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Transcriptomic responses of the olive fruit fly Bactrocera oleae and its symbiont Candidatus Erwinia dacicola to olive feeding

机译:橄榄果蝇Bactrocera oleae及其共生假丝酵母Edwinia dacicola对橄榄摄食的转录组学响应

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摘要

The olive fruit fly, Bactrocera oleae, is the most destructive pest of olive orchards worldwide. The monophagous larva has the unique capability of feeding on olive mesocarp, coping with high levels of phenolic compounds and utilizing non-hydrolyzed proteins present, particularly in the unripe, green olives. On the molecular level, the interaction between B. oleae and olives has not been investigated as yet. Nevertheless, it has been associated with the gut obligate symbiotic bacterium Candidatus Erwinia dacicola. Here, we used a B.oleae microarray to analyze the gene expression of larvae during their development in artificial diet, unripe (green) and ripe (black) olives. The expression profiles of Ca. E. dacicola were analyzed in parallel, using the Illumina platform. Several genes were found overexpressed in the olive fly larvae when feeding in green olives. Among these, a number of genes encoding detoxification and digestive enzymes, indicating a potential association with the ability of B. oleae to cope with green olives. In addition, a number of biological processes seem to be activated in Ca. E. dacicola during the development of larvae in olives, with the most notable being the activation of amino-acid metabolism.
机译:橄榄果蝇Bactrocera oleae是全世界橄榄园最具破坏性的害虫。单相食虫幼虫具有独特的能力,能够以橄榄中果皮为食,应对高水平的酚类化合物,并利用存在的非水解蛋白,特别是在未成熟的绿橄榄中。在分子水平上,尚未研究油菜双歧杆菌和橄榄之间的相互作用。然而,它与肠道专性共生细菌念珠菌欧文氏假丝酵母有关。在这里,我们使用油菜芽胞杆菌微阵列分析了在人工饮食,未成熟(绿色)和成熟(黑色)橄榄中发育的幼虫的基因表达。 Ca的表达谱。使用Illumina平台并行分析了大肠埃希氏菌。喂绿橄榄时,发现在橄榄蝇幼虫中过表达的几个基因。其中,许多编码解毒和消化酶的基因,表明与油菜双歧杆菌应对绿橄榄的能力有潜在的联系。另外,钙中似乎激活了许多生物过程。橄榄幼虫发育过程中的E. dacicola,最值得注意的是氨基酸代谢的激活。

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