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1.
Sci Total Environ ; 409(20): 4415-24, 2011 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-21820696

RESUMO

We previously identified dissolved cadmium (Cd(diss)) as the main source of this metal in cultured Pacific oysters, Crassostrea gigas, in Deep Bay, British Columbia, Canada (Lekhi et al., 2008). Total suspended particulate Cd (Cd(part)) was not found to be a significant source of oyster Cd (Cd(oys)), with Cd(part) >20 µm negatively correlated with Cd(oys) concentration. High phytoplankton abundance in spring and summer was hypothesized to reduce Cd(oys) indirectly by drawing down Cd(diss) and increasing oyster growth. In the present study we expanded on these results by examining specifically how the phytoplankton community composition modulates both Cd(diss) and Cd(oys) concentrations in Deep Bay. Based on calculations of nutrients and Cd(diss) drawdown, phytoplankton accounted for approximately 90% of the overall summer reduction in Cd(diss) in the bay. Diatoms were the dominant phytoplankton group, being correlated negatively with Cd(oys) and positively with Cd(part). This suggests that diatom growth mediates the transfer of Cd from the dissolved to the particulate phase, resulting in lower Cd(oys). Spring blooms and sporadic harmful algal blooms may mediate a large flux of Cd(part) to the sediments. Thus, phytoplankton act as a sink, rather than a source, of Cd to oysters in Deep Bay and have a crucial role in the seasonality of Cd(oys) by reducing the concentration of Cd(diss) during the summer. Based on environmental variables, two descriptive models for annual Cd(oys) concentrations were developed using multiple linear regression. The first model (R(2)=0.870) was created to explain the maximum variability in Cd(oys) concentrations throughout the year, while the second (R(2)=0.806) was based on parameters that could be measured easily under farm conditions. Oyster age heavily affected both models, with the first model being secondarily affected by temperature and the second one being more sensitive to changes in salinity.


Assuntos
Cádmio/análise , Ostreidae/crescimento & desenvolvimento , Fitoplâncton/crescimento & desenvolvimento , Poluentes Químicos da Água/análise , Animais , Colúmbia Britânica , Cádmio/farmacocinética , Modelos Lineares , Modelos Teóricos , Ostreidae/metabolismo , Fitoplâncton/metabolismo , Estações do Ano , Água do Mar/química , Solubilidade , Temperatura , Poluentes Químicos da Água/farmacocinética
2.
Sci Total Environ ; 393(2-3): 309-25, 2008 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-18258281

RESUMO

Pacific oysters (Crassostrea gigas) collected on the coast of British Columbia, Canada have occasionally shown cadmium (Cd) concentrations at or above 2 microg g(-1) (wet weight), which has resulted in the loss of some international markets. This study investigated the source and transfer of Cd to oysters by focusing on the role of dissolved and particulate Cd in seawater. Parameters monitored for 1 year at two oyster farm sites on Vancouver Island included: oyster tissue mass and shell length, Cd in oysters, dissolved Cd, particulate Cd, temperature and salinity. Results show that dissolved Cd was the main source of Cd to the oysters and that Cd was mainly concentrated in the gut tissues. A seasonal trend was observed in Cd in oysters, in which levels were lowest during periods of higher temperatures. Results also indicate that the local oceanographic inputs and sediment diagenesis directly affect dissolved Cd and thereby influence the Cd levels in oysters. Particulate matter was not found to be a source of Cd in oysters, and was actually negatively correlated. This was likely due to the uptake of dissolved Cd by phytoplankton and the effect of phytoplankton on oyster tissue mass.


Assuntos
Cádmio/metabolismo , Crassostrea/metabolismo , Poluentes Químicos da Água/metabolismo , Animais , Colúmbia Britânica , Cádmio/análise , Crassostrea/crescimento & desenvolvimento , Monitoramento Ambiental , Sedimentos Geológicos/análise , Fósforo/análise , Salinidade , Estações do Ano , Temperatura , Titânio/análise , Poluentes Químicos da Água/análise
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