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Lacombrade, M.

Publications and source records attributed to Lacombrade, M..

3 recordsLinked to original sources

Trapline foraging by nectar-collecting hornets

Central place foraging bees, butterflies, birds and bats are known to develop routes in order to visit familiar plant resources in a stable and repeatable order called "traplines". Here we report a similar behaviour in a social wasp, the Japanese yellow hornet Vespa simillima. We monitored the foraging movements of individually marked wild hornets collecting sucrose solution on four artificial flowers placed in the field. After thirty foraging bouts, all the hornets had developed a repeatable flower visitation sequence. Using two different arrays of flowers, we show how hornets increase their foraging efficiency through time but do not always use the shortest path to visit all flowers, often favoring movements between nearest neighbor flowers over global path optimization. Our study adds nectar-foraging wasps to the growing list of animals developing traplines thereby opening new perspectives for comparative cognition research.

animal behavior and cognition↗

Invasive Vespa velutina nigrithorax hornets are more susceptible to entomopathogenic fungus than two other hymenopteran species, the wasp Vespa vulgaris and the bumblebee Bombus terrestris.

Entomopathogenic fungi are commonly used as biological control agents. Recently, a strain of Metarhizium robertsii (Sorokin, 1883) (Hypocreales: Clavicipitaceae) collected in France was identified as a good candidate for controlling invasive populations of yellow-legged hornet, Vespa velutina nigrithorax (Buysson, 1905) (Hymenoptera: Vespidae) in Europe. Since M. robertsii is generalist, its use as bioagent could be damaging for non-targeted species. Here, we compared the lethal effects of three concentrations of this M. robertsii strain on the invasive hornet and two non-targeted species commonly found in Europe, the common wasp Vespa vulgaris (Linnaeus, 1758) (Hymenoptera: Vespidae) and the buff-tailed bumblebee Bombus terrestris (Linnaeus, 1758) (Hymenoptera: Apidae). Exposure to M. robertsii spores altered the survival of all three species but at different degrees. Hornets had consistently lower survival, even under low concentrations of spores, when compared to wasps and bumblebees. Such lower susceptibility of beneficial Hymenoptera is encouraging in the perspectives of using M. robertsii as biocontrol agent against invasive hornets.

animal behavior and cognition↗

Flexible visual learning and memory in nectar foraging hornets

Pollinators, such as bees, develop flexible memories of colours, patterns and shapes, for efficient flower recognition. Here we tested whether other insects facing the same foraging problem have evolved similar cognitive abilities for flexible learning. We trained wild hornets from two species commonly found in Europe (Vespa velutina nigrithorax and Vespa crabro) to associate sucrose solution rewards to colour stimuli in a Y maze. Hornets of both species succeeded in differential and reversal learning, and developed short and long-term memories of the learnt associations. Thus, just like bees, hornet foragers can learn various visual cue-reward associations and remember them over several hours or days for selecting flowers. Our study in non-model species illustrates how standard conditioning approaches can be used to explore and compare the cognitive abilities of animals with similar foraging ecology.

animal behavior and cognition↗