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玉米菌根降低了鳞翅目植食性昆虫草地贪夜蛾对其同源核多角体病毒的易感性。

Maize mycorrhizas decrease the susceptibility of the foliar insect herbivore Spodoptera frugiperda to its homologous nucleopolyhedrovirus.

机构信息

Instituto de investigaciones Agropecuarias y Forestales, Universidad Michoacana de San Nicolás de Hidalgo, Tarímbaro, Mexico.

Instituto de Investigaciones en Ecosistemas y Sustentabilidad, Universidad Nacional Autonoma de Mexico, Morelia, Mexico.

出版信息

Pest Manag Sci. 2021 Oct;77(10):4701-4708. doi: 10.1002/ps.6511. Epub 2021 Jun 22.

Abstract

BACKGROUND

The multiple nucleopolyhedrovirus of Spodoptera frugiperda (SfMNPV) plays an important role in regulating its natural host and has high potential for use as a bioinsecticide. However, information about how agricultural practices such as fertilization and plant biotic interactions affect the biocontrol efficacy of SfMNPV is limited. In this study, we examined how multitrophic maize-mycorrhiza-insect herbivore interactions affect the biocontrol efficacy of SfMNPV against S. frugiperda under full and reduced mineral nitrogen fertilization. Two fully factorial greenhouse pot experiments with three factors were performed: (i) arbuscular mycorrhizal fungi (AMF) (with and without AMF), (ii) nitrogen fertilization (50% and 100% N), and (iii) insect (with and without of S. frugiperda). The biocontrol efficacy of SfMNPV against S. frugiperda was examined using detached leaves under controlled environmental conditions.

RESULTS

Associating maize with AMF resulted in multitrophic cascade effects. Plants with AMF showed suppression of plant growth and increased leaf N and P content, which coincided with increased foliar herbivory and larval biomass that finally reduced the susceptibility of S. frugiperda to SfMNPV. Reduced levels of N fertilization mitigated these observed cascade effects on the biocontrol efficacy of SfMNPV with maize mycorrhizas.

CONCLUSION

Our results show that AMF can modulate S. frugiperda-SfMNPV interactions via plant-mediated phenotypic responses to the mycorrhizal association and are most likely linked with increased leaf food quality for S. frugiperda. These results call for further studies to address the mode of interaction and possible implications for pest management in maize agroecosystems. © 2021 Society of Chemical Industry.

摘要

背景

斜纹夜蛾的多粒核型多角体病毒(SfMNPV)在调节其自然宿主方面发挥着重要作用,具有作为生物杀虫剂的巨大潜力。然而,关于施肥和植物生物相互作用等农业实践如何影响 SfMNPV 的生物防治效果的信息有限。在这项研究中,我们研究了在充分和减少矿物氮施肥下,多营养层次玉米-菌根-昆虫草食者相互作用如何影响 SfMNPV 对斜纹夜蛾的生物防治效果。进行了两个具有三个因素的完全因子温室盆栽实验:(i)丛枝菌根真菌(AMF)(有和没有 AMF),(ii)氮施肥(50%和 100% N),和(iii)昆虫(有和没有 S. frugiperda)。在受控环境条件下使用离体叶片来检查 SfMNPV 对 S. frugiperda 的生物防治效果。

结果

与玉米共生的 AMF 导致了多营养层次级联效应。具有 AMF 的植物表现出抑制植物生长和增加叶片 N 和 P 含量,这与叶片草食性增加和幼虫生物量增加相一致,最终降低了 S. frugiperda 对 SfMNPV 的敏感性。减少氮施肥水平减轻了与玉米菌根共生相关的这些观察到的级联效应对 SfMNPV 生物防治效果的影响。

结论

我们的结果表明,AMF 可以通过植物对菌根共生的表型反应来调节 S. frugiperda-SfMNPV 相互作用,并且最有可能与 S. frugiperda 的叶片食物质量增加有关。这些结果需要进一步研究以解决相互作用的方式以及对玉米农业生态系统中害虫管理的可能影响。

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