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磁场对 Earias insulana(Boisd.)生物和生化参数测定的杀虫剂毒性的影响。

The Impact of Magnetic Field on Insecticide Toxicity Measured by Biological and Biochemical Parameters of Earias insulana (Boisd).

机构信息

Department of Bollworm, Plant Protection Research Institute, ARC, Giza, Egypt.

出版信息

Bioelectromagnetics. 2022 Sep;43(6):368-380. doi: 10.1002/bem.22418. Epub 2022 Aug 5.

DOI:10.1002/bem.22418
PMID:35930550
Abstract

This study illustrates the effect of magnetic field (MF) on the toxicity of two insecticides, emamectin benzoate (Emazoate 2.15% EC) and spinosad (SpinTor 24% SC), and determines their adverse effects on the bollworm (Earias insulana) through various biological and biochemical assays. The investigation indicated that exposure to the insecticides in a MF of 180 mT resulted in stronger toxicity, with LC values of 0.162, 1.211, and 1.770 ppm, respectively. In addition, the results showed that magnetized insecticides significantly increased in the duration of the total immature stages (larvae and/or pupae) 32.1 and 36.6 days, compared with 27.9 and 30.5 days, respectively, in the nonmagnetized insecticides, while untreated check was 21 days. Also, the magnetized insecticides reduced the percentage of adult emergence, and increased deformations in the larval and pupal stages. Furthermore, sex ratio was greatly affected by exposure to both insecticides in conjunction with the MF. Exposure of the larvae of E insulana to magnetized insecticides can bring about malfunction in some biochemical process and significantly decreased the invertase activity, and decreased the total protein and carbohydrates. In contrast, it can increase amylase compared with nonmagnetized insecticides and untreated controls. Results concluded that the two insecticides' MF affected growth, survival time, and biological and biochemical parameters of E. insulana. © 2022 Bioelectromagnetics Society.

摘要

这项研究说明了磁场 (MF) 对两种杀虫剂,甲氨基阿维菌素苯甲酸盐(Emazoate 2.15% EC)和多杀菌素(SpinTor 24% SC)的毒性的影响,并通过各种生物和生化测定确定了它们对棉铃虫(Earias insulana)的不良影响。研究表明,在 180 mT 的磁场中暴露于杀虫剂会导致更强的毒性,LC 值分别为 0.162、1.211 和 1.770 ppm。此外,结果表明,磁化杀虫剂显著增加了总未成熟阶段(幼虫和/或蛹)的持续时间,分别为 32.1 和 36.6 天,而未磁化杀虫剂分别为 27.9 和 30.5 天,未处理的对照为 21 天。此外,磁化杀虫剂降低了成虫出现的百分比,并增加了幼虫和蛹期的变形。此外,性比受到磁场和两种杀虫剂暴露的极大影响。棉铃虫幼虫暴露于磁化杀虫剂会导致一些生化过程出现故障,并显著降低转化酶活性,降低总蛋白和碳水化合物。相比之下,它可以增加淀粉酶与非磁化杀虫剂和未处理的对照相比。结果表明,这两种杀虫剂的 MF 影响了 E. insulana 的生长、存活时间以及生物和生化参数。

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