Population-level impacts of reducing artificial light at night across an entire migratory corridor

Artificial light at night (ALAN) is a widespread anthropogenic pollution that poses challenges for wildlife in nearly every ecosystem on planet Earth. Although there has been substantial progress on understanding the effects of ALAN on animal physiology and behaviour, few studies have estimated its population-level impacts in the wild, leaving the potential conservation benefits of ALAN reduction unresolved. Here, we evaluated the population-level effect of ALAN reduction through its impact on juvenile Chinook salmon (Oncorhynchus tshawytscha) vulnerability to predation during oceanward migration through California's Sacramento-San Joaquin Delta (Delta). Removal of all ALAN sources was conservatively predicted to allow up to 1123 additional successful migrants per million migration attempts, depending on the baseline rate of through-Delta migration success and phototaxic behaviour. Reducing the impact of ALAN in this system could have small but worthwhile benefits for salmon at a cost and degree of contention that is trivial compared with many other habitat restoration actions.

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Publication Details

Journal
Biology Letters
Published
2026-09-09
DOI
https://doi.org/10.1098/rsbl.2026.0304
Primary Topic
Impact of Light on Environment and Health
Type
article
Field-Weighted Citation Impact
0.00

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article

Population-level impacts of reducing artificial light at night across an entire migratory corridor

Brendan M. Lehman, Nicholas J. Demetras, Benjamin P. Burford, Thomas R. Nelson et al.
Biology Letters
Impact of Light on Environment and Health
article

Population-level impacts of reducing artificial light at night across an entire migratory corridor

Brendan M. Lehman, Nicholas J. Demetras, Benjamin P. Burford, Thomas R. Nelson, Cyril Michel
article en

Abstract

Artificial light at night (ALAN) is a widespread anthropogenic pollution that poses challenges for wildlife in nearly every ecosystem on planet Earth. Although there has been substantial progress on understanding the effects of ALAN on animal physiology and behaviour, few studies have estimated its population-level impacts in the wild, leaving the potential conservation benefits of ALAN reduction unresolved. Here, we evaluated the population-level effect of ALAN reduction through its impact on juvenile Chinook salmon (Oncorhynchus tshawytscha) vulnerability to predation during oceanward migration through California's Sacramento-San Joaquin Delta (Delta). Removal of all ALAN sources was conservatively predicted to allow up to 1123 additional successful migrants per million migration attempts, depending on the baseline rate of through-Delta migration success and phototaxic behaviour. Reducing the impact of ALAN in this system could have small but worthwhile benefits for salmon at a cost and degree of contention that is trivial compared with many other habitat restoration actions.

Biology LettersVol. 22(9)
NOAA National Marine Fisheries Service (US), National Oceanic and Atmospheric Administration (US), George Mason University (US), University of California, Santa Cruz (US)
Bureau of Reclamation
Life below water
Openalex Percentile: Top 31%
Impact of Light on Environment and Health
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Population-level impacts of reducing artificial light at night across an entire migratory corridor — Brendan M. Lehman, Nicholas J. Demetras, et al. · Biology Letters (2026) | TGRS Research Map | TGRS