Literature DB >> 30226374

Trophic Strategies Influence Metal Bioaccumulation in Detritus-Based, Aquatic Food Webs.

Nathan J Tomczyk1,2, Thomas B Parr3, Elmer Gray4, Joseph Iburg5, Krista A Capps1,2.   

Abstract

Metal accumulation in aquatic food webs is mediated by physiochemical parameters of the environment and organismal traits. Trophic strategies influence an organisms' exposure to metal pollution, but links between trophic ecology and exposure to divalent metals are relatively understudied. While organically bound metals are typically considered unavailable for uptake, organisms directly consuming dissolved organic carbon (DOC) and bacteria-via the microbial loop-must also be consuming organically bound metals. Hence, we predicted animals feeding within the microbial loop would accumulate metals through their diet. To test this prediction, we exploited dietary differences between two organisms, Simulium vittatum, a filter-feeding black fly and Hyalella azteca, a shredding detritivore. We exposed both species to three treatments of DOC (labile, recalcitrant, and no additional DOC) that were crossed with exposure to variable copper (Cu) concentrations (2-14 μg L-1) in laboratory microcosms. As predicted, H. azteca experienced a buffering effect by DOC. However, this pattern was not apparent for S. vittatum. Our results highlight the importance of considering trophic strategies when examining the impacts of metal pollution on aquatic communities, and demonstrate the potential for the microbial loop to facilitate metal uptake in freshwater food webs.

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Year:  2018        PMID: 30226374     DOI: 10.1021/acs.est.8b04009

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  1 in total

1.  Direct and Delayed Mortality of Ceriodaphnia dubia and Rainbow Trout Following Time-Varying Acute Exposures to Zinc.

Authors:  Christopher A Mebane; Christopher D Ivey; Ning Wang; Jeffery A Steevens; Danielle Cleveland; Michael C Elias; James R Justice; Kathryn Gallagher; Robert N Brent
Journal:  Environ Toxicol Chem       Date:  2021-07-20       Impact factor: 3.742

  1 in total

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