How bumblebees manage conflicting information seen on arrival and departure from flowers

Author:

Guiraud Marie-Genevieve1,Maboudi Hadi1,Woodgate Joseph L.1,Bates Olivia1,Rodriguez Oscar Ramos1,Gallo Vince1,Barron Andrew B.2

Affiliation:

1. Queen Mary University of London

2. Macquarie University

Abstract

Abstract Bees are flexible and adaptive learners, capable of learning stimuli seen on arrival and at departure from flowers where they have fed. This gives bees the potential to learn all information associated with a feeding event, but it also presents the challenge of managing information that is irrelevant, inconsistent, or conflicting. Here, we examined how presenting bumblebees with conflicting information before and after feeding influenced their learning rate and what they learned. Bees were trained to feeder stations mounted in front of a computer monitor. Visual stimuli were displayed behind each feeder station on the monitor. Positively reinforced stimuli (CS+) marked feeders offering sucrose solution. Negatively reinforced stimuli (CS-) marked feeders offering quinine solution. While alighted at the feeder station the stimuli were not visible to the bee. The “constant stimulus” training group saw the same stimulus throughout. For the “switched stimulus” training group, the CS+ changed to the CS- during feeding. Learning was slower in the “switched stimulus” training group compared to the constant stimulus” group, but the training groups did not differ in their learning performance or the extent to which they generalised their learning. The information conflict in the “switched stimulus” group did not interfere with what had been learned. Differences between the “switched” and “constant stimulus” groups were greater for bees trained on a horizontal CS+ than a vertical CS+ suggesting bees differ in their processing of vertically and horizontally oriented stimuli. We discuss how bumblebees might resolve this type of information conflict so effectively, drawing on the known neurobiology of their visual learning system.

Publisher

Research Square Platform LLC

Reference57 articles.

1. “Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila”;Aso Y;eLife,2014

2. "Cognitive components of color vision in honey bees: how conditioning variables modulate color learning and discrimination.";Avarguès-Weber A;J Comp Physiol A Neuroethol Sens Neural Behav Physiol,2014

3. Barnstedt O., Owald D., Felsenberg J., Brain R., Moszynski J.P., Talbot C.B., Perrat P.N., Waddell S. (2016). “Memory-Relevant Mushroom Body Output Synapses Are Cholinergic.” Neuron. Mar 16;89(6):1237–1247. Epub 2016 Mar 3. PMID: 26948892; PMCID: PMC4819445. https://doi.org/10.1016/j.neuron.2016.02.015

4. “Vision affects mushroom bodies and central complex in Drosophila melanogaster.”;Barth M;Learn & Mem.,1997

5. “A computational framework for understanding decision making through integration of basic learning rules.”;Bazhenov M;J Neurosci. Mar,2013

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