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刺槐种子源精油和刺槐豆荚源提取物对主要蚊媒的比较分析。

Comparative Analysis of Major Mosquito Vectors Response to Seed-Derived Essential Oil and Seed Pod-Derived Extract from Acacia nilotica.

机构信息

Molecular Entomology Laboratory, Department of Biotechnology, School of Biosciences, Periyar University, Salem, Tamil Nadu 636 011, India.

Division of Biopesticides and Environmental Toxicology, Sri Paramakalyani Centre for Excellence in Environmental Sciences, Manonmaniam Sundaranar University, Alwarkurichi, Tirunelveli, Tamil Nadu 627 412, India.

出版信息

Int J Environ Res Public Health. 2018 Feb 23;15(2):388. doi: 10.3390/ijerph15020388.

Abstract

Botanical metabolites are increasingly realized as potential replacements to chemical insecticides. In the present study, seed essential oil and seed pod solvent extracts were tested for bioefficacy against three important types of mosquitoes. Mortality was recorded 24 h post-treatment, while smoke toxicity of adult mosquitoes was recorded at 10 min intervals for 40 min. Seed pod powder was extracted with different solvents and hydrodistilled seed oil chemical constituents were determined by using Gas chromatography mass spectroscopy (GC-MS) -. Larvicidal and adulticidal efficacy of seed hydrodistilled essential oil and solvent extracts were tested against larval and adult mosquitoes. The seed hydrodistilled oil provided strong larvicidal activity against , (LC50 (lethal concentration that kills 50% of the exposed larvae) = 5.239, LC90 (lethal concentration that kills 90% of the exposed larvae) = 9.713 mg/L); , (LC50 = 3.174, LC90 = 11.739 mg/L); and , (LC50 = 4.112, LC90 = 12.325 mg/L). Smoke toxicities were 82% in , 90% in , and 80% mortality in adults, whereas 100% mortality was recorded for commercial mosquito coil. The GC-MS profile of seed essential oil from showed the presence of hexadecane (18.440%) and heptacosane (15.914%), which are the main and active compounds, and which may be involved in insecticidal activity. Overall findings suggest that the seed oil showed strong mosquitocidal activity against mosquito vectors and therefore may provide an ecofriendly replacement to chemical insecticides.

摘要

植物代谢产物正逐渐被视为替代化学杀虫剂的潜在物质。本研究对种子精油和豆荚溶剂提取物进行了生物功效测试,以评估其对三种重要蚊子的防治效果。处理后 24 小时记录死亡率,40 分钟内每 10 分钟记录一次成虫烟雾毒性。用不同溶剂提取豆荚粉末,采用气相色谱质谱联用技术(GC-MS)分析种子油的化学成分。测试了种子水蒸馏精油和溶剂提取物对幼虫和成虫蚊子的杀幼虫和杀成虫效果。种子水蒸馏油对 、 、 表现出很强的杀幼虫活性,LC50(杀死 50%暴露幼虫的致死浓度)分别为 5.239、LC90(杀死 90%暴露幼虫的致死浓度)分别为 9.713 mg/L;LC50 = 3.174、LC90 = 11.739 mg/L;LC50 = 4.112、LC90 = 12.325 mg/L。烟雾毒性对 为 82%,对 为 90%,对 成虫为 80%,而商用蚊香则记录到 100%的死亡率。种子精油的 GC-MS 图谱显示,存在十六烷(18.440%)和庚烷(15.914%),这两种物质是主要和活性化合物,可能参与了杀虫活性。总体研究结果表明,种子油对蚊子媒介表现出很强的杀蚊活性,因此可能为化学杀虫剂提供一种环保替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1deb/5858457/0a121baf67fb/ijerph-15-00388-g001.jpg

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