Literature DB >> 21793485

Critical tissue residue approach linking accumulated metals in aquatic insects to population and community-level effects.

Travis S Schmidt1, William H Clements, Robert E Zuellig, Katharine A Mitchell, Stanley E Church, Richard B Wanty, Carma A San Juan, Monique Adams, Paul J Lamothe.   

Abstract

Whole body Zn concentrations in individuals (n = 825) from three aquatic insect taxa (mayflies Rhithrogena spp. and Drunella spp. and the caddisfly Arctopsyche grandis) were used to predict effects on populations and communities (n = 149 samples). Both mayflies accumulated significantly more Zn than the caddisfly. The presence/absence of Drunella spp. most reliably distinguished sites with low and high Zn concentrations; however, population densities of mayflies were more sensitive to increases in accumulated Zn. Critical tissue residues (634 μg/g Zn for Drunella spp. and 267 μg/g Zn for Rhithrogena spp.) caused a 20% reduction in maximum (90th quantile) mayfly densities. These critical tissue residues were associated with exposure to 7.0 and 3.9 μg/L dissolved Zn for Drunella spp. and Rhithrogena spp., respectively. A threshold in a measure of taxonomic completeness (observed/expected) was observed at 5.4 μg/L dissolved Zn. Dissolved Zn concentrations associated with critical tissue residues in mayflies were also associated with adverse effects in the aquatic community as a whole. These effects on populations and communities occurred at Zn concentrations below the U.S. EPA hardness-adjusted continuous chronic criterion.

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Year:  2011        PMID: 21793485     DOI: 10.1021/es200215s

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


  2 in total

1.  Critical body residues, Michaelis-Menten analysis of bioaccumulation, lethality and behaviour as endpoints of waterborne Ni toxicity in two teleosts.

Authors:  Erin M Leonard; Julie R Marentette; Sigal Balshine; Chris M Wood
Journal:  Ecotoxicology       Date:  2014-01-09       Impact factor: 2.823

2.  Bioaccumulation and Toxicity of Cadmium, Copper, Nickel, and Zinc and Their Mixtures to Aquatic Insect Communities.

Authors:  Christopher A Mebane; Travis S Schmidt; Janet L Miller; Laurie S Balistrieri
Journal:  Environ Toxicol Chem       Date:  2020-04       Impact factor: 3.742

  2 in total

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