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作 者:吴益东[1] 杨亦桦[1] 陈进[1] 沈晋良[1]
机构地区:[1]南京农业大学植保系农业部病虫监测与治理重点开放实验室
出 处:《南京农业大学学报》1997年第4期40-43,共4页Journal of Nanjing Agricultural University
基 金:国家自然科学基金
摘 要:测定了氰戊菊酯和顺式氰戊菊酯对不同棉铃虫品系3龄幼虫的毒力。结果表明,两者对敏感品系的LD50值相差8.7倍,而对一系列抗性品系两者LD50值相差24.3~172.1倍;不同棉铃虫品系对氰戊菊酯和顺式氰戊菊酯的抗性水平也存在显著差异,对氰戊菊酯的抗性为81.8~2142.8倍,对顺式氰戊菊酯的抗性为23.8~164.6倍。用室内选育的山东阳谷S6抗性品系进行测定,结果显示,增效醚对氰戊菊酯和顺式氰戊菊酯的增效比分别为119.3和4.3,说明棉铃虫对两者的氧化代谢抗性机制差异很大。氰戊菊酯和顺式氰戊菊酯对棉铃虫的毒力以及棉铃虫对两种药剂的抗性水平并不是简单的4倍关系,氰戊菊酯中大量无效异构体的存在可能有利于氧化代谢抗性机制的演化。Resistance levels between fenvalerate and esfenvalerate in nine strains of Helicoverpa armigera Hübner were compared. There was only 8.7fold difference between the toxicity of these two insecticides in the susceptible strain, but 24.3 to 172.1fold difference in resistant strains. The resistance level to these two insecticides also differed significantly, with 81.8fold to 2 142.8fold resistance to fenvalerate and 23.8fold to 164.6fold resistance to esfenvalerate. The synergism ratios of PBO to fenvalerate and esfenvalerate in resistant YGS6 strain were 119.3 and 4.3 respectively. It is suggested that the relationship of toxicity between fenvalerate and esfenvalerate is not simply fourfold, and inefficient isomers of fenvalerate may favor the evolution of oxidative resistance mechanism to fenvalerate.
分 类 号:S435.622.9[农业科学—农业昆虫与害虫防治] S481.4[农业科学—植物保护]
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