Department of Entomology, The Pennsylvania State University, University Park, PA 16802;
Department of Entomology, The Pennsylvania State University, University Park, PA 16802.
Proc Natl Acad Sci U S A. 2019 Aug 6;116(32):15991-15996. doi: 10.1073/pnas.1908748116. Epub 2019 Jul 22.
Plants produce suites of defenses that can collectively deter and reduce herbivory. Many defenses target the insect digestive system, with some altering the protective peritrophic matrix (PM) and causing increased permeability. The PM is responsible for multiple digestive functions, including reducing infections from potential pathogenic microbes. In our study, we developed axenic and gnotobiotic methods for fall armyworm () and tested how particular members present in the gut community influence interactions with plant defenses that can alter PM permeability. We observed interactions between gut bacteria with plant resistance. Axenic insects grew more but displayed lower immune-based responses compared with those possessing , , and isolates from field-collected larvae. While gut bacteria reduced performance of larvae fed on plants, none of the isolates produced mortality when injected directly into the hemocoel. Our results strongly suggest that plant physical and chemical defenses not only act directly upon the insect, but also have some interplay with the herbivore's microbiome. Combined direct and indirect, microbe-mediated assaults by maize defenses on the fall armyworm on the insect digestive and immune system reduced growth and elevated mortality in these insects. These results imply that plant-insect interactions should be considered in the context of potential mediation by the insect gut microbiome.
植物会产生一系列防御机制,这些机制可以共同阻止和减少食草动物的侵害。许多防御机制针对昆虫的消化系统,其中一些会改变保护性围食膜(PM)并导致通透性增加。PM 负责多种消化功能,包括减少潜在致病微生物的感染。在我们的研究中,我们开发了无菌和无菌生物方法来研究秋粘虫(),并测试了肠道群落中特定成员如何影响与可能改变 PM 通透性的植物防御的相互作用。我们观察到肠道细菌与植物抗性之间的相互作用。与具有从野外收集的幼虫中分离出的、、和 等肠道细菌的无菌昆虫相比,无菌昆虫生长得更多,但表现出的基于免疫的反应较低。虽然肠道细菌降低了以植物为食的幼虫的表现,但没有一种分离物在直接注射到血腔时会导致死亡。我们的结果强烈表明,植物的物理和化学防御不仅直接作用于昆虫,而且还与食草动物的微生物组有一定的相互作用。玉米防御系统对秋粘虫的直接和间接的、微生物介导的、对昆虫消化系统和免疫系统的攻击,降低了这些昆虫的生长速度并提高了其死亡率。这些结果意味着在考虑植物-昆虫相互作用时,应该考虑昆虫肠道微生物组的潜在介导作用。