大蒜(Allium sativum)乙醇提取物植物化学物质对斯里兰卡白纹伊蚊和库蚊影响的比较评估

W.R.G.W.N. Rajapaksha, W.A.P. P. De Silva, T. Weeraratne
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引用次数: 0

摘要

植物萃取物为管理包括蚊子在内的害虫提供了替代合成杀虫剂的可持续且环保的方法。这项研究的重点是乙醇大蒜提取物作为白纹伊蚊和库蚊幼虫杀虫剂在斯里兰卡的潜力。将第三龄至第四龄早期幼虫暴露于六种浓度的乙醇大蒜提取物(从百万分之 5 到 250 不等)中 72 小时,以评估药效。实验与对照组重复四次,监测每天的死亡率。通过回归分析确定了在 24、48 和 72 小时内消灭 50%(LC50)和 90%(LC90)幼虫所需的致死浓度。为评估大蒜提取物中的化合物,进行了植物化学分析。大蒜浓度与白纹伊蚊和 Cu. quinquefasciatus 幼虫在每个暴露期的死亡率呈正相关。白纹伊蚊幼虫在 24、48 和 72 小时内的 LC50 值分别为 45.5 ppm、28.0 ppm 和 14.4 ppm,相应的 LC90 值分别为 140.0 ppm、91.0 ppm 和 42.9 ppm。对于 Cu. quinquefasciatus 幼虫,在相同的暴露期,LC50 值分别为 26.3 ppm、9.4 ppm 和 4.4 ppm,LC90 值分别为 169.8 ppm、30.7 ppm 和 17.6 ppm。植物化学分析显示,大蒜乙醇提取物中的黄酮类化合物、皂苷和还原糖在提取一年后仍得以保留。这项研究强调了大蒜提取物对蚊子幼虫的毒性,其半数致死浓度低于 50 ppm。这些发现凸显了大蒜提取物作为有效杀幼虫剂打击蚊虫媒介的潜力,有助于制定环境友好型害虫管理战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative evaluation of the effect of phytochemicals of garlic (Allium sativum) ethanolic extract against Aedes albopictus and Culex quinquefasciatus mosquitoes in Sri Lanka
Botanical extracts offer sustainable and eco-friendly alternatives to synthetic insecticides for managing insect pests, including mosquitoes. This research focuses on the potential of ethanolic garlic extract as a larvicide against Aedes albopictus and Culex quinquefasciatus mosquito species in Sri Lanka. Third to early fourth instar larvae were exposed to six concentrations of ethanolic garlic extract (ranging from 5 to 250 ppm) for 72 hours to assess efficacy. The experiment, repeated four times with controls, monitored daily mortalities. Lethal concentrations required to eliminate 50% (LC50) and 90% (LC90) of larvae at 24, 48, and 72 hours were determined through regression analysis. A phytochemical analysis was conducted to assess the compounds present in the garlic extract. Positive correlations were observed between garlic concentration and mortality percentages during each exposure period for both Ae. albopictus and Cu. quinquefasciatus larvae. LC50 values for Ae. albopictus larvae were 45.5 ppm, 28.0 ppm, and 14.4 ppm at 24, 48, and 72 hours respectively, with corresponding LC90 values of 140.0 ppm, 91.0 ppm, and 42.9 ppm. For Cu. quinquefasciatus larvae, LC50 values were 26.3 ppm, 9.4 ppm, and 4.4 ppm, while LC90 values were 169.8 ppm, 30.7 ppm, and 17.6 ppm for the same exposure periods. The garlic ethanolic extract retained its flavonoids, saponins, and reducing sugars even after a year of extraction, as revealed by phytochemical analysis. The study underscores the potent toxicity of garlic extract against mosquito larvae, with LC50 values below 50 ppm. These findings highlight the potential of garlic extracts as effective larvicides for combating mosquito vectors, contributing to environmentally friendly pest management strategies.
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