Energetic trade-offs in migration decision-making, reproductive effort and subsequent parental care in a long-distance migratory bird

Author:

Schindler Alexander R.1ORCID,Fox Anthony D.2ORCID,Wikle Christopher K.3ORCID,Ballard Bart M.4ORCID,Walsh Alyn J.5,Kelly Seán B. A.5ORCID,Cao Lei67ORCID,Griffin Larry R.89ORCID,Weegman Mitch D.1ORCID

Affiliation:

1. Department of Biology, University of Saskatchewan, 112 Science Place, Saskatoon, Saskatchewan, S7N 5E2, Canada

2. Department of Ecoscience, Aarhus University, C.F. Møllers Allé 4–8, 8000, Aarhus C, Denmark

3. Department of Statistics, University of Missouri, Columbia, MO 65211, USA

4. Caesar Kleberg Wildlife Research Institute, Texas A&M University-Kingsville, Kingsville, TX 78363, USA

5. National Parks and Wildlife Service, Dublin, D07 N7CV, Ireland

6. State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, People's Republic of China

7. University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China

8. Wildfowl & Wetlands Trust, Slimbridge, Gloucester GL2 7BT, UK

9. ECO-LG Limited, Crooks House, Mabie, Dumfries, DG2 8EY, UK

Abstract

Migratory species trade-off long-distance movement with survival and reproduction, but the spatio-temporal scales at which these decisions occur are relatively unknown. Technological and statistical advances allow fine-scale study of animal decision-making, improving our understanding of possible causes and therefore conservation management. We quantified effects of reproductive preparation during spring migration on subsequent breeding outcomes, breeding outcomes on autumn migration characteristics and autumn migration characteristics on subsequent parental survival in Greenland white-fronted geese ( Anser albifrons flavirostris ). These are long-distance migratory birds with an approximately 50% population decline from 1999 to 2022. We deployed GPS-acceleration devices on adult females to quantify up to 5 years of individual decision-making throughout the annual cycle. Weather and habitat-use affected time spent feeding and overall dynamic body acceleration (i.e. energy expenditure) during spring and autumn. Geese that expended less energy and fed longer during spring were more likely to successfully reproduce. Geese with offspring expended more energy and fed for less time during autumn, potentially representing adverse fitness consequences of breeding. These behavioural comparisons among Greenland white-fronted geese improve our understanding of fitness trade-offs underlying abundance. We provide a reproducible framework for full annual cycle modelling using location and behaviour data, applicable to similarly studied migratory animals.

Funder

National Parks and Wildlife Service

Dorris D. and Christine M. Brown Fellowship

University of Saskatchewan

University of Missouri

Wildfowl & Wetlands Trust

Institute for Wetland and Waterfowl Research, Ducks Unlimited Canada

Ducks Unlimited Inc.

Chinese Academy of Sciences

Publisher

The Royal Society

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