荔枝疫霉氟霉酸酯的抗性风险及靶蛋白PlVHA-a的抗性相关点突变

IF 5.8
Tan Dai, Jikun Yang, Shiping Hu, Chuang Zhao, Kang Yuan, Jianqiang Miao, Xili Liu
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引用次数: 0

摘要

荔枝是一种在世界范围内备受追捧的水果,由于荔枝霉病(主要由荔枝疫霉引起),荔枝面临着重大的产量挑战。氟吡唑内酯对荔枝霜枯病具有显著的抑制作用,可用于荔枝霜枯病的防治。虽然了解荔枝对氟哌啶酸的抗性至关重要,但对其风险和机制的研究仍然有限。本研究测定了125株荔枝假单胞菌对氟哌唑内酯的敏感性,平均EC50值为0.131±0.037 μg/mL。通过对杀菌剂的适应,获得了4个抗性因子超过600的抗性突变体,表明这些菌株具有较高的抗性水平。复合适应度指数分析表明,抗性突变体的生存适应度显著低于亲本菌株。交叉耐药试验显示,氟吡唑啉与其他不同作用方式的杀菌剂无交叉耐药。氟哌啶胺交叉耐药呈阳性。综合评价表明荔枝对氟哌啶酸产生耐药性的风险中等。通过基因测序分析,鉴定出耐药突变体PlVHA-aN771S和PlVHA-aN846S点突变。通过遗传转化和分子对接验证了这两个点突变对荔枝抗性的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The resistance risk of fluopicolide and resistance-associated point mutations in the target protein PlVHA-a in Phytophthora litchii.

The resistance risk of fluopicolide and resistance-associated point mutations in the target protein PlVHA-a in Phytophthora litchii.

The resistance risk of fluopicolide and resistance-associated point mutations in the target protein PlVHA-a in Phytophthora litchii.

The resistance risk of fluopicolide and resistance-associated point mutations in the target protein PlVHA-a in Phytophthora litchii.

Litchi, a fruit that is highly sought-after worldwide, faces significant yield challenges due to litchi downy blight, primarily caused by Phytophthora litchii. Fluopicolide has exhibited remarkable efficacy in inhibiting this pathogen and is utilized for the management of litchi downy blight. Although understanding the resistance of P. litchii to fluopicolide is critical, studies on its risk and mechanisms remain limited. In this study, we determined the sensitivity of 125 P. litchii isolates to fluopicolide, revealing an average EC50 value of 0.131 ± 0.037 μg/mL. Through fungicide adaptation, four resistant mutants were obtained with resistance factors exceeding 600, indicating that these strains exhibited high levels of resistance. A compound fitness index analysis demonstrated that the survival fitness of resistant mutants was significantly lower than that of their parental strains. Cross-resistance assays revealed no cross-resistance between fluopicolide and other fungicides with different modes of action. However, positive cross-resistance was observed with fluopimomide. A comprehensive evaluation suggested a moderate risk of P. litchii developing resistance to fluopicolide. PlVHA-aN771S and PlVHA-aN846S point mutations in resistant mutants were identified by gene sequencing analyses. These two point mutations were validated as contributors to resistance in P. litchii through genetic transformation and molecular docking.

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