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Jurkevitch, E.

Publications and source records attributed to Jurkevitch, E..

2 recordsLinked to original sources

The host fruit amplifies mutualistic interactions between Ceratitis capitata larvae and associated bacteria.

Background:\n\nThe Mediterranean fruit fly Ceratitis capitata is a major pest in horticulture. The development of fly larvae is mediated by bacterial decay in the fruit tissue. Despite the importance of bacteria on larval development, very little is known about the interaction between bacteria and larvae in their true ecological context. Understanding their relationship and inter-dependence in the host fruit is important for the development of new pest control interfaces to deal with this pest.\n\nResults:\n\nWe find no negative effects on egg hatch or larval development brought about by the bacterial isolates tested. The various symbionts inhabiting the flys digestive system differ in their degree of contribution to the development of fly larvae depending on the given host and their sensitivity to induced inhibition caused by female produced antimicrobial peptides. These differences were observed not only at the genus or species level but also between isolates of the same species. We demonstrate how the microbiota from the mothers gut supports the development of larvae in the fruit host and show that larvae play a major role in spreading the bacterial contagion in the infected fruit itself. In addition, we present (for the first time) evidence for horizontal transfer of bacteria between larvae of different maternal origin that develop together in the same fruit.\n\nConclusions:\n\nLarvae play a major role in the spread and shaping of the microbial population in the fruit. The transfer of bacteria between different individuals developing in the same fruit suggests that the infested fruit serves as a microbial hub for the amplification and spread of bacterial strains between individuals.

ecology

Intestinal bacteria modulate the foraging behavior of the Oriental fruit fly Bactrocera dorsalis (Diptera: Tephritidae)

The gut microbiome of insects directly or indirectly affects the metabolism, immune status, sensory perception and feeding behavior of its host. Here, we examine the hypothesis that in the Oriental fruit fly (Bactrocera dorsalis, Diptera: Tephritidae), the presence or absence of gut symbionts affects foraging behavior and nutrient ingestion. We offered protein starved flies, symbiotic or aposymbiotic, a choice between diets containing all amino acids or only the non-essential ones. The different diets were presented in a foraging arena as drops that varied in their size and density, creating an imbalanced foraging environment. Suppressing the microbiome resulted in significant changes of the foraging behavior of both male and female flies. Aposymbiotic flies responded faster to the diets offered in experimental arenas, spent more time feeding, ingested more drops of food, and were constrained to feed on time consuming patches (containing small drops of food), when these offered the full complement of amino acids. We discuss these results in the context of previous studies on the effect of the gut microbiome on host behavior, and suggest that these be extended to the life history dimension.\n\nImportance and significance of the studyThe gut bacteria of tephritid fruit flies provide nutritional benefits to their hosts, by making essential amino-acids readily available. Foraging for food is risky, as active flies are exposed to predators and incur a considerable investment of time and energy. Therefore, making beneficial compromises between the feeding time and nutrient ingestion is a question of survival for the flies. Our study demonstrates how gut bacteria drive this behavior by allowing symbiotic flies to forage optimally while acquiring essential nutrients. This finding adds a novel step to the nexus connecting the insect gut, its microbiome, the nervous system, chemoreception to individual patterns of foraging.

animal behavior and cognition