International audienceCentral-place foragers exploiting floral resources often use multi-destination routes (traplines) to maximise their foraging efficiency. Recent studies on bumblebees have showed how solitary foragers can learn traplines, minimising travel costs between multiple replenishing feeding locations. Here we demonstrate a similar routing strategy in the honeybee (Apis mellifera), a major pollinator known to recruit nestmates to discovered food resources. Individual honeybees trained to collect sucrose solution from four artificial flowers arranged within 10 m of the hive location developed repeatable visitation sequences both in the laboratory and in the field. A 10-fold increase of between-flower distances considerably intens...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
International audienceCentral-place foragers exploiting floral resources often use multi-destination...
Trapline foraging (repeated sequential visits to a series of feeding locations) is a taxonomically w...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Central place foraging pollinators, such as bees, tend to learn multi-destination routes (traplines)...
Central place foraging pollinators, such as bees, tend to learn multi-destination routes (traplines)...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tCentral place foragers, such as pollinating ...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
International audienceabstract: Animals collecting resources that replenish over time often visit pa...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
International audienceCentral-place foragers exploiting floral resources often use multi-destination...
Trapline foraging (repeated sequential visits to a series of feeding locations) is a taxonomically w...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Central place foraging pollinators, such as bees, tend to learn multi-destination routes (traplines)...
Central place foraging pollinators, such as bees, tend to learn multi-destination routes (traplines)...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
Central place foragers, such as pollinating bees, typically develop circuits (traplines) to visit mu...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tCentral place foragers, such as pollinating ...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
International audienceabstract: Animals collecting resources that replenish over time often visit pa...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...
Animals collecting resources that replenish over time often visit patches in predictable sequences c...