首页> 外文期刊>Journal of Applied Entomology >Fitness costs and morphological change of laboratory-selected thiamethoxam resistance in the B-type Bemisia tabaci (Hemiptera: Aleyrodidae)
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Fitness costs and morphological change of laboratory-selected thiamethoxam resistance in the B-type Bemisia tabaci (Hemiptera: Aleyrodidae)

机译:B型烟粉虱的实验室选择的噻虫嗪抗性的健身成本和形态变化

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摘要

Thiamethoxam has been used as a key insecticide to control the white-fly, B-type Bemisia tabaci, for several years in China with no known cases of resistance in field populations. To evaluate the risk of resistance, a field population was collected and resistant strains were developed by exposure to thiamethoxam in the laboratory. After selection for 36 generation, a strain with 60-fold resistance was successfully identified. Fitness analysis by constructing life tables, demonstrated that resistant B-type whiteflies had obvious fitness disadvantages in their development and reproduction. The fitness of resistant B-type whiteflies decreased dramatically, to only one-half that of the susceptible strain. Some changes in the morphological characteristics of the resistant strain were observed. The lengths of first, second and third instars of the resistant strain were significantly smaller than those of the susceptible strain, and the width of the first and the fourth instars were also significantly smaller than in the susceptible strain. Our results suggest that the B-type B. tabaci has the potential to develop high resistance to thiamethoxam, and that the resistance changed the morphology of the insects. The slow development of resistance and the lower fitness of resistant B. tabaci strains may result in a quick recovery of sensitivity when the population is no longer in contact with thiamethoxam in the field.
机译:噻虫嗪在中国几年来一直被用作控制粉虱,B型烟粉虱的关键杀虫剂,在野外种群中尚无抗药性案例。为了评估抗药性的风险,在实验室中收集了一个田间种群,并通过暴露于噻虫嗪产生了抗药性菌株。在选择36代后,成功鉴定出具有60倍抗性的菌株。通过构建生命表进行适应性分析,表明抗性B型粉虱在其发育和繁殖中具有明显的适应性劣势。抗性B型粉虱的适应性急剧下降,仅为易感菌株的一半。观察到抗性菌株的形态特征发生了一些变化。抗性菌株的第一,第二和第三龄期的长度显着小于易感菌株的长度,并且第一和第四龄期的宽度也显着小于易感菌株的宽度。我们的结果表明,B型烟粉虱可能具有对噻虫嗪的高抗性,并且这种抗性改变了昆虫的形态。当该种群不再与噻虫嗪接触时,耐药性的缓慢发展和耐药性的烟粉虱菌株的适应性较低,可能导致敏感性快速恢复。

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