首页> 外文期刊>Journal of Plant Biology >Flavonoid Production Is Effectively Regulated by RNA1 Interference of Two Flavone Synthase Genes from Glycine max
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Flavonoid Production Is Effectively Regulated by RNA1 Interference of Two Flavone Synthase Genes from Glycine max

机译:类黄酮的生产受到大豆黄酮两个黄酮合酶基因RNA1干扰的有效调控。

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摘要

Flavonoids are a group of secondary metabolites found in many higher plants The multiple roles of their flavone subclass include protection against UV damage regulation of auxin transport and modulation of flower color In soybean (Glycine max) flavone synthase H (FNS II) is the key enzyme responsible for flavone biosynthesis Two FNS H genes from soybean cultivar Hefeng 47 were cloned according to basic local alignment search tool (BLAST) contexts using flavone synthase sequences reported in other species These were named GmFNSII 1 and GmFNSII 2 Sequence alignments showed that the cDNA of GmFNSII 1 was identical to that of CYP93B16 whereas GmFNSII 2 was clearly distinct Functional assays in yeast (Schizosaccharomyces pombe) suggested that these two enzymes could convert (2S) naringenin into apigenin The two GmFNSII genes had similar tissue specific expression patterns but GmFNSII 2 was significantly expressed in the roots after treatment with 0 4 M glucose This demonstrates that the gene plays an important role in the response to defense signals in soybean RNA interference mediated suppression of those GmFNSII genes effectively regulated flavone and isoflavone production in
机译:黄酮类化合物是在许多高等植物中发现的一组次级代谢产物。黄酮类化合物的多种作用包括防止紫外线损伤,调节植物生长素的运输和调节花的颜色。负责黄酮生物合成使用其他物种中报告的黄酮合酶序列,按照基本局部比对搜索工具(BLAST)的背景,从大豆品种合丰47的两个FNS H基因中克隆了这些基因,分别命名为GmFNSII 1和GmFNSII 2序列比对表明,GmFNSII的cDNA 1与CYP93B16相同,而GmFNSII 2明显不同酵母中的功能测定(Schizosaccharomyces pombe)表明这两种酶可以将(2S)柚皮素转化为芹菜素。这两个GmFNSII基因具有相似的组织特异性表达模式,但GmFNSII 2明显表达在用0 4 M葡萄糖处理后的根中e在大豆RNA干扰介导的GmFNSII基因的抑制中有效调控黄酮和异黄酮的产生中对防御信号的应答起重要作用。

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