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Stepwise accumulation of mutations in CesA3 in Phytophthora sojae results in increasing resistance to CAA fungicides

机译:在植物季氏植物中CESA3中突变的逐步积累导致对CAA杀菌剂的抗性增加

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摘要

Flumorph is a carboxylic acid amide (CAA) fungicide with high activity against oomycetes. However, evolution to CAAs from low resistance to high resistance has never been reported. This study investigated the basis of resistance evolution of flumorph in Phytophthora sojae. Total of 120 P. sojae isolates were collected and their sensitivity to flumorph was evaluated. Although no spontaneous resistance was found among the field isolates, adaptation on flumorph‐amended media resulted in the selection of five stable mutant types exhibiting varying degrees of resistance to CAAs. Type I, which exhibited the lowest resistance level, was obtained when the wild‐type isolate was exposed to a low concentration of flumorph, but no resistant mutants were obtained by direct exposure to higher concentrations. However, the more resistant types (Type II, III, IV and V) were obtained when Type I were exposed to higher concentrations of flumorph. Similar results were obtained when the entire screening process was repeated, which implied that evolution of resistance to flumorph in P. sojae could be a two‐step process, where high resistance phenotypes could develop gradually from low resistance ones. Further investigation into molecular mechanism strongly confirmed that evolution of isolates highly resistant to flumorph occurs in a stepwise process with Type I as intermediary, through accumulation of mutations in their target protein of CAAs (CesA3). Together, our findings indicate that application of low rates of flumorph in field could result in selection of low resistance Type I isolates, but that raising dosage to maintain comparable levels of control could elicit rapid evolution of more resistant Type II, III, IV and V isolates with stepwise accumulation of mutations in CesA3, which would render flumorph ineffective as a control method. Precautionary resistance management strategy should be implemented. The phenomenon described in the study could have broader biological significance.
机译:FLUMORPH是一种羧酸酰胺(CAA)杀菌剂,具有高活性对oomycetes。然而,从未报道从低抗高抗性的CAA的进化。本研究调查了植物植物血红素素抗性的抗性演化的基础。收集了总共120种SOJAE分离物,并评估其对FLUMOLPH的敏感性。尽管在野外分离物中没有发现自发性抗性,但是对杂种术修正的培养基的适应导致选择具有与CAAs不同程度的抗性的五种稳定突变体类型。当野生型分离物暴露于低浓度的烟道时,获得型I的I型型I,但通过直接暴露于较高浓度,不得获得抗性突变体。然而,当I型暴露于较高浓度的Flumorph时,获得更耐药类型(II型,III,IV和V)。当重复整个筛选过程,这暗示性的进化到氟吗啉中大豆疫霉可能是一个两步过程,其中高电阻表型可以由低电阻的人逐步发展,获得类似的结果。进一步调查分子机制的强烈证实,通过在CAAs(CESA3)的靶蛋白中的突变中,在逐步的方法中,在逐步的过程中,在逐步的过程中,在逐步的过程中,在逐步的过程中,在逐步的方法中,在其靶蛋白中的突变中的突变(CESA3)中的突变的积累发生,在逐步的方法中进行高度抗性的进化。我们的研究结果表明,在田间中的低速率的应用可能会导致低阻I型分离物的选择,但提高剂量以保持相当水平的控制可能引出更耐药II,III,IV和V的快速演变。分离在CESA3中逐步积聚的分离物,其将使鲁万夫无效作为对照方法。应实施预防性抵抗管理策略。研究中描述的现象可以具有更广泛的生物学意义。

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