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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Integrated Metabolomics and Transcriptomics Analyses Reveal the Molecular Mechanisms Underlying the Accumulation of Anthocyanins and Other Flavonoids in Cowpea Pod (Vigna unguiculata L.)
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Integrated Metabolomics and Transcriptomics Analyses Reveal the Molecular Mechanisms Underlying the Accumulation of Anthocyanins and Other Flavonoids in Cowpea Pod (Vigna unguiculata L.)

机译:综合的代谢组和转录组学分析揭示了豇豆荚中的花青素和其他黄酮的积累下的分子机制(Vigna Unguiculata L.)

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摘要

As an important vegetable crop of the legume family, cowpea (Vigna unguiculata L.) is grown widely for its tender pod with good taste and nutrition. The purple cowpea pods attract more attention mainly for the eye-catching color and health-promoting ingredients. Initially, large quantities of two major anthocyanins (delphinidin 3-O-glucoside and cyanidin 3-O-glucoside) and nine kinds of flavonoids (most are quercetin-based flavonol glycosides) were separated and identified from purple cowpea pod by ultra-high performance liquid chromatography coupled with quadrupole Orbitrap high-resolution mass spectrometry. To study them systematically, two representative cowpea cultivars with a drastic difference in anthocyanin accumulation were further analyzed by the integration of metabolomics and transcriptomics. A total of 56 differentially accumulated metabolites and 4142 differentially expressed genes were identified, respectively. On the basis of the comprehensive analysis of multiomic data, it was shown that VuMYB90-1, VuMYB90-2, VuMYB90-3, VuCPC, VuMYB4, and endogenous bHLH and WD40 proteins coordinately control anthocyanin and flavonoid accumulation via transcriptional regulation of structural genes in purple cowpea pod.
机译:作为豆科植物家族的重要蔬菜作物,豇豆(Vigna Unguiculata L.)被广泛种植,以良好的味道和营养。紫色豇豆豆荚主要引起醒目色彩和健康促进成分的更多关注。最初,分离大量两种主要花青素(Delphinidin 3-O-葡糖苷和Cyanidin 3-O-葡糖苷)和九种类黄酮(最多是槲皮素的黄酮苷糖苷),并通过超高性能从紫色豇豆荚中鉴定液相色谱法与四轴横梁高分辨率质谱偶联。为了系统地研究它们,通过组建和转录组织的整合进一步分析了两个具有激烈的花青素积累差异的两种代表性豇豆品种。共鉴定了总共56个差异累积的代谢物和4142个差异表达基因。在对多种数据的综合分析的基础上,显示VumyB90-1,VumyB90-2,VumyB90-3,Vucpc,Vumyb4和内源性BHLH和WD40蛋白通过结构基因的转录调节协调,可通过结构基因进行转录调节来控制花青素和黄酮类积累紫色豇豆荚。

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