bioRxiv · 10.1101/2021.09.06.458851
Ecology dictates the value of memory for foraging bees
Abstract
"Ecological intelligence" hypotheses posit that animal learning and memory evolves to meet the demands posed by foraging, and together with social intelligence and cognitive buffer hypotheses, provide a key framework for understanding cognitive evolution. However, identifying the critical environments where cognitive investment reaps significant benefits has proved challenging. Here, we capitalise upon seasonal variation in forage availability for a social insect model (Bombus terrestris) to establish how the benefits of short-term memory vary with resource availability. Through analysis of over 1700 foraging trips carried out over two years, we show that short-term memory predicts foraging efficiency - a key determinant of colony fitness - in plentiful spring foraging conditions, but that this relationship is reversed during the summer floral dearth. Our results suggest that selection for enhanced cognitive abilities is unlikely to be limited to harsh environments where food is hard to find or extract, highlighting instead that the complexity of rich and plentiful environments could be a broad driver in the evolution of certain cognitive traits.
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Pull, C. D., Petkova, I., Watrobska, C., Pasquier, G., Pere Fernandez, M., Leadbeater, E.. 2021-09-06. Ecology dictates the value of memory for foraging bees. https://doi.org/10.1101/2021.09.06.458851
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