利用昆虫病原真菌和万年青精油的组合防治埃及伊蚊幼虫

IF 3.7 2区 农林科学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biological Control Pub Date : 2024-05-02 DOI:10.1016/j.biocontrol.2024.105526
Iury Uzêda Rocha , Ricardo de Oliveira Barbosa Bitencourt , Aimée de Moraes Freitas , Haika Victória Sales Moreira , Kamila Leite de Amorim Magalhães , Bianca Augusto de Souza , Patrícia Silva Golo , Douglas Siqueira de Almeida Chaves , Vânia Rita Elias Pinheiro Bittencourt , Isabele da Costa Angelo
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引用次数: 0

摘要

在此,我们研究了Beauveria bassiana LCM S19和Metarhizium anisopliae LCM S01与Illicium verum精油(EO)结合使用对埃及伊蚊幼虫的效果。首先通过气相色谱法确定了精油化合物,主要化合物为(E)-anethole。随后,采用硅学分析预测了(E)-茴香醚的生物活性,发现了 89 个分子靶标,其中包括杀虫活性。接下来,我们研究了环氧乙烷对真菌活力和菌落生长的影响,结果表明环氧乙烷对真菌发育没有影响。接下来,我们研究了环氧乙烷对真菌活力和菌落生长的影响,结果表明环氧乙烷对真菌发育没有明显影响。随后,我们进行了个体评估,以确定幼虫对浓度为 40、60、80 和 100 ppm 的环氧乙烷的敏感性,以及对分生孢子浓度为 1 × 106、1 × 107 和 1 × 108 分生孢子/毫升的两种真菌分离物的敏感性。然后对幼虫的存活率进行为期七天的监测。为了进一步优化杀幼虫剂的潜力,如前所述,将浓度为 40 ppm 的环氧乙烷与分生孢子浓度为 1 × 106 分生孢子/毫升的两种分离物结合起来,对蚊子幼虫进行测试。M. anisopliae 和环氧乙烷的组合导致蚊子幼虫的存活率大幅下降,在七天的时间里只有 20% 的幼虫存活,而在纯 M. anisopliae 或环氧乙烷处理中观察到的存活率约为 50%。B. bassiana 无论是单独使用还是与环氧乙烷混合使用,幼虫存活率都降低了 50%。M. anisopliae 和环氧乙烷的组合对埃及蚁幼虫具有协同作用,而 B. bassiana 与环氧乙烷的组合则具有叠加作用。值得注意的是,这种组合仅在 3 天内就产生了效果,而纯真菌则需要 7 天才能产生类似的效果。这些发现强调了将伊维菌素精油与这两种真菌分离物结合使用来防治埃及蚁幼虫的巨大潜力。
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Exploiting the combination of entomopathogenic fungi and Illicium verum essential oil against Aedes aegypti larvae

Here, the effectiveness of Beauveria bassiana LCM S19 and Metarhizium anisopliae LCM S01, combined with Illicium verum essential oil (EO) against Aedes aegypti larvae was investigated. The EO compounds were first identified through gas chromatography, with the primary compound being (E)-anethole. Subsequently, in silico analysis was employed to predict the biological activity of (E)-anethole, revealing 89 molecular targets, which included insecticidal activity. Next the impact of EO on fungal viability and colony growth was examined and the EO had no effect on fungal development. Next, we investigated the influence of EO on fungal viability and colony growth, revealing that the EO had no discernible impact on fungal development. Following this, individual assessments were carried out to determine larval susceptibility to EO at concentrations of 40, 60, 80, and 100 ppm, as well as with both fungal isolates at conidial concentrations of 1 × 106, 1 × 107, and 1 × 108 conidia/mL. Larval survival was then monitored over a period of seven days. To further optimize the larvicidal potential, EO at a concentration of 40 ppm was combined with both isolates at a conidial concentration of 1 × 106 conidia/mL and tested against mosquito larvae, as described earlier. The combination of M. anisopliae and EO resulted in a substantial decrease, with only 20 % of larvae surviving over a seven-day period, in contrast to approximately 50 % survival observed in the pure M. anisopliae or EO treatments. B. bassiana, whether used alone or in combination with EO, exhibited a 50 % reduction in larval survival. The combination of M. anisopliae and EO exhibited a synergistic effect in targeting Ae. aegypti larvae, whereas B. bassiana, in conjunction with EO, had an additive effect. Notably, the combination achieved its impact in just 3 days, whereas the pure fungus required 7 days to yield similar results. These findings underscore the substantial potential of combining I. verum essential oil with both fungal isolates against Ae. aegypti larvae.

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来源期刊
Biological Control
Biological Control 生物-昆虫学
CiteScore
7.40
自引率
7.10%
发文量
220
审稿时长
63 days
期刊介绍: Biological control is an environmentally sound and effective means of reducing or mitigating pests and pest effects through the use of natural enemies. The aim of Biological Control is to promote this science and technology through publication of original research articles and reviews of research and theory. The journal devotes a section to reports on biotechnologies dealing with the elucidation and use of genes or gene products for the enhancement of biological control agents. The journal encompasses biological control of viral, microbial, nematode, insect, mite, weed, and vertebrate pests in agriculture, aquatic, forest, natural resource, stored product, and urban environments. Biological control of arthropod pests of human and domestic animals is also included. Ecological, molecular, and biotechnological approaches to the understanding of biological control are welcome.
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