首页> 外文期刊>Journal of Agricultural and Food Chemistry >Profiling of Resveratrol Oligomers, Important Stress Metabolites, Accumulating in the Leaves of Hybrid Vitis vinifera (Merzling x Teroldego) Genotypes Infected with Plasmopara viticola
【24h】

Profiling of Resveratrol Oligomers, Important Stress Metabolites, Accumulating in the Leaves of Hybrid Vitis vinifera (Merzling x Teroldego) Genotypes Infected with Plasmopara viticola

机译:白藜芦醇低聚物,重要的应力代谢物,感染了葡萄线粒体的杂交葡萄(Merzling x Teroldego)基因型叶片中积累的特征分析。

获取原文
获取原文并翻译 | 示例
       

摘要

In the Vitaceae, viniferins represent a relatively restricted group of trans-resveratrol oligomers with antifungal properties, thus enabling plants to cope with pathogen attack. The aim of this study was to perform isolation and structural characterization of the whole class of viniferins accumulating in the leaves of hybrid Vitis vinifera (Merzling x Teroldego) genotypes infected with Plasmopara viticola. Infected leaves of resistant plants were collected 6 days after infection, extracted with methanol, and prepurified by flash chromatography using ENV+ and Toyopearl HW 40S resins. Further fractionation using normal-phase preparative chromatography and then reversed-phase preparative chromatography allowed isolation of 14 peaks. The isolated compounds were identified using advanced mass spectrometry techniques and extensive one- and two-dimensional nuclear magnetic resonance measurements, UV, CD, optical properties, and molecular mechanic calculations. The results demonstrated the presence in infected leaves of seven dimers (six stilbenes and one stilbenoid), of which four were new in grapevine (ampelopsin D, quadrangularih A, E-ω-viniferin, and Z-ω-viniferin), four trimers (three stilbenes and one stilbenoid), of which two (Z-miyabenol C and E-cis-miyabenol C) were new in grapevine, three tetramer stilbenoids, all new in grapevine, isohopeaphenol, ampelopsin H, and a vaticanol C-like isomer. The isolation of a dimer deriving from the condensation of (+)-catechin with trans-caffeic acid also indicated that other preformed phenolics are structurally modified in tissues infected with P. viticola.
机译:在葡萄科中,葡萄素是具有抗真菌特性的相对受限的反式白藜芦醇低聚物,因此使植物能够应对病原体的侵害。这项研究的目的是对感染了葡萄绒单胞菌的酿酒葡萄(Merzling x Teroldego)基因型叶片中积累的整类酿酒素进行分离和结构表征。感染后第6天收集抗性植物的感染叶片,用甲醇萃取,然后使用ENV +和Toyopearl HW 40S树脂通过快速色谱法进行预纯化。使用正相制备色谱进一步分离,然后反相制备色谱分离出14个峰。使用先进的质谱技术以及广泛的一维和二维核磁共振测量,UV,CD,光学性质和分子力学计算,可以鉴定出分离出的化合物。结果表明,在受感染的叶片中存在7个二聚体(6个对映体和1个对映体),其中4个在葡萄树中是新的(两性霉素D,四倍体A,E-ω-viniferin和Z-ω-viniferin),四个三聚体(其中三个是甜菜碱,一个是甜菜碱,另一个是甜菜碱),其中两个(Z-宫本醇C和E-顺式-宫本醇C)在葡萄树中是新的,三个四聚体类Stilbenoids,在葡萄树中是新的,异丙基苯酚,两性霉素H和梵蒂冈C状的异构体。从(+)-儿茶素与反式咖啡酸缩合衍生的二聚体的分离还表明,其他预先形成的酚类化合物在被葡萄球菌感染的组织中进行了结构修饰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号