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Exploitation of the Medfly Gut Microbiota for the Enhancement of Sterile Insect Technique: Use of Enterobacter sp. in Larval Diet-Based Probiotic Applications

机译:开发用于增强不育昆虫技术的Medfly肠道菌群:肠杆菌的使用。基于幼虫饮食的益生菌应用

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摘要

The Mediterranean fruit fly (medfly), Ceratitis capitata, is a pest of worldwide substantial economic importance, as well as a Tephritidae model for sterile insect technique (SIT) applications. The latter is partially due to the development and utilization of genetic sexing strains (GSS) for this species, such as the Vienna 8 strain, which is currently used in mass rearing facilities worldwide. Improving the performance of such a strain both in mass rearing facilities and in the field could significantly enhance the efficacy of SIT and reduce operational costs. Recent studies have suggested that the manipulation of gut symbionts can have a significant positive effect on the overall fitness of insect strains. We used culture-based approaches to isolate and characterize gut-associated bacterial species of the Vienna 8 strain under mass rearing conditions. We also exploited one of the isolated bacterial species, Enterobacter sp., as dietary supplement (probiotic) to the larval diet, and we assessed its effects on fitness parameters under the standard operating procedures used in SIT operational programs. Probiotic application of Enterobacter sp. resulted in improvement of both pupal and adult productivity, as well as reduced rearing duration, particularly for males, without affecting pupal weight, sex ratio, male mating competitiveness, flight ability and longevity under starvation.
机译:地中海实蝇(地中海实蝇)是一种具有全球重要经济意义的害虫,也是一种用于不育昆虫技术(SIT)的T科动物模型。后者部分归因于该物种的遗传性别鉴定品系(GSS)的开发和利用,例如维也纳8品系,该品系目前在全世界的大规模饲养设施中使用。在大规模饲养设施中和在野外提高这种菌株的性能都可以显着提高SIT的功效并降低运营成本。最近的研究表明,肠道共生体的操作可以对昆虫菌株的整体适应性产生显着的积极影响。我们使用基于文化的方法来分离和表征在大规模饲养条件下的维也纳8菌株的肠道相关细菌物种。我们还利用一种分离的细菌物种肠杆菌属作为幼虫饲料的膳食补充剂(益生菌),并根据SIT操作程序中使用的标准操作程序评估了其对健康参数的影响。肠杆菌属细菌的益生菌应用。不仅提高了小and和成年的生产力,而且减少了饲养时间,特别是对雄性而言,却不影响小weight的体重,性别比,雄性交配竞争力,饥饿时的飞行能力和寿命。

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