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首页> 外文期刊>Fungal Genetics and Biology >A new transformant selection system for the gray mold fungus Botrytis cinerea based on the expression of fenhexamid-insensitive ERG27 variants
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A new transformant selection system for the gray mold fungus Botrytis cinerea based on the expression of fenhexamid-insensitive ERG27 variants

机译:基于芬汉透视型ERG27变体表达的灰霉菌真菌肉豆蔻粉末的新型转化体选择系统

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摘要

The gray mold fungus Botrytis cinerea features a wide host range and causes severe economic losses, making it an important object for molecular research. Thus far, genetic modification of the fungus mainly is relied on two selection systems (nourseothricin and hygromycin), while other selection systems hold significant disadvantages. To broaden the spectrum of available molecular tools, a new selection system based on the cheap and widely used fungicide fenhexamid (hydroxyanilide group) was established. Fenhexamid specifically targets the 3-ketoreductase ERG27 from the ergosterol biosynthesis pathway. We generated a set of expression vectors suitable for deletion or expression of genes of interest (GOIs) in B. cinerea based on fenhexamid-insensitive ERG27 variants. Expression of BcERG27(F4121) and Fusarium fujikuroi ERG27 in the sensitive B. cinerea strain B05.10 causes resistance towards fenhexamid (fenR) and allows for the selection of transformants and their genetic purification. A modified split-marker approach facilitates the site-specific integration and expression of GOls at the bcerg27 locus. No undesired secondary phenotypes regarding virulence, stress responses, the formation of reproductive structures or conidial germination were observed in strains expressing fenhexamid-insensitive ERG27 variants. Thus, the fenR system represents a third reliable selection system for genetic modifications of fenhexamid-sensitive B. cinerea strains. (C) 2017 Elsevier Inc. All rights reserved.
机译:灰霉菌菌菌菌特征宽阔的宿主范围,并导致严重的经济损失,使其成为分子研究的重要对象。到目前为止,真菌的遗传修饰主要依赖于两种选择系统(缠绕素和潮霉素),而其他选择系统则保持显着的缺点。为了拓宽可用分子工具的光谱,建立了基于廉价和广泛使用的杀菌剂芬山酰胺(羟基硅酰胺组)的新选择系统。芬汉特异性地靶向Ergosterol生物合成途径的3- ketoOnaryase Erg27。我们生成了一组适用于基于芬汉透视的ERG27变体的B. ineerea的缺失或表达感兴趣基因(GOIS)的表达载体。 BCERG27(F4121)和富升B型富升B.CONEREA菌株B05.10中的表达对芬山体(FENR)的抗性,并允许选择转化体及其遗传纯化。修改过的分流标记方法有助于BCERG27基因座的特定于网站的集成和表达。在表达芬河磷酸不敏感ERG27变体的菌株中,观察到毒力,应激反应,繁殖结构的形成或分析萌发的不期望的次要表型。因此,FENR系统代表了芬汉化敏感性B.COEREA菌株的遗传修饰的第三可靠选择系统。 (c)2017年Elsevier Inc.保留所有权利。

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