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首页> 外文期刊>Horticulture research. >Current understanding of grapevine defense mechanisms against the biotrophic fungus (Erysiphe necator), the causal agent of powdery mildew disease
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Current understanding of grapevine defense mechanisms against the biotrophic fungus (Erysiphe necator), the causal agent of powdery mildew disease

机译:当前对小白菜病病原体生物营养性真菌(Erysiphe necator )的葡萄防御机制的了解

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摘要

The most economically important disease of cultivated grapevines worldwide is powdery mildew (PM) caused by the ascomycete fungus Erysiphe necator . The majority of grapevine cultivars used for wine, table grape, and dried fruit production are derived from the Eurasian grape species Vitis vinifera because of its superior aroma and flavor characteristics. However, this species has little genetic resistance against E. necator meaning that grape production is highly dependent on the frequent use of fungicides. The integration of effective genetic resistance into cultivated grapevines would lead to significant financial and environmental benefits and represents a major challenge for viticultural industries and researchers worldwide. This review will outline the strategies being used to increase our understanding of the molecular basis of V. vinifera susceptibility to this fungal pathogen. It will summarize our current knowledge of different resistance loci/genes that have evolved in wild grapevine species to restrict PM infection and assess the potential application of these defense genes in the generation of PM-resistant grapevine germplasm. Finally, it addresses future research priorities which will be important in the rapid identification, evaluation, and deployment of new PM resistance genes which are capable of conferring effective and durable resistance in the vineyard.
机译:在全世界范围内,最经济的葡萄栽培病是白粉病(Erysiphe necator)引起的白粉病(PM)。用于酿酒,食用葡萄和干果生产的大多数葡萄品种都来自欧亚葡萄品种Vitis vinifera,因为它具有出色的香气和风味特征。但是,该物种对E. necator的遗传抗性很小,这意味着葡萄的生产高度依赖于杀真菌剂的频繁使用。将有效的遗传抗性整合到栽培的葡萄树中将带来重大的财务和环境效益,并且对全球的葡萄栽培产业和研究人员构成了重大挑战。这篇综述将概述用于提高我们对葡萄菌对这种真菌病原体敏感性的分子基础的理解的策略。它将总结我们目前在野生葡萄物种中进化出的不同抗性基因座/基因以限制PM感染的知识,并评估这些防御基因在抗PM葡萄种质中的潜在应用。最后,它解决了未来的研究重点,这对于快速鉴定,评估和部署能够在葡萄园中赋予有效和持久抗性的新的PM抗性基因至关重要。

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