The cost of limited nocturnal roost availability on pre-migratory energy budgets in a central-place foraging shorebird, Numenius hudsonicus (Hudsonian Whimbrel)

Abstract Mobile species often travel long distances between the sites they use for different behaviors, such as central-place foragers that make daily commutes between a central roost and foraging sites. For migratory shorebird species that use coastal habitats, the limited availability of suitable nocturnal roost sites can lead individuals to commute long distances to their foraging territories, forcing them to balance the energetic cost of commuting with the need to refuel in between migratory flights. We investigated this potential trade-off in a population of Numenius hudsonicus (Hudsonian Whimbrel) that show wide variation in commute distance between a shared central nocturnal roost and individual foraging territories in coastal South Carolina, USA. We combined high-resolution movement data, behavioral state modeling, and empirical foraging behavior data to assess how increasing commute distances from a central nocturnal roost affect individual daily activity budgets, foraging habitat use, potential net energy gain, and breeding ground departure date. We found that N. hudsonicus that commute farther from their nocturnal roost spend a higher proportion of each day foraging and commuting, and that they delay their departure to the breeding grounds by 3–6 days. Our results indicate that roosting habitat close to foraging areas can reduce the energetic cost of commuting to help shorebirds avoid delays in migratory timing. Thus, protecting, restoring, and creating nocturnal roosting habitat close to foraging areas may enhance successful shorebird migration.

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Publication Details

Journal
Ornithological Applications
Published
2026-09-17
DOI
https://doi.org/10.1093/ornithapp/duag088
Primary Topic
Avian ecology and behavior
Type
article
Field-Weighted Citation Impact
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article

The cost of limited nocturnal roost availability on pre-migratory energy budgets in a central-place foraging shorebird, Numenius hudsonicus (Hudsonian Whimbrel)

Ethan P. Shealy, Natasza Fontaine, Nathan R. Senner, Janet M. Thibault et al.
Ornithological Applications
Avian ecology and behavior
article

The cost of limited nocturnal roost availability on pre-migratory energy budgets in a central-place foraging shorebird, Numenius hudsonicus (Hudsonian Whimbrel)

Ethan P. Shealy, Natasza Fontaine, Nathan R. Senner, Janet M. Thibault, Adam Smith, Mary Catherine Martin, Maina Handmaker, Cory R. Elowe, Madelyn B. Kaplin, Camille Duquet, Felicia J. Sanders, Abby V. Sterling, Graziella V Direnzo
article en

Abstract

Abstract Mobile species often travel long distances between the sites they use for different behaviors, such as central-place foragers that make daily commutes between a central roost and foraging sites. For migratory shorebird species that use coastal habitats, the limited availability of suitable nocturnal roost sites can lead individuals to commute long distances to their foraging territories, forcing them to balance the energetic cost of commuting with the need to refuel in between migratory flights. We investigated this potential trade-off in a population of Numenius hudsonicus (Hudsonian Whimbrel) that show wide variation in commute distance between a shared central nocturnal roost and individual foraging territories in coastal South Carolina, USA. We combined high-resolution movement data, behavioral state modeling, and empirical foraging behavior data to assess how increasing commute distances from a central nocturnal roost affect individual daily activity budgets, foraging habitat use, potential net energy gain, and breeding ground departure date. We found that N. hudsonicus that commute farther from their nocturnal roost spend a higher proportion of each day foraging and commuting, and that they delay their departure to the breeding grounds by 3–6 days. Our results indicate that roosting habitat close to foraging areas can reduce the energetic cost of commuting to help shorebirds avoid delays in migratory timing. Thus, protecting, restoring, and creating nocturnal roosting habitat close to foraging areas may enhance successful shorebird migration.

Ornithological Applications
The Nature Conservancy (US), United States Geological Survey (US), National Audubon Society (US), Massachusetts Audubon Society (US), South Carolina Department of Natural Resources (US), Northern Michigan University (US), Coastal Carolina University (US), University of Massachusetts Amherst (US), Colorado Parks and Wildlife (US), Savannah River National Laboratory (US), Bird Conservancy of the Rockies (US), Manomet Conservation Sciences (US)
Openalex Percentile: Top 11%
Avian ecology and behavior
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