Rothamsted Research, Harpenden, Hertfordshire, UK.
Pest Manag Sci. 2010 Nov;66(11):1186-90. doi: 10.1002/ps.1989.
Although cross-resistance between compounds in the same insecticide group is a frequently observed phenomenon, cross-resistance between groups that differ in structural and functional characteristics can be extremely unpredictable. In the case of controlling the whitefly, Bemisia tabaci Gennadius, neonicotinoids and the pyridine azomethine antifeedant pymetrozine represent independent lines of discovery that should be suited for alternation to avoid prolonged selection for the same resistance mechanism. Reports of an association between responses to neonicotinoids and pymetrozine were investigated by resistance profiling of seven B. tabaci strains and complementary reciprocal selection experiments.
All strains demonstrated a consistent correlation between responses to three neonicotinoid compounds: thiamethoxam, imidacloprid and acetamiprid. Responses to neonicotinoids for six field strains clearly correlated with responses to pymetrozine. Reciprocal selection experiments confirmed an unexpected case of intergroup cross-resistance. A seventh strain exhibited a so far unique phenotype of strong resistance to pymetrozine but full susceptibility to neonicotinoids. Selection experiments confirmed that in this strain the mechanism of pymetrozine resistance is specific and has no implications for neonicotinoids.
Cross-resistance between neonicotinoids and pymetrozine in B. tabaci probably reflects the overexpression of a cytochrome-P450-dependent monooxygenase capable of metabolising both types of compound in spite of their apparent structural dissimilarity. Given the predominance of this mechanism in B. tabaci, both can contribute to resistance management but should be placed within the same treatment 'window'.
虽然同一杀虫剂组内化合物之间的交叉抗性是一种常见现象,但结构和功能特征不同的组之间的交叉抗性可能是极其不可预测的。在控制烟粉虱,Bemisia tabaci Gennadius 的情况下,新烟碱类和吡啶氮杂甲脒类拒食剂吡虫嗪代表了独立的发现线,应该适合交替使用,以避免对同一抗性机制的长期选择。通过对 7 个 B. tabaci 菌株的抗药性分析和互补的正反选择实验,调查了对新烟碱类和吡虫嗪的反应之间的关联报告。
所有菌株对三种新烟碱类化合物:噻虫嗪、氯吡虫胺和乙酰甲胺磷的反应都表现出一致的相关性。六种田间菌株对新烟碱类的反应与对吡虫嗪的反应明显相关。正反选择实验证实了一个出乎意料的组间交叉抗性的案例。第七个菌株表现出对吡虫嗪强烈抗性但对新烟碱类完全敏感的独特表型。选择实验证实,在这个菌株中,吡虫嗪抗性的机制是特异性的,对新烟碱类没有影响。
B. tabaci 中新烟碱类和吡虫嗪之间的交叉抗性可能反映了一种细胞色素-P450 依赖性单加氧酶的过度表达,这种酶能够代谢这两种类型的化合物,尽管它们的结构明显不同。鉴于这种机制在 B. tabaci 中的优势,两者都可以有助于抗药性管理,但应放在相同的治疗“窗口”内。