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首页> 外文期刊>Egyptian Journal of Biological Pest Control >Impact of emamectin benzoate on nucleopolyhedrosis virus infectivity of Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae)
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Impact of emamectin benzoate on nucleopolyhedrosis virus infectivity of Spodoptera littoralis (Boisd.) (Lepidoptera: Noctuidae)

机译:苯并酸苯甲酸蛋白对Spodoptera Littoralis核细胞病毒感染性的影响(Lepidoptera:Noctuidae)

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Attempts based on increasing the efficacy of Baculovirus and/or reducing the application concentration of synthetic insecticides through integrated lepidopteran management are appreciated role for conserving the environment. Impact of the multiple nucleopolyhedrosis virus (SpliMNPV) with emamectin benzoate (Em) against the cotton leaf worm, Spodoptera littoralis, was examined to identify the effective strategy for applying both agents in the control program successfully. The LC50 and LC90 were drastically decreased from 1.9 × 106 and 1.0 × 1010 PIB/ml in SpliMNPV treatment to reach 8.87 × 101 and 1 × 104 PIB/ml, respectively in the SpliMNPV concentrations + Em LC25 treatment. This interaction was considered as potentiation. Larvicidal activity of Em was highly increased by Em concentrations + SpliMNPV LC25 treatment than the separately Em treatment; however, this interaction was considered as additive. Moreover, the mixture treatment (SpliMNPV LC99 + Em LC50) provided almost full protection of viral pathogenicity up to 48?h at natural exposure periods. Furthermore, the mixture treatment had a negative impact on the insect survival and reproduction of treated individuals. Results indicated that the virus infectivity was increased by a mixture treatment of SpliMNPV + Em in particular facing UV sunlight, which causes virus degradation as well as reduced the effective doses of Em. These findings suggest that this simultaneous treatment maybe an effective technique to be applied in S. littoralis control strategy.
机译:基于增加杆状病毒的功效和/或通过整合鳞翅目管理降低合成杀虫剂的应用浓度的尝试是易于保护环境的作用。研究了多种核细胞核化病毒(SPRIMNPV)对棉叶蠕虫(SPODOPTERA Littoralis的ZHODOPERA Littoralis的影响,以确定成功将两个代理应用于控制方案中的有效策略。 LC50和LC90在SplimNPV处理中从1.9×106和1.0×1010 pib / ml急剧下降,分别在SplimNPV浓度+ EM LC25处理中达到8.87×101和1×104 pib / ml。这种相互作用被认为是有力的。 EM浓度+ SPLIMNPV LC25的幼稚活性高度增加,比单独的EM治疗;然而,这种相互作用被认为是添加剂。此外,在自然暴露期下,混合物处理(SPRIMNPV LC99 + EM LC50)几乎完全保护病毒致病性高达48ΩH。此外,混合物治疗对治疗个体的昆虫存活和繁殖具有负面影响。结果表明,通过面向紫外线阳光的SplimNPV + EM的混合物处理增加了病毒感染性,这导致病毒降解以及减少了EM的有效剂量。这些研究结果表明,这种同时治疗可能是在S. Littoralis控制策略中应用的有效技术。

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