State Key Laboratory of Crop Stress Biology for Arid Areas, College of Plant Protection, Northwest A&F University, 3 Taicheng Road, Yangling 712100, Shaanxi, People's Republic of China.
Key Laboratory of Integrated Pest Management on Crops in Northwestern Loess Plateau of Ministry of Agriculture, College of Plant Protection, Northwest A&F University, 3 Taicheng Road, Yangling 712100, Shaanxi, People's Republic of China.
J Agric Food Chem. 2021 Apr 7;69(13):3827-3835. doi: 10.1021/acs.jafc.0c05119. Epub 2021 Mar 25.
Fluoxapiprolin is a new piperidinyl thiazole isoxazoline fungicide developed by Bayer Crop Science in 2012, but the sensitivity and resistance mechanism of fluoxapiprolin are unclear. In this study, the sensitivities of 130 isolates to fluoxapiprolin were determined, and a unimodal distribution was observed with a mean EC value of 0.00043 μg/mL. Nine stable fluoxapiprolin-resistant mutants were obtained by fungicide adaption. The fitness of mutants was similar to or lower than that of the corresponding parental isolate. Seven heterozygous point mutations in the target protein PcORP1 were found in these mutants. These point mutations were confirmed in PsORP1 of homologue positions using the CRISPR/Cas9 system. G770V and N835S+I877F do confer high fluoxapiprolin resistance (resistance factor, RF > 1000), and ΔN835, N767I, and N837T+S910C lead to low resistance (RF < 100). transformants containing L733W, S768F, S768Y, Δ818/F819, N837Y, N837F, P861H, L863W, and I877Y in PsORP1 were also associated with high fluoxapiprolin resistance (RF > 100). In conclusion, the resistance risk of to fluoxapiprolin is moderate, and multiple point mutations in PcORP1 could confer different resistance levels to fluoxapiprolin.
氟唑菌酰胺是拜耳作物科学公司于 2012 年开发的一种新型哌啶基噻唑并恶唑啉类杀菌剂,但氟唑菌酰胺的敏感性和抗性机制尚不清楚。本研究测定了 130 个分离物对氟唑菌酰胺的敏感性,观察到呈单峰分布,平均 EC 值为 0.00043μg/mL。通过杀菌剂适应获得了 9 个稳定的氟唑菌酰胺抗性突变体。突变体的适合度与相应亲本分离物相似或低于亲本分离物。在这些突变体中发现了靶标蛋白 PcORP1 中的 7 个杂合点突变。在同源位置使用 CRISPR/Cas9 系统证实了这些突变在 PsORP1 中的存在。G770V 和 N835S+I877F 确实赋予了对氟唑菌酰胺的高抗性(抗性系数,RF>1000),而ΔN835、N767I 和 N837T+S910C 导致低抗性(RF<100)。含有 L733W、S768F、S768Y、Δ818/F819、N837Y、N837F、P861H、L863W 和 I877Y 的 PsORP1 的转化体也与对氟唑菌酰胺的高抗性(RF>100)相关。综上所述,对氟唑菌酰胺的抗性风险为中等,PcORP1 中的多个点突变可赋予对氟唑菌酰胺不同的抗性水平。