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农业废弃物植物提取物的化学成分、生物功效及其作为致倦库蚊生物杀虫剂的潜力。

Chemical composition and bio-efficacy of agro-waste plant extracts and their potential as bioinsecticides against Culex pipiens mosquitoes.

作者信息

Baz Mohamed M, El-Tabakh Mohamed A M, Selim Abdelfattah, Alasmari Saeed M, Alkhaibari Abeer Mousa, Alruhaili Mohammed H, Gattan Hattan S, Abdelkhalek Heba F

机构信息

Entomology Department, Faculty of Science, Benha University, Benha 13518, Egypt.

Zoology Department, Faculty of Science, Al-Azhar University, Cairo, Egypt.

出版信息

Parasitol Int. 2025 Feb;104:102968. doi: 10.1016/j.parint.2024.102968. Epub 2024 Sep 11.

Abstract

Mosquitoes are considered one of the most lethal creatures on the planet and are responsible for millions of fatalities annually through the transmission of several diseases to humans. Green trash is commonly employed in agricultural fertilizer manufacturing and microbial bioprocesses for energy production. However, there is limited information available on the conversion of green waste into biocides. This study investigates the viability of utilizing green waste as a new biopesticide against Culex pipiens mosquito larvae. The current study found that plant extracts from Punica granatum (98.4 % mortality), Citrus sinensis (92 % mortality), Brassica oleracea (88 % mortality), Oryza sativa (81.6 % mortality), and Colocasia esculenta (53.6 % mortality) were very good at killing Cx. pipiens larvae 24 h post-treatment. The LC values were 314.43, 370.72, 465.59, 666.67, and 1798.03 ppm for P. granatum, C. sinensis, B. oleracea, O. sativa, and C. esculenta, respectively. All plant extracts, particularly P. granatum extract (14.93 and 41.87 U/g), showed a significant reduction in acid and alkaline phosphate activity. Additionally, pomegranate extract showed a significant decrease (90 %) in field larval density, with a stability of up to five days post-treatment. GC-MS results showed more chemical classes, such as terpenes, esters, fatty acids, alkanes, and phenolic compounds. HPLC analysis revealed that the analyzed extracts had a high concentration of phenolic and flavonoid components. Moreover, there are many variations among these plants in the amount of each compound. The docking interaction showed a simulation of the atomic-level interaction between a protein and a small molecule through the binding site of target proteins, explaining the most critical elements influencing the enzyme's activity or inhibitions. The study's findings showed that the various phytochemicals found in agro-waste plants had high larvicidal activity and provide a safe and efficient substitute to conventional pesticides for pest management, as well as a potential future in biotechnology.

摘要

蚊子被认为是地球上最致命的生物之一,每年通过向人类传播多种疾病导致数百万人死亡。绿色垃圾通常用于农业肥料制造和微生物生物能源生产过程。然而,关于将绿色垃圾转化为生物杀虫剂的信息有限。本研究调查了利用绿色垃圾作为一种新型生物杀虫剂来防治致倦库蚊幼虫的可行性。当前研究发现,石榴(死亡率98.4%)、甜橙(死亡率92%)、甘蓝(死亡率88%)、水稻(死亡率81.6%)和芋(死亡率53.6%)的植物提取物在处理后24小时对致倦库蚊幼虫的杀灭效果非常好。石榴、甜橙、甘蓝、水稻和芋的LC值分别为314.43、370.72、465.59、666.67和1798.03 ppm。所有植物提取物,特别是石榴提取物(14.93和41.87 U/g),显示出酸性和碱性磷酸酶活性显著降低。此外,石榴提取物使田间幼虫密度显著降低(90%),处理后稳定性高达五天。气相色谱-质谱联用(GC-MS)结果显示出更多的化学类别,如萜类、酯类、脂肪酸、烷烃和酚类化合物。高效液相色谱(HPLC)分析表明,所分析的提取物含有高浓度的酚类和黄酮类成分。此外,这些植物中每种化合物的含量存在许多差异。对接相互作用通过靶蛋白的结合位点展示了蛋白质与小分子之间原子水平相互作用的模拟,解释了影响酶活性或抑制作用的最关键因素。该研究结果表明,农业废弃物植物中发现的各种植物化学物质具有很高的杀幼虫活性,为害虫管理提供了一种安全有效的传统杀虫剂替代品,以及在生物技术领域的潜在未来应用。

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