Body size and light environment modulate flight speed and saccadic behavior in free flying Drosophila melanogaster
Barredo, E.; Yang, H.; Currea, J. P.; Sondhi, Y.; Palavalli-Nettimi, R.; Sponberg, S.; Tarokh, V.; Theobald, J.
Show abstract
For flying insects, visual control relies on acquiring adequate light, but many circumstances limit this, such as dim environments, high image speeds, or eyes of modest light gathering power. To determine these effects on vinegar flies, we limited light by either placing them in dim conditions, or generating individuals with developmentally smaller eyes, then examined activity levels and three-dimensional flight paths. When simulating dawn and dusk light periods, walking flies increase activity, reflecting their crepuscular nature, and this is stronger for flies with larger eyes. When light switches abruptly, similar to many lab settings, activity associated with crepuscular periods diminishes, as does activity associated with greater facet size. During free flight, we find flight speed decreases similarly in both dim light and small eye conditions, but excess light induces smaller individuals to restore their flight speed. Through a machine learning approach, we confirmed that two features, translational speed and saccade distance, are sufficient to classify treatment groups by light niche, size, and age. Together, these imply that flight changes in smaller individuals result from visual deficits, rather than other elements of body structure.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Neural mechanisms of parasite-induced summiting behavior in 'zombie' Drosophila 96%
- The Drosophila Individual Activity Monitoring and Detection System (DIAMonDS) 96%
- First-order visual interneurons distribute distinct contrast and luminance information across ON and OFF pathways to achieve stable behavior 95%
Similar papers in this journal
- Dissecting neuron-specific functions of circadian genes using modified cell-specific CRISPR approaches 95%
- Reward expectations direct learning and drive operant matching in Drosophila 93%
- Regional specialization, polyploidy, and seminal fluid transcripts in the Drosophila female reproductive tract 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.