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首页> 外文期刊>Plant Biotechnology Journal >Functional analysis of soybean genes involved in flavonoid biosynthesis by virus-induced gene silencing
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Functional analysis of soybean genes involved in flavonoid biosynthesis by virus-induced gene silencing

机译:病毒诱导的基因沉默中涉及类黄酮生物合成的大豆基因的功能分析

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Virus-induced gene silencing (VIGS) is a powerful tool for functional analysis of genes in plants. A wide-host-range VIGS vector, which was developed based on the Cucumber mosaic virus (CMV), was tested for its ability to silence endogenous genes involved in flavonoid biosynthesis in soybean. Symptomless infection was established using a pseudorecombinant virus, which enabled detection of specific changes in metabolite content by VIGS. It has been demonstrated that the yellow seed coat phenotype of various cultivated soybean lines that lack anthocyanin pigmentation is induced by natural degradation of chalcone synthase (CHS) mRNA. When soybean plants with brown seed coats were infected with a virus that contains the CHS gene sequence, the colour of the seed coats changed to yellow, which indicates that the naturally occurring RNA silencing is reproduced by VIGS. In addition, CHS VIGS consequently led to a decrease in isoflavone content in seeds. VIGS was also tested on the putative flavonoid 3'-hydroxylase (F3'H) gene in the pathway. This experiment resulted in a decrease in the content of quercetin relative to kaempferol in the upper leaves after viral infection, which suggests that the putative gene actually encodes the F3'H protein. In both experiments, a marked decrease in the target mRNA and accumulation of short interfering RNAs were detected, indicating that sequence-specific mRNA degradation was induced. The present report is a successful demonstration of the application of VIGS for genes involved in flavonoid biosynthesis in plants; the CMV-based VIGS system provides an efficient tool for functional analysis of soybean genes.
机译:病毒诱导的基因沉默(Vigs)是植物中基因功能分析的强大工具。基于黄瓜马赛克病毒(CMV)开发的广泛主持人范围Vigs载体用于其沉默在大豆中沉默于类黄酮生物合成的内源基因的能力。使用伪组合病毒建立了症状感染,这使得能够通过Vigs检测代谢物含量的特异性变化。已经证明,通过螯合酶(CHS)mRNA的天然降解诱导缺乏花青素色素沉着的各种栽培大豆线的黄色种子涂层表型。当用含有CHS基因序列的病毒感染棕色种子涂层的大豆植物时,种子涂层的颜色变为黄色,这表明天然存在的RNA沉默是由Vigs再现的。此外,CHS Vigs因此导致种子中异黄酮含量降低。在途径中的推定黄酮3'-羟化酶(F3'H)基因上也测试了VIGS。该实验导致病毒感染后上叶中槲皮素相对于kaempferol的含量降低,这表明推定基因实际上编码F3'H蛋白。在两个实验中,检测到靶mRNA的显着降低和短干扰RNA的积累,表明诱导序列特异性mRNA降解。本报告是成功示范Vigs在植物中参与类黄酮生物合成的基因的应用;基于CMV的VIGS系统提供了一种有效的大豆基因功能分析工具。

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