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Symbiotic Bacteria Enable Olive Fly Larvae to Overcome Host Defences

Overview
Journal R Soc Open Sci
Specialty Science
Date 2015 Nov 21
PMID 26587275
Citations 63
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Abstract

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.

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References
1.
Dobler S, Petschenka G, Pankoke H . Coping with toxic plant compounds--the insect's perspective on iridoid glycosides and cardenolides. Phytochemistry. 2011; 72(13):1593-604. DOI: 10.1016/j.phytochem.2011.04.015. View

2.
Koudounas K, Banilas G, Michaelidis C, Demoliou C, Rigas S, Hatzopoulos P . A defence-related Olea europaea β-glucosidase hydrolyses and activates oleuropein into a potent protein cross-linking agent. J Exp Bot. 2015; 66(7):2093-106. PMC: 4669557. DOI: 10.1093/jxb/erv002. View

3.
Viale E, Martinez-Sanudo I, Brown J, Simonato M, Girolami V, Squartini A . Pattern of association between endemic Hawaiian fruit flies (Diptera, Tephritidae) and their symbiotic bacteria: Evidence of cospeciation events and proposal of "Candidatus Stammerula trupaneae". Mol Phylogenet Evol. 2015; 90:67-79. DOI: 10.1016/j.ympev.2015.04.025. View

4.
Ben Ami E, Yuval B, Jurkevitch E . Manipulation of the microbiota of mass-reared Mediterranean fruit flies Ceratitis capitata (Diptera: Tephritidae) improves sterile male sexual performance. ISME J. 2009; 4(1):28-37. DOI: 10.1038/ismej.2009.82. View

5.
Caporaso J, Lauber C, Walters W, Berg-Lyons D, Huntley J, Fierer N . Ultra-high-throughput microbial community analysis on the Illumina HiSeq and MiSeq platforms. ISME J. 2012; 6(8):1621-4. PMC: 3400413. DOI: 10.1038/ismej.2012.8. View