Chen Changjun, Wang Jianxin, Luo Qingquan, Yuan Shankui, Zhou Mingguo
College of Plant Protection, Nanjing Agricultural University, Nanjing, China.
Pest Manag Sci. 2007 Dec;63(12):1201-7. doi: 10.1002/ps.1449.
Carbendazim (MBC) has failed to control wheat scab, caused by Fusarium graminearum Schwabe, on the eastern coast of China in recent years after about 30 years of application.
MBC resistance was found to be common in pathogen populations on the eastern coast and along areas of the Yangtze River. EC(50) and minimum inhibitive concentration (MIC) values of MBC inhibiting mycelium growth of wild-type isolates were less than 0.9 and 1.4 microg mL(-1) respectively, while EC(50) values of resistant collections averaged 7.02 +/- 11.86 microg mL(-1). The slope of the MBC dosage-response curve (DRC) for resistant isolates of F. graminearum was flat: 1 < b < 2.8 for resistant isolates and 3.5 < b < 11 for sensitive isolates). Both field resistant and sensitive MBC strains shared similar temperature sensitivity, fitness and virulence on ears. Field resistant strains and UV-induced mutants showed positive cross-resistance to other benzimidazole derivatives and were mainly at intermediate MBC resistance level. Highly resistant field MBC strains rarely appeared, but only some of the highly resistant MBC UV mutants were insensitive to N-phenylaminecarbamates. No mutation in beta-tubulin was found in F. graminearum, in contrast to mutation in this tubulin which has led to MBC resistance in other plant pathogens.
MBC(R) isolates have high fitness and competition in field, conferred by a novel molecular mechanism.
多菌灵(MBC)在应用约30年后,近年来在中国东部沿海地区已无法有效防治由禾谷镰刀菌(Fusarium graminearum Schwabe)引起的小麦赤霉病。
发现MBC抗性在东部沿海地区及长江沿线的病原菌群体中普遍存在。MBC抑制野生型分离株菌丝生长的EC(50)值和最小抑菌浓度(MIC)值分别小于0.9和1.4 μg mL(-1),而抗性菌株群体的EC(50)值平均为7.02±11.86 μg mL(-1)。禾谷镰刀菌抗性分离株的MBC剂量反应曲线(DRC)斜率较平缓:抗性分离株的1 < b < 2.8,敏感分离株的3.5 < b < 11。田间抗性和敏感的MBC菌株在温度敏感性、适合度和对麦穗的毒力方面相似。田间抗性菌株和紫外线诱导的突变体对其他苯并咪唑衍生物表现出正交互抗性,且主要处于MBC中等抗性水平。高抗田间MBC菌株很少出现,但只有部分高抗MBC紫外线突变体对氨基甲酸酯类不敏感。与其他导致MBC抗性的植物病原菌中该微管蛋白发生突变不同,在禾谷镰刀菌中未发现β-微管蛋白发生突变。
MBC抗性分离株通过一种新的分子机制在田间具有高适合度和竞争力。