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High contributions of sea ice derived carbon in polar bear (Ursus maritimus) tissue

  • Thomas Adam Brown
  • , Melissa Galicia
  • , Gregory Thiemann
  • , Simon T. Belt
  • , David Yurkowski
  • , Markus Dyck

    科研成果: Article同行评审

    53 引用 (Scopus)
    218 下载量 (Pure)

    摘要

    Polar bears (Ursus maritimus) rely upon Arctic sea ice as a physical habitat. Consequently, conservation assessments of polar bears identify the ongoing reduction in sea ice to represent a significant threat to their survival. However, the additional role of sea ice as a potential, indirect, source of energy to bears has been overlooked. Here we used the highly branched isoprenoid lipid biomarker-based index (H-Print) approach in combination with quantitative fatty acid signature analysis to show that sympagic (sea ice-associated), rather than pelagic, carbon contributions dominated the marine component of polar bear diet (72–100%; 99% CI, n = 55), irrespective of differences in diet composition. The lowest mean estimates of sympagic carbon were found in Baffin Bay bears, which were also exposed to the most rapidly increasing open water season. Therefore, our data illustrate that for future Arctic ecosystems that are likely to be characterised by reduced sea ice cover, polar bears will not only be impacted by a change in their physical habitat, but also potentially in the supply of energy to the ecosystems upon which they depend. This data represents the first quantifiable baseline that is critical for the assessment of likely ongoing changes in energy supply to Arctic predators as we move into an increasingly uncertain future for polar ecosystems.
    源语言English
    页(从-至)1-13
    页数13
    期刊PLoS ONE
    DOI
    出版状态Published - 23 1月 2018

    联合国可持续发展目标

    此成果有助于实现下列可持续发展目标:

    1. Clean water and sanitation
      Clean water and sanitation
    2. Life below water
      Life below water

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