苦楝杏仁油的植物化学成分及其对库蚊的杀幼、杀卵、驱避和酶活性研究

IF 0.8 4区 医学 Q4 PARASITOLOGY Tropical biomedicine Pub Date : 2022-12-01 DOI:10.47665/tb.39.4.008
R Khaldi, N Rehimi, R Kharoubi, N Soltani
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引用次数: 3

摘要

苦楝科植物苦楝的生物学特性是目前全球研究的热点。苦楝树的特点是其生长迅速,适应不同的温带,以及它的杀虫特性。所有这些都使我们想到利用它来生物控制不同阶段的蚊子。为此,我们旨在通过本研究评价苦楝提取物对淡库蚊的防效。具体而言,我们的研究重点是确定香梨杏仁油的化学成分,以及对库蚊的杀幼虫、杀卵和驱避活性,以及乙酰胆碱酯酶(AChE)和谷胱甘肽- s转移酶(GST)的活性。采用索氏提取法提取杏仁油,气相色谱-质谱联用(GC/MS)。所得收益率为35.17%。化学成分显示了多种植物成分的存在。共鉴定出7种化合物,主要为9,11-十八烯酸甲酯(E,E)-(79.32%)、9-十八烯酸甲酯(Z)-(13.24%)、十六烯酸甲酯(3.69%)。根据世界卫生组织建议的方案进行了杀幼虫生物测定,浓度根据暴露时间(24、48和72小时)在20至80毫克/升之间变化。杏仁油对四龄幼虫有明显的杀虫活性,LC25= 23.70 mg/L, LC50=35.49 mg/L, LC90=79.61 mg/L。结果还表明,该油具有杀卵活性,对卵的孵化有显著影响。LC25和LC50的孵化率分别为88.79%和72.40%,高于对照。此外,该油对成蚊有明显的驱避作用。此外,对LC50和LC90处理的幼虫进行的酶促测量显示,通过抑制AChE和诱导GST活性,分别显示出神经毒性活性和解毒系统的刺激。总的来说,我们的数据证明苦楝杏仁油可以被认为是一种有效的生物替代品,用于控制蚊子的合成杀虫剂。
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Phytochemical composition of almond oil from Melia azedarach L. and its larvicidal, ovicidal, repellent and enzyme activities in Culex pipiens L.

Melia azedarach L. (Meliaceae) is a botanical species with focal point of global research for its biological properties. The Melia azedarach tree is distinguished by its rapid growth, its adaptation to different temperate zones, as well as its insecticidal properties. All this made us think of exploiting it in biological control against different stages of mosquitoes. To this end, we aim, through the present work, to evaluate the effectiveness of Melia azedarach extracts against Culex pipiens mosquito. More specifically, our study focuses on determining the chemical composition of Melia almond oil, as well as the larvicidal, ovicidal and repellent activities on Culex pipiens L. mosquito as well as the activities of acetylcholinesterase (AChE) and glutathione-S-transferase (GST). Almond oil was extracted by a Soxhlet and subjected to gas chromatography-mass spectrometry (GC/MS). The yield was found to be 35.17%. The chemical composition revealed the presence of various phytoconstituents. A total of 7 compounds were identified, the main ones being 9,11-Octadecadienoic acid, methyl ester, (E,E)- (79.32%), 9-octadecenoic acid (Z)-, methyl ester (13.24%), hexadecanoic acid and methyl ester (3.69%). The larvicidal bioassays were performed according to the protocol recommended by the World Health Organization with concentrations varying from 20 to 80 mg/L depending on the exposure time (24, 48 and 72 hours). The almond oil exhibited remarkable larvicidal activity against fourth instar larvae and the lethal concentrations were determined (LC25= 23.70 mg/L, LC50=35.49 mg/L, LC90=79.61 mg/L). The results also showed that the oil caused an ovicidal activity with a significant effect on egg hatch. The recorded hatching percentages were respectively 88.79% and 72.40% for the LC25 and LC50, and this compared to the control series. Moreover, this oil exhibited significant repellency against adult mosquitoes. Furthermore, the enzymatic measurements performed on LC50 and LC90 treated larvae revealed a neurotoxic activity and a stimulation of the detoxification system as evidenced, respectively, by an inhibition of AChE and induction in GST activity. Overall, our data proved that Melia azedarach almond oil could be considered as a potent biorational alternative to synthetic insecticides for mosquito control.

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来源期刊
Tropical biomedicine
Tropical biomedicine 医学-寄生虫学
CiteScore
1.60
自引率
0.00%
发文量
63
审稿时长
6-12 weeks
期刊介绍: The Society publishes the Journal – Tropical Biomedicine, 4 issues yearly. It was first started in 1984. The journal is now abstracted / indexed by Medline, ISI Thompson, CAB International, Zoological Abstracts, SCOPUS. It is available free on the MSPTM website. Members may submit articles on Parasitology, Tropical Medicine and other related subjects for publication in the journal subject to scrutiny by referees. There is a charge of US$200 per manuscript. However, charges will be waived if the first author or corresponding author are members of MSPTM of at least three (3) years'' standing.
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