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首页> 外文期刊>Journal of Experimental Botany >Expression pattern, genomic structure, and promoter analysis of the gene encoding stilbene synthase from Chinese wild Vitis pseudoreticulata
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Expression pattern, genomic structure, and promoter analysis of the gene encoding stilbene synthase from Chinese wild Vitis pseudoreticulata

机译:中国野生葡萄伪网红合成酶编码基因的表达模式,基因组结构和启动子分析

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The gene encoding stilbene synthase (STS) plays a central role in many biochemical and physiological actions, and its metabolite resveratrol possesses broad-spectrum resistance to pathogens, as well as diverse pharmacological properties, notably an anticancer effect. Here, we report the expression analysis of the gene encoding STS and its promoter function from a powdery mildew (PM)-resistant Chinese wild Vitis pseudoreticulata, and compare it with two PM-susceptible cultivated grapevines, Vitis vinifera cvs. Carignane and Thompson Seedless. We show an unusual expression pattern of STS in V. pseudoreticulata, which differs markedly from that of the cultivated species. Sequence comparisons reveal that the genomic DNA sequences encoding STS in the three grapevines are highly conserved, but a novel residue mutation within the key motif of STS is solely present in V. pseudoreticulata. Moreover, the STS promoter in V. pseudoreticulata displays a significantly different structure from that found in the two V. vinifera. The three promoter-driven GUS differential expression patterns in transformed tobacco plants induced with Alternaria alternata, methyl jasmonate, and wounding indicated that the structurally different STS promoter of V. pseudoreticulata is responsible for its specific regulatory function. We also demonstrate that the expression of STS genes from their native promoters are functional in transformed tobacco and retain pathogen inducibility. Importantly, the genomic DNA-2 of V. pseudoreticulata under its native promoter shows good induction and the maximum level of resveratrol content. These findings further our understanding of the regulation of STS expression in a resistant grapevine and provide a new pathogen-inducible promoter system for the genetic improvement of plant disease resistance.
机译:编码二苯乙烯合成酶(STS)的基因在许多生化和生理作用中起着核心作用,其代谢产物白藜芦醇对病原体具有广谱耐药性,并且具有多种药理特性,特别是抗癌作用。在这里,我们报告抗白粉病(PM)的中国野生葡萄假单胞菌编码STS及其启动子功能的基因的表达分析,并将其与两种易感PM的栽培葡萄Vitis vinifera cvs进行比较。 Carignane和Thompson无核。我们显示了V. pseudoreticulata中STS的一种异常表达模式,这与栽培物种有明显差异。序列比较显示,三个葡萄树中编码STS的基因组DNA序列是高度保守的,但是STS关键基序内的新残基突变仅存在于假单胞菌中。此外,伪网状葡萄中的STS启动子显示出与两个葡萄中发现的结构显着不同的结构。交替链格孢,茉莉酸甲酯和伤口诱导的转化烟草植物中三种启动子驱动的GUS差异表达模式表明假单胞菌的结构不同的STS启动子负责其特定的调节功能。我们还证明了STS基因从其天然启动子的表达在转化烟草中具有功能,并保留了病原体的可诱导性。重要的是,在其天然启动子下的假网脉菌的基因组DNA-2显示出良好的诱导作用和白藜芦醇含量的最大水平。这些发现进一步加深了我们对抗性葡萄中STS表达调控的理解,并为植物抗病性的遗传改良提供了一种新的病原体诱导型启动子系统。

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