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Land cover and natural riverscape heterogeneity shape in-stream thermal regimes: Implications for Atlantic salmon (Salmo salar) conservation

2026/07/23 by Hugo Reis Medeiros, Ben R. Collison, Kevin Ferris +3 · 1 voice
Environmental Science · #Fish Ecology and Management Studies #Physiological and biochemical adaptations #Species Distribution and Climate Change

paper · doi:10.1016/j.scitotenv.2026.182063

openalex publication_date 2026/07/23 · openalex created_date 2026/07/24 · openalex updated_date 2026/07/25

Abstract

Atlantic salmon (Salmo salar) populations continue to experience significant declines across the North Atlantic due to a myriad of factors including acidification, invasive species, and warming waters related to climate change. Temperature is a key habitat metric for salmonids but the underlying factors that drive riverine thermal regimes, and the fine-scale thermal suitability of ecologically significant salmon watersheds in the province of Nova Scotia, Canada, remains largely unknown. Here, we combined field data with a machine learning approach to: (i) identify the main environmental factors driving riverine thermal variability in two large watersheds in the Nova Scotia Southern Uplands region; and (ii) examine thermal habitat suitability for Atlantic salmon in the ∼2313 km of river network that comprise the studied watersheds. We found that riparian forest cover, landscape forest cover, and elevation had a significant cooling influence on water temperature, whereas slope, wetlands and developed areas had a warming effect. Our predictions and thermal suitability maps suggest that 55% (∼ 666 km) of the LaHave River (1214 km) and 22% (∼235 km) of the St. Mary's River (1072 km) are predicted to have stressful average temperatures for adults during the summer. Daily maximum temperature exceeded 20 °C for more than 40% of the study period in 89% (∼ 1084 km) of LaHave River, and 84% (∼ 903 km) of St. Mary's River. Daily maximum temperature exceeded 23 °C over 40% of the study period in 26% (∼ 318 km) of LaHave River, and 10% (∼ 110 km) of St. Mary's River. Significant reaches of both river networks are approaching stressful conditions for adult Atlantic salmon in the warmer months, while thermal conditions are more tolerable to juveniles. Such scenarios underscore the importance of protecting high-quality habitats and thermal refugia, without which salmon populations in this region are unlikely to recover.

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