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A simple high-throughput method for automated detection of Drosophila melanogaster light-dependent behaviours

Moulin, Thiago C. LU ; Dey, Sovik ; Dashi, Giovanna ; Li, Lei ; Sridhar, Vaasudevan ; Safa, Tania ; Berkins, Samuel ; Williams, Michael J. and Schiöth, Helgi B. (2022) In BMC Biology 20(1).
Abstract

Background: Like most living organisms, the fruit fly Drosophila melanogaster exhibits strong and diverse behavioural reactions to light. Drosophila is a diurnal animal that displays both short- and long-term responses to light, important for, instance, in avoidance and light wavelength preference, regulation of eclosion, courtship, and activity, and provides an important model organism for understanding the regulation of circadian rhythms both at molecular and circuit levels. However, the assessment and comparison of light-based behaviours is still a challenge, mainly due to the lack of a standardised platform to measure behaviour and different protocols created across studies. Here, we describe the Drosophila Interactive System for... (More)

Background: Like most living organisms, the fruit fly Drosophila melanogaster exhibits strong and diverse behavioural reactions to light. Drosophila is a diurnal animal that displays both short- and long-term responses to light, important for, instance, in avoidance and light wavelength preference, regulation of eclosion, courtship, and activity, and provides an important model organism for understanding the regulation of circadian rhythms both at molecular and circuit levels. However, the assessment and comparison of light-based behaviours is still a challenge, mainly due to the lack of a standardised platform to measure behaviour and different protocols created across studies. Here, we describe the Drosophila Interactive System for Controlled Optical manipulations (DISCO), a low-cost, automated, high-throughput device that records the flies’ activity using infrared beams while performing LED light manipulations. Results: To demonstrate the effectiveness of this tool and validate its potential as a standard platform, we developed a number of distinct assays, including measuring the locomotor response of flies exposed to sudden darkness (lights-off) stimuli. Both white-eyed and red-eyed wild-type flies exhibit increased activity after the application of stimuli, while no changes can be observed in Fmr1 null allele flies, a model of fragile X syndrome. Next, to demonstrate the use of DISCO in long-term protocols, we monitored the circadian rhythm of the flies for 48 h while performing an alcohol preference test. We show that increased alcohol consumption happens intermittently throughout the day, especially in the dark phases. Finally, we developed a feedback-loop algorithm to implement a place preference test based on the flies’ innate aversion to blue light and preference for green light. We show that both white-eyed and red-eyed wild-type flies were able to learn to avoid the blue-illuminated zones. Conclusions: Our results demonstrate the versatility of DISCO for a range of protocols, indicating that this platform can be used in a variety of ways to study light-dependent behaviours in flies.

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author
; ; ; ; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Activity monitor, Circadian rhythm, Ethanol intake, Jump response, Light response, ON/OFF assay, Operant conditioning, Spatial learning, Visual learning
in
BMC Biology
volume
20
issue
1
article number
283
publisher
BioMed Central (BMC)
external identifiers
  • pmid:36527001
  • scopus:85144213562
ISSN
1741-7007
DOI
10.1186/s12915-022-01476-z
language
English
LU publication?
yes
id
5f7dc45c-e64c-49e9-8342-2c2598f1111c
date added to LUP
2023-01-11 12:11:44
date last changed
2024-06-13 20:43:12
@article{5f7dc45c-e64c-49e9-8342-2c2598f1111c,
  abstract     = {{<p>Background: Like most living organisms, the fruit fly Drosophila melanogaster exhibits strong and diverse behavioural reactions to light. Drosophila is a diurnal animal that displays both short- and long-term responses to light, important for, instance, in avoidance and light wavelength preference, regulation of eclosion, courtship, and activity, and provides an important model organism for understanding the regulation of circadian rhythms both at molecular and circuit levels. However, the assessment and comparison of light-based behaviours is still a challenge, mainly due to the lack of a standardised platform to measure behaviour and different protocols created across studies. Here, we describe the Drosophila Interactive System for Controlled Optical manipulations (DISCO), a low-cost, automated, high-throughput device that records the flies’ activity using infrared beams while performing LED light manipulations. Results: To demonstrate the effectiveness of this tool and validate its potential as a standard platform, we developed a number of distinct assays, including measuring the locomotor response of flies exposed to sudden darkness (lights-off) stimuli. Both white-eyed and red-eyed wild-type flies exhibit increased activity after the application of stimuli, while no changes can be observed in Fmr1 null allele flies, a model of fragile X syndrome. Next, to demonstrate the use of DISCO in long-term protocols, we monitored the circadian rhythm of the flies for 48 h while performing an alcohol preference test. We show that increased alcohol consumption happens intermittently throughout the day, especially in the dark phases. Finally, we developed a feedback-loop algorithm to implement a place preference test based on the flies’ innate aversion to blue light and preference for green light. We show that both white-eyed and red-eyed wild-type flies were able to learn to avoid the blue-illuminated zones. Conclusions: Our results demonstrate the versatility of DISCO for a range of protocols, indicating that this platform can be used in a variety of ways to study light-dependent behaviours in flies.</p>}},
  author       = {{Moulin, Thiago C. and Dey, Sovik and Dashi, Giovanna and Li, Lei and Sridhar, Vaasudevan and Safa, Tania and Berkins, Samuel and Williams, Michael J. and Schiöth, Helgi B.}},
  issn         = {{1741-7007}},
  keywords     = {{Activity monitor; Circadian rhythm; Ethanol intake; Jump response; Light response; ON/OFF assay; Operant conditioning; Spatial learning; Visual learning}},
  language     = {{eng}},
  number       = {{1}},
  publisher    = {{BioMed Central (BMC)}},
  series       = {{BMC Biology}},
  title        = {{A simple high-throughput method for automated detection of Drosophila melanogaster light-dependent behaviours}},
  url          = {{http://dx.doi.org/10.1186/s12915-022-01476-z}},
  doi          = {{10.1186/s12915-022-01476-z}},
  volume       = {{20}},
  year         = {{2022}},
}