Influence of temperature on the efficiency of Commiphora molmol and Acetylsalicylic acid against Culex pipiens (Diptera: Culicidae)

IF 0.1 Q4 ENVIRONMENTAL SCIENCES Catrina-The International Journal of Environmental Sciences Pub Date : 2023-03-01 DOI:10.21608/cat.2023.295257
Faten Abo El-Dahab, M. Baz, Y. El-Sayed, Rasha Abdel Hameed, Abdel_Meguid Abla
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引用次数: 1

Abstract

The most important factor influencing the growth and survival of mosquito larvae is temperature. As a result, changes in the surrounding temperature may have an effect on the chemicals' toxicity to mosquitoes. The goal of the current study was to determine how temperature affected Culex pipiens' reactions to Commiphora molmol resin, Mirazid, crystalline (CASA), and acetylsalicylic acid in pharmaceutical form (PASA). Bioassay tests were carried out on the 3 rd instar larvae under laboratory conditions, and the LC 50 of each compound was determined. The LC 50 of the four compounds were used to study the temperature-toxicity relationship, while the LC 50 of Mirazid and (PASA), as the most toxic compounds, were used for further biochemical studies. Results indicated that, Mirazid was the most toxic compound, with LC 50 of 28.3 ppm followed by C. molmol resin with LC 50 of 41.6 ppm while the CASA was the least toxic compound with LC 50 of 799.7 ppm. The temperature has a considerable impact on Cx. pipiens larval susceptibility to the tested compounds. High temperature (36 ̊C) resulted in high mortality rate (72.88, 78.20, 58.8 and 62.12 % for of C. molmol resin, Mirazid, CASA and PASA, respectively. Moreover, there were significant changes in α-esterase, β–esterase and glutathione -S-transferase levels as well as the total protein content in the treated larvae due to the change in temperature. The efficacy of Mirazid and C. molmol resin under wide range of temperatures made these compounds suitable candidates for controlling Cx. pipiens .
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温度对灭蚊剂和乙酰水杨酸对淡库蚊杀灭效果的影响(双翅目:库蚊科)
影响蚊子幼虫生长和存活的最重要因素是温度。因此,周围温度的变化可能会影响化学物质对蚊子的毒性。本研究的目的是确定温度如何影响库蚊对樟脑树脂、米拉齐、结晶(CASA)和药物形式的乙酰水杨酸(PASA)的反应。在实验室条件下对3龄幼虫进行生物测定,测定各化合物的lc50。4种化合物的LC 50用于研究温度-毒性关系,而Mirazid和(PASA)作为毒性最大的化合物的LC 50用于进一步的生化研究。结果表明,Mirazid毒性最大,lc50为28.3 ppm,其次是C. molmol树脂,lc50为41.6 ppm, CASA毒性最小,lc50为799.7 ppm。温度对Cx有很大的影响。库蚊幼虫对所试化合物的敏感性。高温(36℃)下,C. molmol树脂、Mirazid、CASA和PASA的死亡率分别为72.88%、78.20%、58.8%和62.12%。此外,处理后的幼虫体内α-酯酶、β -酯酶和谷胱甘肽- s -转移酶水平以及总蛋白含量均因温度变化而发生显著变化。Mirazid和C. molmol树脂在较宽温度范围内的效果使它们成为控制Cx的合适候选化合物。侵害。
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