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首页> 外文期刊>Nature Communications >MFS transporter from Botrytis cinerea provides tolerance to glucosinolate-breakdown products and is required for pathogenicity
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MFS transporter from Botrytis cinerea provides tolerance to glucosinolate-breakdown products and is required for pathogenicity

机译:来自Botrytis Cinerea的MFS转运蛋白为胰岛颗粒产品提供耐受性,并且是致病性所必需的

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Glucosinolates accumulate mainly in cruciferous plants and their hydrolysis-derived products play important roles in plant resistance against pathogens. The pathogen Botrytis cinerea has variable sensitivity to glucosinolates, but the mechanisms by which it responds to them are mostly unknown. Exposure of B. cinerea to glucosinolate-breakdown products induces expression of the Major Facilitator Superfamily transporter, mfsG, which functions in fungitoxic compound efflux. Inoculation of B. cinerea on wild-type Arabidopsis thaliana plants induces mfsG expression to higher levels than on glucosinolate-deficient A. thaliana mutants. A B. cinerea strain lacking functional mfsG transporter is deficient in efflux ability. It accumulates more isothiocyanates (ITCs) and is therefore more sensitive to this compound in vitro; it is also less virulent to glucosinolates-containing plants. Moreover, mfsG mediates ITC efflux in Saccharomyces cerevisiae cells, thereby conferring tolerance to ITCs in the yeast. These findings suggest that mfsG transporter is a virulence factor that increases tolerance to glucosinolates.
机译:氨基糖苷主要积聚在十字花体植物中,并且它们的水解衍生的产品在植物抵抗病原体中起重要作用。病原体Botrytis Cinerea对葡萄糖苷具有可变的敏感性,而是它对它们响应的机制主要是未知的。 B. Cinerea至葡萄糖苷脱落产品的曝光诱导主要促进剂超家族转运蛋白,MFSG的表达,其在菌丝复合物中起作用。在野生型拟南芥上接种B. cinerea植物诱导MFSG表达比葡萄糖苷缺乏A.本地突变体的表达更高。缺乏功能性MFSG转运蛋白的Cinerea菌株缺乏流出能力。它累积更多的异硫氰酸酯(ITC),因此对该化合物体外更敏感;对含硫代葡萄糖苷植物的毒性也较低。此外,MFSG在酿酒酵母细胞中介导ITC流出,从而赋予酵母中ITC的耐受性。这些发现表明MFSG转运蛋白是增加对葡萄糖苷的耐受性的毒力因子。

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