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首页> 外文期刊>Parasites Vectors >Neem oil increases the persistence of the entomopathogenic fungus Metarhizium anisopliae for the control of Aedes aegypti (Diptera: Culicidae) larvae
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Neem oil increases the persistence of the entomopathogenic fungus Metarhizium anisopliae for the control of Aedes aegypti (Diptera: Culicidae) larvae

机译:印em油增加了昆虫病原真菌Metarhizium anisopliae的持久性,可用于控制埃及伊蚊(Diptera:Culicidae)的幼虫。

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Abstract BackgroundThe entomopathogenic fungus Metarhizium anisopliae is a candidate for the integrated management of the disease vector mosquito Aedes aegypti . Metarhizium anisopliae is pathogenic and virulent against Ae. aegypti larvae; however, its half-life is short without employing adjuvants. Here, we investigated the use of neem oil to increase virulence and persistence of the fungus under laboratory and simulated field conditions.MethodsNeem was mixed with M. anisopliae and added to recipients. Larvae were then placed in recipients at 5-day intervals for up to 50?days. Survival rates were evaluated 7?days after exposing larvae to each treatment. The effect of neem on conidial germination following exposure to ultraviolet radiation was evaluated under laboratory conditions. Statistical tests were carried out using ANOVA and regression analysis.ResultsLaboratory bioassays showed that the fungus alone reduced survival to 30% when larvae were exposed to the treatment as soon as the suspension had been prepared (time zero). A mixture of fungus?+?neem resulted in 11% survival at time zero. The combination of fungus?+?neem significantly reduced larval survival rates even when suspensions had been maintained for up to 45?days before adding larvae. For simulated-field experiments 1% neem was used, even though this concentration is insecticidal, resulting in 20% survival at time zero. However, this toxic effect was?reduced over time. When used alone under simulated-field conditions the fungus rapidly lost virulence. The formulation fungus?+?neem effectively maintained fungal virulence, with larval survival rates significantly reduced for up to 45?days after preparation of the suspensions. The effective half-life of the fungus or neem when used separately was 6 and 13?days, respectively. The half-life of fungus formulated in 1% neem was 34?days. Conidia suspended in neem maintained high levels of germination even following a 2-h exposure to ultraviolet radiation.ConclusionsA combination of the entomopathogenic fungus M. anisopliae with neem oil effectively increases the half-life and virulence of the fungus when tested against Ae. aegypti larvae, even under simulated field conditions. Neem oil also protected the fungus from the damaging effects of ultraviolet radiation.
机译:摘要背景昆虫病原真菌小拟南芥是综合控制病媒蚊埃及伊蚊的一种候选药物。拟南芥(Anthrhizium anisopliae)具有致病性,对Ae有毒。埃及eg幼虫但是,不使用佐剂,其半衰期短。在这里,我们研究了使用印and油在实验室和模拟田间条件下提高真菌的毒性和持久性的方法。方法将印em与with桐(M. anisopliae)混合并添加到受体中。然后将幼虫每隔5天放置在接受者体内长达50天。将幼虫暴露于每种处理后7天评估存活率。在实验室条件下评估了印em对分生孢子萌发的影响。结果实验室生物测定表明,一旦制备了悬浮液(时间为零),当幼虫暴露于处理中时,仅真菌将存活率降低至30%。真菌+ +印em的混合物在零时存活率达11%。即使在添加幼虫之前将悬浮液维持长达45天,真菌+ +印em的组合也会显着降低幼虫的存活率。对于模拟场实验,使用了1%的印em,即使该浓度具有杀虫性,在零时仍可保持20%的存活率。但是,随着时间的流逝,这种毒性作用减弱了。当在模拟田间条件下单独使用时,真菌会迅速丧失毒性。混悬液中的真菌++印ne制剂有效地保持了真菌的毒力,幼虫的存活率显着降低了长达45天。单独使用时,真菌或印em的有效半衰期分别为6天和13天。用1%印em配制的真菌的半衰期为34天。悬浮在印em中的分生孢子即使在暴露于紫外线下2小时后仍能保持较高的发芽率。结论昆虫病原性真菌M. anisopliae与印combination油的组合可有效提高真菌的半衰期和对Ae的毒性。埃及simulated幼虫,即使在模拟田间条件下也是如此。印em油还保护真菌免受紫外线辐射的破坏作用。

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