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肠道细菌通过影响果蝇的糖代谢来促进宿主在特殊生态位中的适应性。

Gut bacterium promotes host fitness in special ecological niche by affecting sugar metabolism in Drosophila suzukii.

机构信息

Institute of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan, China.

Shandong Academy of Grape, Jinan, China.

出版信息

Insect Sci. 2023 Dec;30(6):1713-1733. doi: 10.1111/1744-7917.13189. Epub 2023 Apr 26.

Abstract

As an important fruit pest of global significance, Drosophila suzukii occupies a special ecological niche, with the characteristics of high sugar and low protein contents. This niche differs from those occupied by other fruit-damaging Drosophila species. Gut bacteria substantially impact the physiology and ecology of insects. However, the contribution of gut microbes to the fitness of D. suzukii in their special ecological niche remains unclear. In this study, the effect of Klebsiella oxytoca on the development of D. suzukii was examined at physiological and molecular levels. The results showed that, after the removal of gut microbiota, the survival rate and longevity of axenic D. suzukii decreased significantly. Reintroduction of K. oxytoca to the midgut of D. suzukii advanced the development level of D. suzukii. The differentially expressed genes and metabolites between axenic and K. oxytoca-reintroduced D. suzukii were enriched in the pathways of carbohydrate metabolism. This advancement was achieved through an increased glycolysis rate and the regulation of the transcript level of key genes in the glycolysis/gluconeogenesis pathway. Klebsiella oxytoca is likely to play an important role in increasing host fitness in their high-sugar ecological niche by stimulating the glycolysis/gluconeogenesis pathway. As a protein source, bacteria can also provide direct nutrition for D. suzukii, which depends on the quantity or biomass of K. oxytoca. This result may provide a new target for controlling D. suzukii by inhibiting sugar metabolism through eliminating the effect of K. oxytoca and thus disrupting the balance of gut microbial communities.

摘要

作为一种具有全球重要意义的水果害虫,果蝇铃木氏亚种占据了一个特殊的生态位,具有高糖和低蛋白含量的特点。这个生态位与其他破坏水果的果蝇物种所占据的生态位不同。肠道细菌对昆虫的生理和生态有很大的影响。然而,肠道微生物对果蝇铃木氏亚种在其特殊生态位中的适应性的贡献尚不清楚。在这项研究中,我们在生理和分子水平上研究了氧化葡萄糖酸杆菌对果蝇铃木氏亚种发育的影响。结果表明,在去除肠道微生物群后,无菌果蝇铃木氏亚种的存活率和寿命显著降低。将氧化葡萄糖酸杆菌重新引入果蝇铃木氏亚种的中肠,可促进其发育水平。在无菌和重新引入氧化葡萄糖酸杆菌的果蝇铃木氏亚种之间,差异表达的基因和代谢物富集在碳水化合物代谢途径中。这种促进作用是通过提高糖酵解速率和调节糖酵解/糖异生途径中的关键基因的转录水平来实现的。氧化葡萄糖酸杆菌可能通过刺激糖酵解/糖异生途径,在其高糖生态位中通过提高宿主适应性来发挥重要作用。作为一种蛋白质源,细菌也可以为果蝇铃木氏亚种提供直接的营养,这取决于氧化葡萄糖酸杆菌的数量或生物量。这一结果可能为通过抑制糖代谢来控制果蝇铃木氏亚种提供一个新的目标,方法是通过消除氧化葡萄糖酸杆菌的作用,从而破坏肠道微生物群落的平衡。

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