School of BioSciences, Bio21 Molecular Science and Biotechnology Institute, The University of Melbourne, Parkville, VIC, Australia.
Section for Bioscience and Engineering, Department of Chemistry and Bioscience, Aalborg University, Aalborg, Denmark.
Pest Manag Sci. 2024 Aug;80(8):3726-3733. doi: 10.1002/ps.8075. Epub 2024 Mar 26.
Myzus persicae, a serious sap-sucking pest of a large variety of host plants in agriculture, is traditionally controlled using chemical insecticides but there is interest in using biopesticides as restrictions are increasingly placed on the use of broad-spectrum pesticides.
Here, we show that in Petri dish experiments, high concentrations of the fungal entomopathogen Beauveria bassiana led to rapid mortality of M. persicae, although at a low concentration (1 × 10 conidia mL) there is a hormetic effect in which survival and fecundity are enhanced. Hormetic effects persisted across a generation with reduced development time and increased fecundity in the offspring of M. persicae exposed to B. bassiana. The whole-plant experiment points to a hormetic effect being detected in two out of three tested lines. The impact of these effects might also depend on whether M. persicae was transinfected with the endosymbiont Rickettsiella viridis, which decreases fecundity and survival compared with aphids lacking this endosymbiont. This fecundity cost was ameliorated in the generation following exposure to the entomopathogen.
Although B. bassiana is effective in controlling M. persicae especially at higher spore concentrations, utilization of this entomopathogen requires careful consideration of hormetic effects at lower spore concentrations, and further research to optimize its application for sustainable agriculture is recommended. © 2024 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
烟粉虱是农业中多种寄主植物的严重刺吸式害虫,传统上使用化学杀虫剂进行控制,但由于对广谱杀虫剂的使用限制越来越多,人们对生物农药越来越感兴趣。
在这里,我们在培养皿实验中表明,高浓度的真菌昆虫病原真菌球孢白僵菌会导致烟粉虱迅速死亡,尽管在低浓度(1×10 个分生孢子 mL)下存在一种激效作用,即生存和繁殖能力增强。激效作用在一个世代中持续存在,烟粉虱暴露于球孢白僵菌后,其发育时间缩短,后代繁殖力增强。在整株植物实验中,有两种测试品系检测到了激效作用。这些影响的影响可能还取决于烟粉虱是否被共生菌绿僵菌转染,与缺乏这种共生菌的蚜虫相比,绿僵菌会降低繁殖力和存活率。在接触昆虫病原真菌后,这种繁殖力成本在后代中得到了缓解。
尽管球孢白僵菌在控制烟粉虱方面非常有效,尤其是在较高孢子浓度下,但在利用这种昆虫病原真菌时,需要仔细考虑较低孢子浓度下的激效作用,并建议进一步研究以优化其在可持续农业中的应用。©2024 作者。害虫管理科学由 John Wiley & Sons Ltd 代表化学工业协会出版。