Monitoring of Benzimidazole Resistance in Botrytis cinerea Isolates from Strawberry in Korea and Development of Detection Method for Benzimidazole Resistance

Geonwoo Kim, Doeun Son, Sung-Kook Choi, Haifeng Liu, Youngju Nam, H. Sang
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Abstract

Botrytis cinerea is a major fungal plant pathogen that causes gray mold disease in strawberries, leading to a decrease in strawberry yield. While benzimidazole is widely used as a fungicide for controlling this disease, the increasing prevalence of resistant populations to this fungicide undermines its effectiveness. To investigate benzimidazole resistant B. cinerea in South Korea, 78 strains were isolated from strawberries grown in 78 different farms in 2022, and their EC50 values for benzimidazole were examined. As a result, 64 strains exhibited resistance to benzimidazole, and experimental tests using detached strawberry leaves and the plants in a greenhouse confirmed the reduced efficacy of benzimidazole to control these strains. The benzimidazole resistant strains identified in this study possessed two types of mutations, E198A or E198V, in the TUB2 gene. To detect these mutations, TaqMan probes were designed, enabling rapid identification of benzimidazole resistant B. cinerea in strawberry and tomato farms. This study utilizes TaqMan real-time polymerase chain reaction analysis to swiftly identify benzimidazole resistant B. cinerea, thereby offering the possibility of effective disease management by identifying optimum locations and time of application.
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韩国草莓灰霉病菌分离株苯并咪唑抗药性监测及苯并咪唑抗药性检测方法的开发
灰霉菌(Botrytis cinerea)是引起草莓灰霉病的主要植物真菌病原体,导致草莓产量下降。虽然苯并咪唑被广泛用作控制这种疾病的杀菌剂,但越来越多的种群对这种杀菌剂产生抗药性,破坏了其有效性。为调查韩国对苯并咪唑耐药的葡萄球菌,于2022年从78个不同农场种植的草莓中分离出78株菌株,测定了它们对苯并咪唑的EC50值。结果显示,64株菌株对苯并咪唑具有抗性,并且利用草莓离体叶片和温室植物进行的实验试验证实,苯并咪唑对这些菌株的控制效果有所降低。本研究鉴定的苯并咪唑耐药菌株在TUB2基因上具有E198A或E198V两种突变类型。为了检测这些突变,设计了TaqMan探针,可以快速鉴定草莓和番茄农场的苯并咪唑抗性番茄芽孢杆菌。本研究利用TaqMan实时聚合酶链反应分析快速鉴定出耐苯并咪唑的灰绿杆菌,从而通过确定最佳施药地点和时间,为有效的疾病管理提供可能。
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