Dear colleagues,
On behalf of my co-authors, I am pleased to announce our new publication:
Stern, J.H., Laidre, K.L.,
Born, E.W., Wiig, Ø., Sonne, C., Dietz, R., Fisk, A. and McKinney, M.A., 2021.
Feeding habits of Baffin Bay polar bears Ursus maritimus: insight from stable
isotopes and total mercury in hair. Marine Ecology Progress Series, 677,
pp.233-244.
https://doi.org/10.3354/meps13864
https://www.int-res.com/abstracts/meps/v677/p233-244/
ABSTRACT: Loss of sea ice brought on by climate change affects polar bear Ursus
maritimus access to prey. Here we investigated variation in feeding habits
of the Baffin Bay (BB) polar bear subpopulation in relation to sea ice, habitat
use, season, and demography using hair carbon (δ13 C), nitrogen (δ15 N), and
sulfur (δ34 S) stable isotope values and total mercury (THg) concentrations as
ecological tracers. We analyzed hair samples from BB polar bears (n = 131) of
all age and sex classes live-captured in West Greenland during the spring in
2009−2013. BB polar bears occupied a narrow isotopic space, suggesting limited
variation in carbon sources and trophic position within the subpopulation. THg
concentrations (median ± SE: 5.1 ± 0.2, range: 0.3−12.5 μg g −1 dry weight, DW)
were related to age class, and nearly half exceeded the suggested threshold for
neurological effects in polar bears at 5.4 μg g −1 DW. Although distinct coastal
and offshore space-use strategies have been reported for BB polar bears, our
results suggest that both strategies lead to similar carbon sources and trophic
positions. We found seasonal variation in δ13 C and δ34 S across both space-use
strategies, with δ34 S suggesting that all BB polar bears may prey on a higher
proportion of benthic-feeding bearded seals Erignathus barbatus in late
summer relative to spring. Despite wide fluctuations in inter-annual sea ice
conditions and differences in space-use strategies among individuals, stable
isotope values and THg concentrations suggested limited variation in feeding
habits among BB polar bears. The variation of habitat tracers (δ13 C and δ34 S)
was related to season, whereas trophic tracer (δ15 N and THg) variation was
driven by demographic group. The specialized BB polar bear diet suggests
limited feeding plasticity under continued climate warming.
Please feel free to contact me at jhstern@uw.edu
if you have any questions.
Best,
Jennifer Stern
--
Jennifer H. Stern, PhD Student
Laidre Lab
School of Aquatic & Fishery Sciences
University of Washington