首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Co-expression of VpROMT gene from Chinese wild Vitis pseudoreticulata with VpSTS in tobacco plants and its effects on the accumulation of pterostilbene
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Co-expression of VpROMT gene from Chinese wild Vitis pseudoreticulata with VpSTS in tobacco plants and its effects on the accumulation of pterostilbene

机译:中国野葡萄网状病毒VpROMT基因与VpSTS在烟草植物中的共表达及其对紫檀皮积累的影响

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摘要

Plant secondary metabolites, such as stilbenes, have fungicidal potential and have been found in several plant species. Stilbenes in grapevine, such as resveratrol and pterostilbene, have recently attracted much attention, they are not only helping the plant to fight against pathogen attack, but they are also being widely used as ingredients of fungicide, anti-inflammatory drugs, antioxidant, and anti-infective agents. However, resveratrol O-methyltransferase gene, related with the synthesis of pterostilbene from resveratrol, has not been characterized effectively from Chinese wild Vitis pseudoreticulata. In this study, a candidate of resveratrol O-methyltransferase gene designated as VpROMT was isolated from a powdery mildew-resistant Chinese wild V. pseudoreticulata 'Baihe-35-1', and characterization studies were performed. Expression studies showed that VpROMT was predominantly expressed in developing roots yet not found in the leaves, stems, nor tendrils when the plants are not challenged. Results of qRT-PCR showed that VpROMT was rapidly induced by Erysiphe necator in V. pseudoreticulata and by methyl-jasmonate, UV-irradiation in suspension culture cells of Vitis romanetii. The expression level varies in different tissues of grapevine, which MeJA and UV-C treatment significantly upregulated the expression of VpROMT gene while UV-B treatment failed to. Co-expression of VpROMT and grapevine stilbene synthase (VpSTS) gene leads to the accumulation of pterostilbene in leaves of tobacco (Nicotiana tabacum) indicating that VpROMT was able to catalyze the biosynthesis of pterostilbene from resveratrol in over-expression transgenic tobacco plants.
机译:植物次生代谢物,例如对苯二甲酸酯,具有杀菌潜力,并且已经在几种植物中发现。葡萄中的白藜芦醇,如白藜芦醇和紫檀萜,最近引起了广泛的关注,它们不仅帮助植物抵抗病原体的侵袭,而且还广泛用作杀菌剂,消炎药,抗氧化剂和抗氧化剂的成分。 -感染剂。然而,白藜芦醇的O-甲基转移酶基因与白藜芦醇合成蝶草烯有关,尚未从中国野生葡萄伪网中有效鉴定。在这项研究中,从白粉病抗性中国野生假单胞菌'Baihe-35-1'中分离出了白藜芦醇O-甲基转移酶基因候选物VpROMT,并进行了表征研究。表达研究表明,VpROMT主要在发育中的根中表达,但在不挑战植物的情况下,在叶,茎或卷须中均未发现。 qRT-PCR结果表明,VpROMT被拟南芥中的Erysiphe necator和罗马茉莉悬浮培养细胞中的茉莉酸甲酯,UV辐射快速诱导。在葡萄的不同组织中,表达水平各不相同,MeJA和UV-C处理显着上调了VpROMT基因的表达,而UV-B处理则没有。 VpROMT和葡萄二烯合酶(VpSTS)基因的共表达导致烟草(烟草)叶片中的蕨类植物积累,这表明VpROMT能够催化过表达转基因烟草植株中白藜芦醇的生物合成。

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