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Symbiotic bacteria enable olive fly larvae to overcome host defences

机译:共生细菌可使橄榄蝇幼虫克服宿主防御能力

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Ripe fruit offer readily available nutrients for many animals, including fruit fly larvae (Diptera: Tephritidae) and their associated rot-inducing bacteria. Yet, during most of their ontogeny, fruit remain chemically defended and effectively suppress herbivores and pathogens by high levels of secondary metabolites. Olive flies ( Bactrocera oleae ) are uniquely able to develop in unripe olives. Unlike other frugivorous tephritids, the larvae maintain bacteria confined within their midgut caeca. We examined the interaction between larvae, their associated bacteria, and fruit chemical defence, hypothesizing that bacterial contribution to larval development is contingent on the phenology of fruit defensive chemistry. We demonstrate that larvae require their natural complement of bacteria ( Candidatus Erwinia dacicola: Enterobacteriaceae) in order to develop in unripe olives. Conversely, when feeding on ripe fruit, larval development proceeds independently of these bacteria. Our experiments suggest that bacteria counteract the inhibitory effect of oleuropein—the principal phenolic glycoside in unripe olives. In light of these results, we suggest that the unique symbiosis in olive flies, compared with other frugivorous tephritids, is understood by considering the relationship between the fly, bacteria and fruit chemistry. When applied in an evolutionary context, this approach may also point out the forces which shaped symbioses across the Tephritidae.
机译:成熟的果实为许多动物提供了容易获得的营养,包括果蝇幼虫(双翅目:蝇科)及其相关的腐烂诱导细菌。然而,在大多数个体发育过程中,果实仍处于化学防御状态,并通过高水平的次生代谢产物有效抑制草食动物和病原体。橄榄蝇(Bactrocera oleae)在未成熟的橄榄中具有独特的发育能力。与其他节食性的拟除虫菊酯不同,幼虫将细菌限制在其中肠盲肠内。我们检查了幼虫,其相关细菌和水果化学防御之间的相互作用,假设细菌对幼虫发育的贡献取决于水果防御化学的物候。我们证明,幼虫需要天然的细菌补体(Candidatus Erwinia dacicola:肠杆菌科)才能在未成熟的橄榄中发育。相反,当以成熟的水果为食时,幼虫的发育独立于这些细菌而进行。我们的实验表明,细菌可以抵消橄榄苦苷的抑制作用,橄榄苦苷是未成熟橄榄中的主要酚类糖苷。根据这些结果,我们认为,通过考虑果蝇,细菌和果实化学成分之间的关​​系,可以理解与其他节食性拟南芥相比,橄榄果蝇具有独特的共生作用。当在进化环境中应用时,这种方法还可以指出形成跨生蝇科共生体的力。

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