Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?

Arctic-breeding geese are at record high population levels and are causing significant changes to some of their breeding and staging habitats. These changes could influence sympatric wildlife, but the nature and strength of these effects are unknown. Here, we review the interactions between geese an...

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Main Authors: Flemming, Scott Allan, Calvert, Anna, Nol, Erica, Smith, Paul Allen
Format: Review
Language:unknown
Published: NRC Research Press (a division of Canadian Science Publishing) 2016
Subjects:
Online Access:http://hdl.handle.net/1807/73479
http://www.nrcresearchpress.com/doi/abs/10.1139/er-2016-0007
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spelling ftunivtoronto:oai:localhost:1807/73479 2023-05-15T14:29:34+02:00 Do hyperabundant Arctic-nesting geese pose a problem for sympatric species? Flemming, Scott Allan Calvert, Anna Nol, Erica Smith, Paul Allen 2016-05-30 http://hdl.handle.net/1807/73479 http://www.nrcresearchpress.com/doi/abs/10.1139/er-2016-0007 unknown NRC Research Press (a division of Canadian Science Publishing) 1208-6053 http://hdl.handle.net/1807/73479 http://www.nrcresearchpress.com/doi/abs/10.1139/er-2016-0007 Review 2016 ftunivtoronto 2020-06-17T12:00:29Z Arctic-breeding geese are at record high population levels and are causing significant changes to some of their breeding and staging habitats. These changes could influence sympatric wildlife, but the nature and strength of these effects are unknown. Here, we review the interactions between geese and sympatric species and propose future research that could help to fill important knowledge gaps. We suggest that geese may be indirectly affecting other species through changes to nesting habitat, prey availability, and predator-prey interactions. Many ground-nesting Arctic birds prefer vegetated wet tundra habitats that offer concealed nest sites; areas also heavily used by breeding and staging geese. Where goose foraging exceeds the capacity of the plants to regenerate, habitats have shorter gramminoids and more exposed substrate, potentially reducing the availability of concealed nest sites for other birds. Studies have documented local reductions in the abundance of these concealed-nesting species, such as shorebirds. Despite the nutrient enrichment contributed by goose faeces, habitats heavily altered by geese have also been shown to host a reduced diversity and abundance of some invertebrate groups. In contrast, generalist predators show positive functional and numerical responses to the presence of breeding geese. Therefore, the risk of predation for alternative or incidental prey (e.g., lemmings or small bird nests) is likely elevated within or near breeding colonies. Studies have demonstrated a reduced abundance of small mammals in areas heavily used by geese, but it is unknown whether this is related to shared predators or habitat alteration. Sympatric wildlife could be further affected through higher stress-levels, altered body condition, or other physiological effects, but there is currently no evidence to demonstrate such impacts. Few studies have explored the potential effects of geese at larger spatial scales, but we suggest that hyperabundant geese could result in regional declines in the abundance and diversity shorebirds and passerines. We recommend coordinated studies across multiple regions to quantify nesting habitat, arthropod communities, and predator-prey interactions in response to nearby goose colonies. To align with current multispecies approaches to conservation, adequate knowledge of the potential effects of hyperabundant goose populations on other wildlife should be a priority. The accepted manuscript in pdf format is listed with the files at the bottom of this page. The presentation of the authors' names and (or) special characters in the title of the manuscript may differ slightly between what is listed on this page and what is listed in the pdf file of the accepted manuscript; that in the pdf file of the accepted manuscript is what was submitted by the author. Review Arctic birds Arctic Tundra University of Toronto: Research Repository T-Space Arctic
institution Open Polar
collection University of Toronto: Research Repository T-Space
op_collection_id ftunivtoronto
language unknown
description Arctic-breeding geese are at record high population levels and are causing significant changes to some of their breeding and staging habitats. These changes could influence sympatric wildlife, but the nature and strength of these effects are unknown. Here, we review the interactions between geese and sympatric species and propose future research that could help to fill important knowledge gaps. We suggest that geese may be indirectly affecting other species through changes to nesting habitat, prey availability, and predator-prey interactions. Many ground-nesting Arctic birds prefer vegetated wet tundra habitats that offer concealed nest sites; areas also heavily used by breeding and staging geese. Where goose foraging exceeds the capacity of the plants to regenerate, habitats have shorter gramminoids and more exposed substrate, potentially reducing the availability of concealed nest sites for other birds. Studies have documented local reductions in the abundance of these concealed-nesting species, such as shorebirds. Despite the nutrient enrichment contributed by goose faeces, habitats heavily altered by geese have also been shown to host a reduced diversity and abundance of some invertebrate groups. In contrast, generalist predators show positive functional and numerical responses to the presence of breeding geese. Therefore, the risk of predation for alternative or incidental prey (e.g., lemmings or small bird nests) is likely elevated within or near breeding colonies. Studies have demonstrated a reduced abundance of small mammals in areas heavily used by geese, but it is unknown whether this is related to shared predators or habitat alteration. Sympatric wildlife could be further affected through higher stress-levels, altered body condition, or other physiological effects, but there is currently no evidence to demonstrate such impacts. Few studies have explored the potential effects of geese at larger spatial scales, but we suggest that hyperabundant geese could result in regional declines in the abundance and diversity shorebirds and passerines. We recommend coordinated studies across multiple regions to quantify nesting habitat, arthropod communities, and predator-prey interactions in response to nearby goose colonies. To align with current multispecies approaches to conservation, adequate knowledge of the potential effects of hyperabundant goose populations on other wildlife should be a priority. The accepted manuscript in pdf format is listed with the files at the bottom of this page. The presentation of the authors' names and (or) special characters in the title of the manuscript may differ slightly between what is listed on this page and what is listed in the pdf file of the accepted manuscript; that in the pdf file of the accepted manuscript is what was submitted by the author.
format Review
author Flemming, Scott Allan
Calvert, Anna
Nol, Erica
Smith, Paul Allen
spellingShingle Flemming, Scott Allan
Calvert, Anna
Nol, Erica
Smith, Paul Allen
Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?
author_facet Flemming, Scott Allan
Calvert, Anna
Nol, Erica
Smith, Paul Allen
author_sort Flemming, Scott Allan
title Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?
title_short Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?
title_full Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?
title_fullStr Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?
title_full_unstemmed Do hyperabundant Arctic-nesting geese pose a problem for sympatric species?
title_sort do hyperabundant arctic-nesting geese pose a problem for sympatric species?
publisher NRC Research Press (a division of Canadian Science Publishing)
publishDate 2016
url http://hdl.handle.net/1807/73479
http://www.nrcresearchpress.com/doi/abs/10.1139/er-2016-0007
geographic Arctic
geographic_facet Arctic
genre Arctic birds
Arctic
Tundra
genre_facet Arctic birds
Arctic
Tundra
op_relation 1208-6053
http://hdl.handle.net/1807/73479
http://www.nrcresearchpress.com/doi/abs/10.1139/er-2016-0007
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