首页> 美国卫生研究院文献>Applied and Environmental Microbiology >A Fungal Insecticide Engineered for Fast Per Os Killing of Caterpillars Has High Field Efficacy and Safety in Full-Season Control of Cabbage Insect Pests
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A Fungal Insecticide Engineered for Fast Per Os Killing of Caterpillars Has High Field Efficacy and Safety in Full-Season Control of Cabbage Insect Pests

机译:一种专为每只毛虫快速OS杀死而设计的真菌杀虫剂在全季控制白菜害虫中具有很高的田间效力和安全性

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摘要

Fungal insecticides developed from filamentous pathogens of insects are notorious for their slow killing action through cuticle penetration, depressing commercial interest and practical application. Genetic engineering may accelerate their killing action but cause ecological risk. Here we show that a Beauveria bassiana formulation, HV8 (BbHV8), engineered for fast per os killing of caterpillars by an insect midgut-acting toxin (Vip3Aa1) overexpressed in conidia has both high field efficacy and safety in full-season protection of cabbage from the damage of an insect pest complex dominated by Pieris rapae larvae, followed by Plutella xylostella larvae and aphids. In two fields repeatedly sprayed during summer, BbHV8 resulted in overall mean efficacies of killing of 71% and 75%, which were similar or close to the 70% and 83% efficacies achieved by commercially recommended emamectin benzoate but much higher than the 31% and 48% efficacies achieved by the same formulation of the parental wild-type strain (WT). Both BbHV8 and WT sprays exerted no adverse effect on a nontarget spider community during the trials, and the sprays did not influence saprophytic fungi in soil samples taken from the field plots during 4 months after the last spray. Strikingly, BbHV8 and the WT showed low fitness when they were released into the environment because both were decreasingly recovered from the field lacking native B. bassiana strains (undetectable 5 months after the spray), and the recovered isolates became much less tolerant to high temperature and UV-B irradiation. Our results highlight for the first time that a rationally engineered fungal insecticide can compete with a chemical counterpart to combat insect pests at an affordable cost and with low ecological risk.
机译:由昆虫的丝状病原体开发的真菌杀虫剂以其通过表皮渗透的缓慢杀灭作用而臭名昭著,降低了商业兴趣和实际应用。基因工程可能会加速其杀灭作用,但会带来生态风险。在这里,我们显示了球孢白僵菌制剂HV8(BbHV8),旨在通过在分生孢子中过量表达的昆虫中肠作用毒素(Vip3Aa1)快速经口杀死毛虫,具有很高的田间药效和安全性,可以在整个季节保护白菜免受害虫复合物的危害,主要是菜青虫小菜蛾,然后是小菜蛾小虫和蚜虫。在夏季重复喷洒的两个田间,BbHV8的总体平均杀灭效率为71%和75%,与商业推荐的苯甲酸阿米菌素达到的平均效率相似或接近70%和83%,但远高于31%和90%。相同配方的亲本野生型菌株(WT)可获得48%的效率。在试验期间,BbHV8和WT喷剂均未对非目标蜘蛛群落产生不利影响,并且在最后一次喷剂后的4个月内,这些喷剂均不影响田间土壤样本中的腐生真菌。引人注目的是,BbHV8和WT释放到环境中时适应性很差,因为它们都从缺乏天然球孢杆菌菌株的田地中恢复减少(喷雾后5个月无法检测到),并且回收的分离株对高温的耐受性大大降低。和UV-B照射。我们的研究结果首次凸显出,合理设计的真菌杀虫剂可以与化学对等物竞争,以可承受的成本和较低的生态风险与害虫抗争。

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