Introduced species and extreme weather as key drivers of reproductive output in three sympatric albatrosses

Author:

Cleeland Jaimie B.ORCID,Pardo Deborah,Raymond Ben,Terauds Aleks,Alderman Rachael,McMahon Clive R.ORCID,Phillips Richard A.,Lea Mary-AnneORCID,Hindell Mark A.ORCID

Abstract

AbstractInvasive species present a major conservation threat globally and nowhere are their affects more pronounced than in island ecosystems. Determining how native island populations respond demographically to invasive species can provide information to mitigate the negative effects of invasive species. Using 20 years of mark-recapture data from three sympatric species of albatrosses (black-browed Thalassarche melanophris, grey-headed T. chrysostoma, and light-mantled albatrosses Phoebetria palpebrata), we quantified the influence of invasive European rabbits Oryctolagus cuniculus and extreme weather patterns on breeding probability and success. Temporal variability in rabbit density explained 33–76% of the variability in breeding probability for all three species, with severe decreases in breeding probability observed after a lag period following highest rabbit numbers. For black-browed albatrosses, the combination of extreme rainfall and high rabbit density explained 33% of total trait variability and dramatically reduced breeding success. We showed that invasive rabbits and extreme weather events reduce reproductive output in albatrosses and that eliminating rabbits had a positive effect on albatross reproduction. This illustrates how active animal management at a local breeding site can result in positive population outcomes even for wide ranging animals like albatrosses where influencing vital rates during their at-sea migrations is more challenging.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference63 articles.

1. Vitousek, P. M., D’Antonio, C. M., Loope, L. L. & Westbrooks, R. Biological invasions as global environmental change. American Scientist 84, 468–478 (1996).

2. Bergstrom, D. M. et al. Indirect effects of invasive species removal devastate World Heritage Island. Journal of Applied Ecology 46, 73–81, https://doi.org/10.1111/j.1365-2664.2008.01601.x (2009).

3. Berglund, H., Järemo, J. & Bengtsson, G. Endemism predicts intrinsic vulnerability to nonindigenous species on islands. American Naturalist 174, 94–101, https://doi.org/10.1086/598501 (2009).

4. Smith, V. R. & Steenkamp, M. Climatic change and its ecological implications at a subantarctic island. Oecologia 85, 14–24, https://doi.org/10.1007/BF00317338 (1990).

5. IPCC. Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation. A Special Report of Working Groups I and II of the Intergovernmental Panel on Climate Change. 582 (Cambridge University Press, 2012).

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