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Influence of natal habitat preference on habitat selection during extra-home range movements in a large ungulate

Producción científica: Articlerevisión exhaustiva

10 Citas (Scopus)

Resumen

Natal habitat preference induction (NHPI) occurs when animals exhibit a preference for new habitat that is similar to that which they experienced in their natal environment, potentially leading to post-dispersal success. While the study of NHPI is typically focused on post-settlement home ranges, we investigated how this behavior may manifest during extra-home range movements (EHRMs), both to identify exploratory prospecting behavior and assess how natal habitat cues may influence path selection before settlement. We analyzed GPS collar relocation data collected during 79 EHRMs made by 34 juvenile and subadult white-tailed deer (Odocoileus virginianus) across an agricultural landscape with highly fragmented forests in Illinois, USA. We developed a workflow to measure multidimensional natal habitat dissimilarity for each EHRM relocation and fit step-selection functions to evaluate whether natal habitat similarity explained habitat selection along movement paths. Across seasons, selection for natal habitat similarity was generally weak during excursive movements, but strong during dispersals, indicating that NHPI is manifested in dispersal habitat selection in this study system and bolstering the hypothesis that excursive movements differ functionally from dispersal. Our approach for extending the NHPI hypothesis to behavior during EHRMs can be applied to a variety of taxa and can expand our understanding of how individual behavioral variation and early life experience may shape connectivity and resistance across landscapes.

Idioma originalEnglish
Número de artículoe9794
PublicaciónEcology and Evolution
Volumen13
N.º2
DOI
EstadoPublished - feb 2023

Nota bibliográfica

Publisher Copyright:
© 2023 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd.

Financiación

This project was funded by the Illinois Department of Natural Resources (Federal Aid Project W-87-R) with further support from the Cooperative Wildlife Research Laboratory at Southern Illinois University. We thank the technicians involved in deer capture for this project: J. Borcherding, A. Edmunds, L. Hawk, D. Kahl, K. Kossel, S. Locke, C. Lockerby, A. Rosenblatt, R. Tebo, B. Tritsch, and C. Wickhem, as well as staff with the U.S. Army Corps of Engineers Lake Shelbyville Project. Thank you to K. Williams for helpful comments on an earlier draft as well as C. Milleret and two anonymous reviewers whose feedback greatly improved the strength and clarity of this manuscript. This project was funded by the Illinois Department of Natural Resources (Federal Aid Project W‐87‐R) with further support from the Cooperative Wildlife Research Laboratory at Southern Illinois University. We thank the technicians involved in deer capture for this project: J. Borcherding, A. Edmunds, L. Hawk, D. Kahl, K. Kossel, S. Locke, C. Lockerby, A. Rosenblatt, R. Tebo, B. Tritsch, and C. Wickhem, as well as staff with the U.S. Army Corps of Engineers Lake Shelbyville Project. Thank you to K. Williams for helpful comments on an earlier draft as well as C. Milleret and two anonymous reviewers whose feedback greatly improved the strength and clarity of this manuscript.

FinanciadoresNúmero del financiador
Cooperative Wildlife Research Laboratory at Southern Illinois University
U.S. Army Corps of Engineers Lake Shelbyville Project
Illinois Department of Natural ResourcesW-87-R

    ASJC Scopus subject areas

    • Ecology, Evolution, Behavior and Systematics
    • Ecology
    • Nature and Landscape Conservation

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