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Comparative genomics of Fusarium oxysporum f. sp. melonis reveals the secreted protein recognized by the Fom-2 resistance gene in melon

机译:尖孢镰刀菌的比较基因组学。 sp。哈密​​瓜揭示了瓜中Fom-2抗性基因识别的分泌蛋白

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摘要

Development of resistant crops is the most effective way to control plant diseases to safeguard food and feed production. Disease resistance is commonly based on resistance genes, which generally mediate the recognition of small proteins secreted by invading pathogens. These proteins secreted by pathogens are called 'avirulence' proteins. Their identification is important for being able to assess the usefulness and durability of resistance genes in agricultural settings. We have used genome sequencing of a set of strains of the melon wilt fungus Fusarium oxysporum f. sp. melonis (Fom), bioinformatics-based genome comparison and genetic transformation of the fungus to identify AVRFOM2, the gene that encodes the avirulence protein recognized by the melon Fom-2 gene. Both an unbiased and a candidate gene approach identified a single candidate for the AVRFOM2 gene. Genetic complementation of AVRFOM2 in three different race 2 isolates resulted in resistance of Fom-2-harbouring melon cultivars. AvrFom2 is a small, secreted protein with two cysteine residues and weak similarity to secreted proteins of other fungi. The identification of AVRFOM2 will not only be helpful to select melon cultivars to avoid melon Fusarium wilt, but also to monitor how quickly a Fom population can adapt to deployment of Fom-2-containing cultivars in the field.
机译:发展抗性作物是控制植物病害以保障食品和饲料生产的最有效方法。疾病抗性通常基于抗性基因,该基因通常介导入侵病原体分泌的小蛋白的识别。病原体分泌的这些蛋白质称为“毒力”蛋白质。它们的鉴定对于能够评估农业环境中抗性基因的有用性和持久性很重要。我们已经使用了一套甜瓜枯萎镰刀菌f菌株的基因组测序。 sp。 melonis(Fom),基于生物信息学的基因组比较和真菌的遗传转化,以鉴定AVRFOM2,该基因编码由瓜Fom-2基因识别的无毒蛋白。无偏倚和候选基因方法都确定了AVRFOM2基因的单个候选物。三种不同的第2种分离株中AVRFOM2的遗传互补导致Fom-2携带的甜瓜品种产生抗性。 AvrFom2是一种小的分泌蛋白,带有两个半胱氨酸残基,与其他真菌的分泌蛋白相似性较弱。 AVRFOM2的鉴定不仅有助于选择避免甜瓜枯萎的甜瓜品种,而且有助于监测Fom种群能够多快地适应田间含Fom-2的品种的部署。

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