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Eburicol 14 alpha-demethylase gene (CYP51) polymorphism and speciation in Botrytis cinerea

机译:灰葡萄孢中Eburicol 14α-脱甲基酶基因(CYP51)的多态性和物种形成

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摘要

Botrytis cinerea (anamorph of Botryotinia fuckeliana) is a filamentous ascomycete that causes grey mould especially on grapevine. Based on the presence or the absence of two transposable elements (Boty and Flipper) two sibling sympatric populations named transposa and vacuma have been described. Among the vacuma population, some strains (designated HydR1) were found to be resistant to fenhexamid (a sterol C-4 demethylase inhibitor) and to show an increased sensitivity to 14alpha-demethylase inhibitors (DMIs). In order to assess whether or not mutations at the target gene level (CYP51) could underlie increased sensitivity to DMIs in HydR 1 strains, we cloned the CYP51 gene and determined its DNA sequence in various B. cinerea strains. The gene was highly polymorphic, with mutations detected at 58 positions in the 35 strains analysed. The polymorphisms did not discriminate between transposa and vacuma strains, but did distinguish between HydR1 and non-HydR1 ones. Two expressed mutations were present in all HydR1 strains, namely phenylalanine to leucine at position 15 of the inferred protein, and serine to asparagine at position 105. These data, combined with the existence of morphological differences and somatic incompatibility between HydR1 and non-HydR1 strains, suggest that these two groups comprise distinct genetic entities.
机译:灰葡萄孢(Botryotinia fuckeliana的变形)是一种丝状的子囊菌,尤其在葡萄树上引起灰霉病。基于两个转座因子(Boty和Flipper)的存在或不存在,描述了两个同胞同胞异种,分别称为转座和真空。在真空人群中,发现某些菌株(称为HydR1)对fenhexamid(一种固醇C-4脱甲基酶抑制剂)具有抗性,并显示出对14α-脱甲基酶抑制剂(DMI)的敏感性增加。为了评估目标基因水平(CYP51)的突变是否可能是对HydR 1菌株对DMI敏感性增加的基础,我们克隆了CYP51基因并确定了其在各种灰葡萄孢菌中的DNA序列。该基因高度多态,在分析的35个菌株中的58个位置检测到突变。多态性不能区分转座和真空菌株,但可以区分HydR1和非HydR1。在所有HydR1菌株中均存在两个表达的突变,即在推测的蛋白质的15位上为苯丙氨酸至亮氨酸,在105位上为丝氨酸至天冬酰胺。 ,表明这两组包括不同的遗传实体。

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