State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Institute of Applied Ecology and Research Centre for Biodiversity and Eco-Safety, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Environ Microbiol. 2022 Mar;24(3):1638-1652. doi: 10.1111/1462-2920.15948. Epub 2022 Mar 17.
Microbiome analysis in a host-parasitoid interaction network was conducted to compare the taxonomic composition of bacterial communities of Diaphornia citri, Tamarixia radiata, and Diaphorencyrtus aligarhensis. The comparative analysis revealed differences in the composition and diversity of the symbiont populations across the host and its associated parasitoids. Proteobacteria was the most dominant phylum, representing 67.80% of the total bacterial community, while Candidatus Profftella armature and Wolbachia were the dominant genera across the host and parasitoids. There were clear differences observed in alpha and beta diversity of microbiota through the host and its associated parasitoids. The function prediction of bacterial communities and Pearson correlation analysis showed that specific bacterial communities displayed positive correlations with the carbohydrate metabolism pathway. Furthermore, when symbiotic bacteria were eliminated using a broad-spectrum antibiotic, tetracycline hydrochloride, the parasitoids' median survival time and longevity were significantly reduced. We confirmed the physiological effects of symbiotic bacteria on the fitness of parasitoids and demonstrated the effect of antibiotics in decreasing the food intake and measurement of amino acids in the hemolymph. This study sheds light on basic information about the mutualism between parasitoids and bacteria, which may be a potential source for biocontrol strategies for citrus psyllid, especially D. citri.
对宿主-寄生蜂相互作用网络中的微生物组进行了分析,以比较柑橘木虱、平腹小蜂和荔蝽盘绒茧蜂的细菌群落的分类组成。比较分析显示,宿主及其相关寄生蜂的共生种群在组成和多样性上存在差异。变形菌门是最主要的门,占总细菌群落的 67.80%,而候选菌 Profftella armature 和沃尔巴克氏体是宿主和寄生蜂的主要属。通过宿主及其相关寄生蜂观察到微生物群落的 alpha 和 beta 多样性存在明显差异。细菌群落的功能预测和 Pearson 相关性分析表明,特定的细菌群落与碳水化合物代谢途径呈正相关。此外,当使用广谱抗生素盐酸四环素消除共生细菌时,寄生蜂的中位生存时间和寿命显著降低。我们证实了共生细菌对寄生蜂适应性的生理影响,并证明了抗生素在降低寄主血淋巴中氨基酸的摄入量和测量值方面的作用。这项研究为寄生蜂和细菌之间的共生关系提供了基础信息,这可能是柑橘木虱,特别是柑橘木虱生物防治策略的潜在来源。