Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.
College of Forestry, Nanjing Forestry University, Nanjing 210037, China.
J Insect Sci. 2023 Mar 1;23(2). doi: 10.1093/jisesa/iead009.
Hyphantria cunea Drury (Lepidoptera: Erebidae) is a quarantine pest in China that can cause damage to hundreds of plants. As biological control agents, Nuclear Polyhedrosis Virus (NPV) and Bacillus thuringiensis Berliner (Bacillales: Bacillaceae) (Bt) are commonly used to inhibit the prevalence of H. cunea. To investigate the role of midgut bacteria in the infection of NPV and Bt in H. cunea, we performed a series of tests, including isolating the dominant culturable bacteria in the midgut, eliminating intestinal bacteria, and respectively inoculating the dominant strains with NPV and Bt for bioassay. Two dominant bacteria, Klebsiella oxytoca Lautrop (Enterobacterales: Enterobacteriaceae) and Enterococcus mundtii Collins (Lactobacillales: Enterococcaceae), in the midgut of H. cunea were identified, and a strain of H. cunea larvae without intestinal bacteria was successfully established. In the bioassays of entomopathogen infection, K. oxytoca showed significant synergistic effects with both NPV and Bt on the death of H. cunea. In contrast, E. mundtii played antagonistic effects. This phenomenon may be attributed to the differences in the physico-chemical properties of the two gut bacteria and the alkaline environment required for NPV and Bt to infect the host. It is worth noting that the enhanced insecticidal activity of K. oxytoca on NPV and Bt provides a reference for future biological control of H. cunea by intestinal bacteria.
舞毒蛾(鳞翅目:夜蛾科)在中国是一种检疫性害虫,它能对数百种植物造成危害。核型多角体病毒(NPV)和苏云金芽孢杆菌(Bt)(芽孢杆菌目:芽孢杆菌科)作为生物防治剂,通常用于抑制舞毒蛾的流行。为了研究中肠细菌在舞毒蛾感染 NPV 和 Bt 中的作用,我们进行了一系列试验,包括分离中肠中占优势的可培养细菌、消除肠道细菌,以及分别用 NPV 和 Bt 接种优势菌株进行生物测定。在舞毒蛾的中肠中鉴定出两种占优势的细菌,即产酸克雷伯菌(肠杆菌目:肠杆菌科)和屎肠球菌(乳杆菌目:肠球菌科),并成功建立了一种没有肠道细菌的舞毒蛾幼虫株。在昆虫病原感染的生物测定中,产酸克雷伯菌对 NPV 和 Bt 对舞毒蛾的致死均表现出显著的协同作用。相比之下,屎肠球菌则表现出拮抗作用。这种现象可能归因于两种肠道细菌的理化性质以及 NPV 和 Bt 感染宿主所需的碱性环境的差异。值得注意的是,产酸克雷伯菌对 NPV 和 Bt 的增强杀虫活性为未来通过肠道细菌对舞毒蛾进行生物防治提供了参考。