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Transcriptome-wide deregulation of gene expression by artificial light at night in tadpoles of common toads
Morgane Touzot1, Tristan Lefebure1, Thierry Lengagne1
1Univ Lyon, Université Claude Bernard Lyon 1, CNRS, ENTPE, UMR 5023 LEHNA, F-69622, Villeurbanne, France.
Abstract:
Artificial light at night (ALAN) affects numerous physiological and behavioural mechanisms in various species by potentially disturbing circadian timekeeping systems and modifying melatonin levels. However, given the multiple direct and indirect effects of ALAN on organisms, large-scale transcriptomic approaches are essential to assess the global effect of ALAN on biological processes. Moreover, although studies have focused mainly on variations in gene expression during the night in the presence of ALAN, it is necessary to investigate the effect of ALAN on gene expression during the day. In this study, we combined de novo transcriptome sequencing and assembly, and a controlled laboratory experiment to evaluate the transcriptome-wide gene expression response using high-throughput (RNA-seq) in Bufo bufo tadpoles exposed to ecologically relevant light levels. Here, we demonstrated for the first time that ALAN affected gene expression at night (3.5% and 11% of differentially expressed genes when exposed to 0.1 and 5 lx compared to controls, respectively), but also during the day (11.2% of differentially expressed genes when exposed to 5 lx compared to controls) with a dose-dependent effect. ALAN globally induced a downregulation of genes (during the night, 58% and 62% of the genes were downregulated when exposed to 0.1 and 5 lx compared to controls, respectively, and during the day, 61.2% of the genes were downregulated when exposed to 5 lx compared to controls). ALAN effects were detected at very low levels of illuminance (0.1 lx) and affected mainly genes related to the innate immune system and, to a lesser extend to lipid metabolism. These results provide new insights into understanding the effects of ALAN on organism. ALAN impacted the expression of genes linked to a broad range of physiological pathways at very low levels of ALAN during night-time and during daytime, potentially resulting in reduced immune capacity under environmental immune challenges.
Insights
Artificial light at night (ALAN) impacts gene expression in tadpoles, affecting immune and lipid metabolism pathways both day and night, even at low light levels. This highlights potential risks to organism health and immune capacity.
Area of Science:
- Environmental toxicology
- Molecular biology
- Ecotoxicology
Background:
- Artificial light at night (ALAN) disrupts circadian rhythms and melatonin levels in various species.
- Previous research primarily focused on nighttime gene expression changes due to ALAN.
- Understanding ALAN's broader impact requires investigating its effects on daytime gene expression.
Purpose of the Study:
- To assess the global transcriptomic response of Bufo bufo tadpoles to ecologically relevant ALAN levels.
- To investigate the effects of ALAN on gene expression during both nighttime and daytime.
- To determine the dose-dependent effects of ALAN on gene expression.
Main Methods:
- Combined de novo transcriptome sequencing and assembly with controlled laboratory experiments.
- Utilized high-throughput RNA sequencing (RNA-seq) to analyze gene expression.
- Exposed Bufo bufo tadpoles to varying ecologically relevant light levels of ALAN.
Main Results:
- ALAN significantly altered gene expression at night and during the day in a dose-dependent manner.
- A notable percentage of genes were downregulated by ALAN exposure, affecting innate immune system and lipid metabolism pathways.
- Gene expression changes were observed even at very low illuminance levels (0.1 lx).
Conclusions:
- ALAN impacts gene expression across a wide range of physiological pathways, even at low intensities, during both night and day.
- The observed downregulation of genes, particularly those related to the immune system, suggests a potential reduction in immune capacity.
- These findings provide crucial insights into the widespread biological effects of ALAN on organisms and ecosystem health.
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