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首页> 外文期刊>Applied Microbiology >Gray Mold Populations in German Strawberry Fields Are Resistant to Multiple Fungicides and Dominated by a Novel Clade Closely Related to Botrytis cinerea
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Gray Mold Populations in German Strawberry Fields Are Resistant to Multiple Fungicides and Dominated by a Novel Clade Closely Related to Botrytis cinerea

机译:德国草莓田中的灰霉菌种群对多种杀菌剂具有抗性,并以与灰葡萄孢菌密切相关的新型进化枝为主导

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The gray mold fungus Botrytis cinerea is a major threat to fruit and vegetable production. Strawberry fields usually receive several fungicide treatments against Botrytis per season. Gray mold isolates from several German strawberry-growing regions were analyzed to determine their sensitivity against botryticides. Fungicide resistance was commonly observed, with many isolates possessing resistance to multiple (up to six) fungicides. A stronger variant of the previously described multidrug resistance (MDR) phenotype MDR1, called MDR1h, was found to be widely distributed, conferring increased partial resistance to two important botryticides, cyprodinil and fludioxonil. A 3-bp deletion mutation in a transcription factor-encoding gene, mrr1 , was found to be correlated with MDR1h. All MDR1h isolates and the majority of isolates with resistance to multiple fungicides were found to be genetically distinct. Multiple-gene sequencing confirmed that they belong to a novel clade, called Botrytis group S, which is closely related to B. cinerea and the host-specific species B. fabae . Isolates of Botrytis group S genotypes were found to be widespread in all German strawberry-growing regions but almost absent from vineyards. Our data indicate a clear subdivision of gray mold populations, which are differentially distributed according to their host preference and adaptation to chemical treatments.
机译:灰霉菌灰葡萄孢是对水果和蔬菜生产的主要威胁。草莓园通常每个季节对葡萄孢属进行几种杀菌剂处理。分析了来自德国几个草莓生长地区的灰霉菌分离物,以确定它们对葡萄孢杀菌剂的敏感性。通常观察到对杀菌剂的抗性,许多分离株对多种(最多六种)杀真菌剂具有抗性。人们发现,先前描述的多药抗性(MDR)表型MDR1的一个更强的变体,称为MDR1h,被广泛分布,赋予了对两种重要的杀菌剂cyprodinil和fludioxonil的部分耐药性。发现转录因子编码基因mrr1中的3 bp缺失突变与MDR1h相关。发现所有MDR1h分离株以及对多种杀真菌剂具有抗性的大多数分离株在遗传上都是不同的。多基因测序证实,它们属于一个新的进化枝,称为Botrytis S组,与灰葡萄芽孢杆菌和寄主特有物种Fab。fabae密切相关。发现Botrytis S基因型的分离株在德国所有草莓种植地区均很普遍,但葡萄园中几乎没有。我们的数据表明灰霉菌种群有明显的细分,它们根据宿主的喜好和对化学处理的适应性而有差异地分布。

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