Skyglow relieves a crepuscular bird from visual constraints on being active

Evens, Ruben;Lathouwers, Michiel;Pradervand, Jean-Nicolas;Jechow, Andreas;Eens, Marcel;et.al.
(2023) Science of The Total Environment — Vol. 900, n° 900, p. 165760 (2023)

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Authors
  • Evens, RubenUCLouvain
    Author
  • Lathouwers, MichielHasselt University, Centre for Environmental Sciences, Research Group: Zoology, Biodiversity and Toxicology, Agoralaan Gebouw D, 3590 Diepenbeek, Belgium
    Author
  • Pradervand, Jean-NicolasSwiss Ornithological Institute, Regional Office Valais, Rue du Rhône 11, 1950 Sion, Switzerland.
    Author
  • Jechow, Andreas
    Author
  • Eens, MarcelDepartment of Biology, Behavioural Ecology and Ecophysiology group, University of Antwerp, Universiteitsplein 1, B-2610 Wilrijk, Belgium
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Abstract
Artificial light at night significantly alters the predictability of the natural light cycles that most animals use as an essential Zeitgeber for daily activity. Direct light has well-documented local impacts on activity patterns of diurnal and nocturnal organisms. However, artificial light at night also contributes to an indirect illumination of the night sky, called skyglow, which is rapidly increasing. The consequences of this widespread form of artificial night light on the behaviour of animals remain poorly understood, with only a few studies performed under controlled (laboratory) conditions. Using animal-borne activity loggers, we investigated daily and seasonal flight activity of a free-living crepuscular bird species in response to nocturnal light conditions at sites differing dramatically in exposure to skyglow. We find that flight activity of European Nightjars (Caprimulgus europaeus) during moonless periods of the night is four times higher in Belgium (high skyglow exposure) than in subtropical Africa and two times higher than in Mongolia (near-pristine skies). Moreover, clouds darken the sky under natural conditions, but skyglow can strongly increase local sky brightness on overcast nights. As a result, we find that nightjars' response to cloud cover is reversed between Belgium and subtropical Africa and between Belgium and Mongolia. This supports the hypothesis that cloudy nights reduce individual flight activity in a pristine environment, but increase it when the sky is artificially lit. Our study shows that in the absence of direct light pollution, anthropogenic changes in sky brightness relieve nightjars from visual constraints on being active. Individuals adapt daily activities to artificial night-sky brightness, allowing them more time to fly than con-specifics living under natural light cycles. This modification of the nocturnal timescape likely affects behavioural processes of most crepuscular and nocturnal species, but its implications for population dynamics and inter-specific interactions remain to be investigated.
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Citations

Evens, R., Lathouwers, M., Pradervand, J.-N., Jechow, A., Kyba, C., Shatwell, T., Jacot, A., Ulenaers, E., Kempenaers, B., & Eens, M. (2023). Skyglow relieves a crepuscular bird from visual constraints on being active. Science of The Total Environment, 900(900), 165760. https://doi.org/10.1016/j.scitotenv.2023.165760 (Original work published 2023)