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Light Preference Assay to Study Innate and Circadian Regulated Photobehavior in Drosophila Larvae
Published on: April 20, 2013
Artificial light at night disrupts fertility in Drosophila melanogaster
Margherita Martelli1, Raffaella Lazzarini1, Francesco Piva2
1Occupational Health, Department of Clinical and Molecular Sciences, Polytechnic University of Marche, 60126, Ancona, Italy.
Abstract:
Artificial light at night (ALAN) can disrupt numerous biological processes, and is increasingly studied in animal models. Here, we evaluated the impact of red and blue ALAN on Drosophila melanogaster, focusing on fertility, development, circadian rhythms, and gene expression. All results were compared to those of a control group maintained under a 12 h white light/12 h dark cycle. Red ALAN exposure increased the number of eggs laid but reduced the hatching rate and shortened the larval period. Conversely, blue ALAN led to fewer eggs laid, fewer emerging adults, and lower hatching success. Significant alterations in circadian rhythm and the sleep-wake cycle were observed in flies exposed to both red and blue ALAN, including a reduction in mean locomotor activity over 24 h and during the daytime period, increased sleep duration during the day, and reduced sleep duration at night. Effects were more pronounced under blue ALAN, which disrupted circadian rhythm by eliminating morning and evening activity peaks and increasing nocturnal activity. Gene expression analyses revealed that red ALAN upregulated ecdysone-induced protein 74EF (E74) and the ecdysone receptor (EcR) expression in adults, while juvenile hormone binding protein 1 (Jhbp1) was elevated under both light conditions. In larvae, both ALAN spectra increased expression of E74 and Jhbp1. These findings demonstrate that red and blue ALAN can significantly disrupt fertility and development in Drosophila melanogaster. Given the rising prevalence of light pollution and night-shift work, further studies are needed to investigate ALAN-related reproductive impairments in other animals, including vertebrates and humans.
Insights
Artificial light at night (ALAN) disrupts fruit fly fertility and development. Both red and blue light alter circadian rhythms and gene expression, with blue light showing more severe effects on sleep-wake cycles.
Area of Science:
- Environmental Science
- Chronobiology
- Genetics
Background:
- Artificial light at night (ALAN) is a growing environmental concern.
- ALAN is known to disrupt biological processes in animal models.
Purpose of the Study:
- To investigate the impact of red and blue ALAN on Drosophila melanogaster.
- Focus areas include fertility, development, circadian rhythms, and gene expression.
Main Methods:
- Exposure of Drosophila melanogaster to red and blue ALAN.
- Comparison with a control group under a 12h light/12h dark cycle.
- Analysis of fertility, development, circadian activity, and gene expression.
Main Results:
- Red ALAN increased egg count but reduced hatching and larval period.
- Blue ALAN decreased egg count, adult emergence, and hatching success.
- Both ALAN types disrupted circadian rhythms and sleep-wake cycles, with blue light having more pronounced effects.
- ALAN altered gene expression, including ecdysone-induced protein 74EF (E74), ecdysone receptor (EcR), and juvenile hormone binding protein 1 (Jhbp1).
Conclusions:
- Red and blue ALAN significantly disrupt fertility and development in Drosophila melanogaster.
- ALAN impacts circadian rhythms and gene expression patterns.
- Further research is needed to understand ALAN's reproductive effects in other species, including humans.

