in the production of lignins and sinapoyl esters but also in the methylation of flavonols forming isorhamnetin.These results suggest that the functional genomics approach by detailed target-metabolite profiling with transcriptome coexpression analysis provides an efficient way of identifying novel gene functions involved in plant metabolism.
机译:拟南芥全基因组序列的完成使通过综合分析代谢物的积累和基因表达来确定基因与代谢物的相关性,从而探索该物种的植物化学基因组学成为可能。使用超高效液相色谱(UPLC)/光电二极管阵列检测(PDA)/电喷雾电离(ESI)/多级质谱(MSn)分析类型的植物和T-DNA插入突变体。突变体表明了已突变基因的功能。利用公开可获取的DNA芯片转录组数据库,对拟南芥中类黄酮代谢相关基因进行了计算机共表达分析。我们推导了涉及黄酮醇途径的基因的共表达框架模型。 ,花色素苷和原花色素的合成,暗示了ge的特定功能和调控共表达分析缩小了缺少甲基转移酶基因的omt1突变体的代谢谱,表明AtOMT1(At5g54160)不仅参与了木质素和芥子酸酯的生产,还参与了黄酮醇的甲基化这些结果表明,通过详细的目标代谢物谱分析与转录组共表达分析的功能基因组学方法为鉴定参与植物代谢的新型基因功能提供了一种有效的方法。

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