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昆虫病原真菌玫烟色拟青霉对稻飞虱种群的抑制作用而不影响水稻微生物群。

Suppression of Rice Planthopper Populations by the Entomopathogenic Fungus Metarhizium without Affecting the Rice Microbiota.

机构信息

Genetic Engineering Research Center, School of Life Sciences, Chongqing University, Chongqing, People's Republic of China.

Chongqing Engineering Research Center for Fungal Insecticides/Key Laboratory of Gene Function and Regulation Technology under Chongqing Municipal Education Commission, Chongqing, People's Republic of China.

出版信息

Appl Environ Microbiol. 2020 Oct 15;86(21). doi: 10.1128/AEM.01337-20.

Abstract

Entomopathogenic fungi can regulate insect populations and function as crucial biological control agents against insect pests, but their impacts on nontarget microorganisms are poorly understood. In this study, we investigated the potential of the fungal strain CQMa421 to control rice planthoppers under field conditions and its effects on rice microbiota. This fungus suppressed rice planthoppers during this period, and its control efficiency was more than 60% 7 days after application and did not significantly differ from that of the chemical treatment except in 2019. Both treatments showed a smaller population of rice planthoppers than the controls. After application, was maintained on rice plants for approximately 14 days, showing a decreasing trend over time. Furthermore, the results showed that the bacterial and fungal richness (operational taxonomic units) and diversity (Shannon index) did not significantly differ between the fungal treatment and the controls after application. The major bacterial taxa of (including , , , and ), , , and accounted for more than 80% of the bacterial community after fungal application, and the major fungal taxa Ascomycota (including Eurotiomycetes, Dothideomycetes, and Sordariomycetes) and Basidiomycota (including Ustilaginomycetes) represented more than 90% of the fungal community. However, the microbial communities of the rice phyllosphere did not significantly change after entomopathogenic-agent application, indicating that the indigenous microbial communities may adapt to fungal insecticide application. Taken together, the results suggest that this fungal agent has good potential for rice planthopper control with no substantial effects on rice microbial communities. Entomopathogenic fungi may be used as crucial biocontrol agents for the control of insect pests, but few effective fungal strains have been reported for the control of the rice planthopper, a major pest of rice. More importantly, the impacts of fungal insecticide application on nontarget microorganisms have not been well evaluated, especially under field conditions. Therefore, in this study, we investigated the effects of the fungal strain CQMa421 on rice planthopper populations from 2017 to 2019 and evaluated its potential impacts on the microbiota of rice plants after application. The results suggested that this fungal agent has good potential for use in the control of rice planthoppers with no significant effects on rice microbial communities, representing an alternative strategy for the control of rice pests.

摘要

昆虫病原真菌可以调节昆虫种群,作为防治害虫的重要生物防治剂发挥作用,但它们对非靶标微生物的影响还知之甚少。在这项研究中,我们调查了真菌菌株 CQMa421 在田间条件下控制稻飞虱的潜力及其对水稻微生物组的影响。在这段时间内,该真菌抑制了稻飞虱的种群数量,其防治效率在施药后 7 天超过 60%,除 2019 年外,与化学处理的防治效率没有显著差异。两种处理方法的稻飞虱种群都明显小于对照。施药后, 在水稻植株上的定殖时间约为 14 天,随着时间的推移呈下降趋势。此外,结果表明,施药后真菌处理与对照之间的细菌和真菌丰富度(操作分类单元)和多样性(香农指数)没有显著差异。施药后, (包括 、 、 、 )、 、 和 等主要细菌类群占细菌群落的 80%以上,子囊菌门(包括粪壳菌纲、盘菌纲和腔菌纲)和担子菌门(包括黑粉菌纲)等主要真菌类群占真菌群落的 90%以上。然而,施用以虫治虫剂后,水稻叶围的微生物群落没有发生显著变化,表明土著微生物群落可能适应真菌杀虫剂的应用。综上所述,结果表明,该真菌制剂对稻飞虱具有良好的防治潜力,对水稻微生物群落没有显著影响。昆虫病原真菌可用作防治害虫的重要生物防治剂,但目前尚未报道用于防治水稻主要害虫稻飞虱的有效真菌菌株。更重要的是,真菌杀虫剂的应用对非靶标微生物的影响尚未得到很好的评估,尤其是在田间条件下。因此,在本研究中,我们调查了真菌菌株 CQMa421 对 2017 年至 2019 年稻飞虱种群的影响,并评估了其在施药后对水稻植物微生物组的潜在影响。结果表明,该真菌制剂对稻飞虱具有良好的防治潜力,对水稻微生物群落没有显著影响,为防治水稻害虫提供了一种替代策略。

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