某些杀虫剂对实验室和田间棉叶虫幼虫和卵期的毒性比较

Gihan Aly
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摘要

棉花叶虫(CLW)对主要杀虫剂种类均有抗性(鳞翅目:夜蛾科)。本研究旨在监测从Abou- Homos, El-Behira政府采集的田间菌株对某些杀虫剂的抗性水平,并与实验室菌株进行比较。此外,还测定了配制的杀虫剂对实验室和田间CLW卵团的杀卵活性。测定两菌株的谷胱甘肽S转移酶(GST)和总酯酶活性。结果表明,田间品系2龄幼虫对氯氰菊酯、毒死蜱和甲氧虫腈均表现出不同程度的抗性,抗性比分别为12.7、48.0和13.8;田间品系2龄幼虫对氯虫腈和氟脲的抗性比分别为4.6和5.0。4龄幼虫对氯氰菊酯呈高抗性(120.8),毒死蜱呈中等抗性(19.0)。另一方面,田间菌株4龄幼虫对氯虫腈、甲氧虫酰肼和氟脲的耐受性为3.3。在杀卵和残留毒性方面,氯氰菊酯、毒死蜱、氯虫腈和氯氟脲按推荐现场剂量处理后,实验室品系卵和新生儿的死亡率分别为95.3、98.9%、93.3和96.8%。相同处理对田间品系虫卵质量的处理效果分别为75.6、70.0、85.2和91.6%。另一方面,甲氧虫酰肼对两株新生儿的杀卵毒性和残留毒性无显著差异。与实验室菌株相比,田间菌株具有较高的GST和酯酶活性。因此,抗药性监测是制定抗药性管理方案的第一步。
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COMPARATIVE TOXICITY OF CERTAIN INSECTICIDES AGAINST LARVAE AND EGG STAGES OF COTTON LEAFWORM LABORATORY AND FIELD STRAINS
Resistance to major insecticide classes was diagnosed in the cotton leafworm (CLW) Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae). This study was carried out to monitor the resistance levels in field strain collected from Abou- Homos, El-Behira government to some insecticides in comparison with laboratory strain. In addition, ovicidal activity of the formulated tested insecticides against laboratory and field strain of CLW egg masses was determined. The activities of glutathione S transferases (GST) and total esterases were determined in both strains. The results revealed that 2 nd instar larvae of the field strain exhibited different levels of resistance to cypermethrin, chlorpyrifos, and methoxfenozide with resistance ratios (RR) 12.7, 48.0, and 13.8, respectively, while 2 nd instar larvae of field strain showed tolerance ratios 4.6 and 5.0 to chlorantraniliprole and chlorfluazuron, respectively. Fourth instar larvae exhibited high resistance levels to cypermethrin (120.8) and moderate resistance to chlorpyrifos (19.0). On the other hand, 4 th instar larvae of field strain showed tolerance ratios to chlorantraniliprole methoxfenozide and chlorfluazuron (3.3). Concerning the ovicidal and residual toxicity, cypermethrin, chlorpyrifos, chlorantraniliprole and chlorfluazuron at the recommended field rate achieved 95.3, 98.9, 93.3 and 96.8% mortality of treated eggs and neonates of the laboratory strain, respectively. The same treatments achieved 75.6, 70.0, 85.2 and 91.6%, respectively, for the egg masses of field strain. On the other hand, there is no significant difference between the ovicidal and residual toxicity of methoxfenozide against neonates of both strains. The field strain exerted elevated GST and esterases activity compared to the laboratory one. Therefore, monitoring of insecticide resistance is the first step for the resistance management programs.
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