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首页> 外文期刊>Molecular Plant-Microbe Interactions >The ABC Transporter BcatrB Affects the Sensitivity of Botrytis cinerea to the Phytoalexin Resveratrol and the Fungicide Fenpiclonil
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The ABC Transporter BcatrB Affects the Sensitivity of Botrytis cinerea to the Phytoalexin Resveratrol and the Fungicide Fenpiclonil

机译:ABC转运蛋白BcatrB影响灰葡萄孢对植物抗毒素白藜芦醇和杀菌剂芬比克隆尼的敏感性

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During pathogenesis, fungal pathogens are exposed to a variety of fungitoxic compounds. This may be particularly relevant to Botrytis cinerea , a plant pathogen that has a broad host range and, consequently, is subjected to exposure to many plant defense compounds. In practice, the pathogen is controlled with fungicides belonging to different chemical groups. ATP-binding cassette (ABC) transporters might provide protection against plant defense compounds and fungicides by ATP-driven efflux mechanisms. To test this hypothesis, we cloned BcatrB , an ABC transporter-encoding gene from B. cinerea . This gene encodes a 1,439 amino acid protein with nucleotide binding fold (NBF) and transmembrane (TM) domains in a [NBF-TM6]2 topology. The amino acid sequence has 31 to 67% identity with ABC transporters from various fungi. The expression of BcatrB is up regulated by treatment of B. cinerea germlings with the grapevine phytoalexin resveratrol and the fungicide fenpiclonil. BcatrB replacement mutants are not affected in saprophytic growth on different media but are more sensitive to resveratrol and fenpiclonil than the parental isolate. Furthermore, virulence of ΔBcatrB mutants on grapevine leaves was slightly reduced. These results indicate that BcatrB is a determinant in sensitivity of B. cinerea to plant defense compounds and fungicides.
机译:在发病机理中,真菌病原体暴露于多种真菌毒性化合物。这可能与灰葡萄孢(Botrytis cinerea)特别相关,灰葡萄孢是一种具有广泛宿主范围的植物病原体,因此容易接触许多植物防御化合物。实际上,病原体是由属于不同化学基团的杀真菌剂控制的。 ATP结合盒(ABC)转运蛋白可能通过ATP驱动的外排机制为植物防御化合物和杀真菌剂提供保护。为了验证这一假设,我们克隆了BcatrB,这是一种来自灰质芽孢杆菌的ABC转运蛋白编码基因。该基因编码具有[NBF-TM 6 ] 2 拓扑结构的核苷酸结合倍数(NBF)和跨膜(TM)域的1,439个氨基酸蛋白。氨基酸序列与来自各种真菌的ABC转运蛋白具有31%到67%的同一性。 BcatrB的表达通过用葡萄植物抗毒素白藜芦醇和杀菌剂芬比克隆尼处理灰葡萄芽孢杆菌的幼苗而得到上调。 BcatrB替代突变体在不同培养基上的腐生生长中不受影响,但对白藜芦醇和芬比克隆尼的敏感性比亲代分离株高。此外,葡萄叶片上的ΔBcatrB突变体的毒力略有降低。这些结果表明,BcatrB是灰质芽孢杆菌对植物防御化合物和杀真菌剂敏感性的决定因素。

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