Mosquito, Microbiology and Nanotechnology Research Units, Parasitology Laboratory, Department of Zoology, The University of Burdwan, Burdwan, West Bengal, 713104, India.
BMC Res Notes. 2024 Jan 2;17(1):6. doi: 10.1186/s13104-023-06663-x.
Mosquitoes are notorious insects that transmit a wide range of infectious diseases, including zika, malaria, chikungunya, filariasis, and dengue. The overuse and incorrect application of synthetic pesticides to control mosquitoes has resulted in resistance development and environmental contamination, both of which have had a negative impact on human health. To address this issue, the larvicidal and pupicidal potential of acetone extract from Casearia tomentosa fruits was investigated. The extract was evaluated in a lab setting against all larval instars and pupa of Culex quinquefasciatus and Aedes albopictus, as well as against third instar larvae in a semi-field condition. Purified compounds through TLC were also tested against 3rd instar larvae of both mosquito and non-target organisms. The FT-IR and GC-MS analyses were used to characterise the extract. Morphological aberration caused by the acetone extract was observed using FESEM. The anal gills and respiratory siphon of both mosquitoes showed significant deformation from their normal state. 100 ppm was found to cause 100% larval mortality at 24 h of exposure in case of Cx. quinquefasciatus and at 72 h of exposure in Ae. albopictus larvae. After 72 h of exposure under in vitro conditions, the extract demonstrated considerable larvicidal activity with LC values of 38.33 and 47.56 against 3rd instar larvae of Culex quinquefasciatus and Aedes albopictus, respectively. The acetone extract can be considered as a highly effective mosquito larvicidal agent that is safe for the environment.
蚊子是臭名昭著的昆虫,它们传播范围广泛的传染病,包括寨卡病毒、疟疾、基孔肯雅热、丝虫病和登革热。为了控制蚊子,过度使用和错误应用合成农药导致了抗药性的发展和环境污染,这两者都对人类健康产生了负面影响。为了解决这个问题,研究了野扇花果实丙酮提取物的杀幼虫和杀蛹活性。该提取物在实验室条件下对所有幼虫龄期和蛹期的致倦库蚊和白纹伊蚊以及半野外条件下的三龄幼虫进行了评估。通过 TLC 分离的纯化合物也针对两种蚊子和非靶标生物的三龄幼虫进行了测试。使用 FT-IR 和 GC-MS 分析对提取物进行了特征描述。使用 FESEM 观察到丙酮提取物引起的形态异常。两种蚊子的肛门鳃和呼吸吸管都显示出明显的变形,脱离正常状态。在致倦库蚊中,暴露 24 小时时 100ppm 可导致 100%的幼虫死亡,而在白纹伊蚊幼虫中,暴露 72 小时时 100ppm 可导致 100%的幼虫死亡。在体外条件下暴露 72 小时后,提取物对三龄幼虫表现出相当大的杀幼虫活性,LC 值分别为 38.33 和 47.56,对致倦库蚊和白纹伊蚊三龄幼虫分别有效。丙酮提取物可被视为一种高效、安全的环境友好型蚊子幼虫杀虫剂。