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Acquired Resistance to Mefenoxam in Sensitive Isolates of Phytophthora infestans

机译:致病疫霉敏感株中对甲虫灵的获得性耐药

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The systemic fungicide mefenoxam has been important in the control of late blight disease caused by Phytophthora infestans. This phenylamide fungicide has a negative effect on the synthesis of ribosomal RNA; however, the genetic basis for inherited field resistance is still not completely clear. We recently observed that a sensitive isolate became tolerant after a single passage on mefenoxam-containing medium. Further analyses revealed that all sensitive isolates tested (in three diverse genotypes) acquired this resistance equally quickly. In contrast, isolates that were "resistant" to mefenoxam in the initial assessment (stably resistant) did not increase in resistance upon further exposure. However, there appeared to be a cost associated with acquired resistance in the initially sensitive isolates, in that isolates with acquired resistance grew more slowly on mefenoxam-free medium than did the same isolates that had never been exposed to mefenoxam. The acquired resistance of the sensitive isolates declined slightly with subsequent culturing on medium free of mefenoxam. To investigate the mechanism of acquired resistance, we employed strand-specific RNA sequencing. Many differentially expressed genes were genotype specific, but one set of genes was differentially expressed in all genotypes. Among these were several genes (a phospholipase "Pi-PLD-like-3,"two ATP-binding cassette superfamily [ABC] transporters, and a mannitol dehydrogenase) that were up-regulated and whose function might contribute to a resistance phenotype.
机译:全身性杀真菌剂甲灭沙星在控制由疫霉疫霉引起的晚疫病方面具有重要作用。这种苯酰胺类杀菌剂对核糖体RNA的合成有负面影响;然而,遗传的田间抗性的遗传基础仍不完全清楚。我们最近观察到,敏感的分离物在含有甲芬沙星的培养基上单次通过后变得可以耐受。进一步的分析表明,测试的所有敏感分离株(三种不同的基因型)都同样快速地获得了这种抗性。相反,在初始评估中对甲芬沙星“耐药”的菌株(稳定耐药)在进一步暴露后其耐药性并未增加。然而,在最初敏感的分离株中似乎存在与获得性耐药相关的成本,因为具有耐药性的分离株在无甲福沙星的培养基上生长的速度比从未接触过甲霜灵的相同菌株要慢。随后在不含甲氧沙星的培养基上进行培养,敏感菌株的获得性耐药性略有下降。为了研究获得性抗性的机制,我们采用了链特异性RNA测序。许多差异表达的基因是基因型特异性的,但一组基因在所有基因型中差异表达。其中有几个基因(上调的磷脂酶“ Pi-PLD-like-3”,两个ATP结合盒超家族[ABC]转运蛋白和甘露醇脱氢酶)被上调,其功能可能有助于抵抗表型。

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