Isotopic signatures and mercury content of arctic char and their prey, and water chemistry of 18 arctic Canadian lakes

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Autori principali: Gantner, Nikolaus, Power, Michael, Iqaluk, Deborah, Meili, Markus, Borg, Hans, Sundbom, Marcus, Solomon, Keith R, Lawson, Greg, Muir, Derek C G
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2010
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author Gantner, Nikolaus
Power, Michael
Iqaluk, Deborah
Meili, Markus
Borg, Hans
Sundbom, Marcus
Solomon, Keith R
Lawson, Greg
Muir, Derek C G
author_facet Gantner, Nikolaus
Power, Michael
Iqaluk, Deborah
Meili, Markus
Borg, Hans
Sundbom, Marcus
Solomon, Keith R
Lawson, Greg
Muir, Derek C G
collection Datos científicos de ciencias marinas y ambientales
contents Concentrations of mercury (Hg) have increased slowly in landlocked Arctic char over a 10- to 15-year period in the Arctic. Fluxes of Hg to sediments also show increases in most Arctic lakes. Correlation of Hg with trophic level (TL) was used to investigate and compare biomagnification of Hg in food webs from lakes in the Canadian Arctic sampled from 2002 to 2007. Concentrations of Hg (total Hg and methylmercury [MeHg]) in food webs were compared across longitudinal and latitudinal gradients in relation to d13C and d15N in periphyton, zooplankton, benthic invertebrates, and Arctic char of varying size-classes. Trophic magnification factors (TMFs) were calculated for the food web in each lake and related to available physical and chemical characteristics of the lakes. The relative content of MeHg increased with trophic level from 4.3 to 12.2% in periphyton, 41 to 79% in zooplankton, 59 to 72% in insects, and 74 to 100% in juvenile and adult char. The d13C signatures of adult char indicated coupling with benthic invertebrates. Cannibalism among char lengthened the food chain. Biomagnification was confirmed in all 18 lakes, with TMFs ranging from 3.5 ± 1.1 to 64.3 ± 0.8. Results indicate that TMFs and food chain length (FCL) are key factors in explaining interlake variability in biomagnification of [Hg] among different lakes.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_810149
institution PANGAEA
language en
publishDate 2010
publisher PANGAEA
record_format pangaea
spellingShingle Isotopic signatures and mercury content of arctic char and their prey, and water chemistry of 18 arctic Canadian lakes
Gantner, Nikolaus
Power, Michael
Iqaluk, Deborah
Meili, Markus
Borg, Hans
Sundbom, Marcus
Solomon, Keith R
Lawson, Greg
Muir, Derek C G
International Polar Year (2007-2008); IPY
Concentrations of mercury (Hg) have increased slowly in landlocked Arctic char over a 10- to 15-year period in the Arctic. Fluxes of Hg to sediments also show increases in most Arctic lakes. Correlation of Hg with trophic level (TL) was used to investigate and compare biomagnification of Hg in food webs from lakes in the Canadian Arctic sampled from 2002 to 2007. Concentrations of Hg (total Hg and methylmercury [MeHg]) in food webs were compared across longitudinal and latitudinal gradients in relation to d13C and d15N in periphyton, zooplankton, benthic invertebrates, and Arctic char of varying size-classes. Trophic magnification factors (TMFs) were calculated for the food web in each lake and related to available physical and chemical characteristics of the lakes. The relative content of MeHg increased with trophic level from 4.3 to 12.2% in periphyton, 41 to 79% in zooplankton, 59 to 72% in insects, and 74 to 100% in juvenile and adult char. The d13C signatures of adult char indicated coupling with benthic invertebrates. Cannibalism among char lengthened the food chain. Biomagnification was confirmed in all 18 lakes, with TMFs ranging from 3.5 ± 1.1 to 64.3 ± 0.8. Results indicate that TMFs and food chain length (FCL) are key factors in explaining interlake variability in biomagnification of [Hg] among different lakes.
title Isotopic signatures and mercury content of arctic char and their prey, and water chemistry of 18 arctic Canadian lakes
topic International Polar Year (2007-2008); IPY
url https://doi.org/10.1594/PANGAEA.810149