Literature DB >> 31441959

Relationship Between Methylmercury Contamination and Proportion of Aquatic and Terrestrial Prey in Diets of Shoreline Spiders.

Celeste L Ortega-Rodriguez1, Matthew M Chumchal1, Ray W Drenner1, James H Kennedy2, Weston H Nowlin3, Benjamin D Barst4, D Kirkland Polk1, MacGregor N Hall1, Edward B Williams1, Kyle C Lauck1, Andrea Santa-Rios5, Niladri Basu5.   

Abstract

Terrestrial organisms such as shoreline spiders that consume prey from aquatic food webs can be contaminated with methylmercury (MeHg). However, no studies have examined the relationship between MeHg contamination of shoreline spider taxa and the proportion of aquatic and terrestrial prey in their diets. The present study had 2 objectives: 1) determine concentrations of MeHg in 7 taxa of shoreline spiders, and 2) assess the relationship between concentrations of MeHg in spiders and the proportion of aquatic and terrestrial prey in spider diets. We collected shoreline spiders, emergent aquatic insects, and terrestrial insects from in and around 10 experimental ponds. Methylmercury concentrations were greatest in spiders, intermediate in aquatic insects, and lowest in terrestrial insects. The elevated MeHg concentrations in spiders indicate that they were feeding, at least in part, on emergent aquatic insects. However, variability in MeHg concentration observed among spider taxa suggested that the proportion of aquatic and terrestrial prey in spider diets likely varied among taxa. We estimated the proportion of aquatic and terrestrial prey in the diet of each spider taxon from the nitrogen (δ15 N) and carbon (δ13 C) isotope values of spiders and their potential aquatic and terrestrial prey items. The median proportion of aquatic prey in spider diets varied by almost 2-fold, and MeHg concentrations in shoreline spiders were strongly correlated with the proportion of aquatic prey in their diet. In the present study, we demonstrate for the first time that the degree of connectivity to aquatic food webs determines MeHg contamination of shoreline spiders. Environ Toxicol Chem 2019;38:2503-2508.
© 2019 SETAC. © 2019 SETAC.

Entities:  

Keywords:  Food webs; Mercury; Ponds; Spiders

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Year:  2019        PMID: 31441959     DOI: 10.1002/etc.4579

Source DB:  PubMed          Journal:  Environ Toxicol Chem        ISSN: 0730-7268            Impact factor:   3.742


  3 in total

1.  Disentangling interactions among mercury, immunity and infection in a Neotropical bat community.

Authors:  Daniel J Becker; Kelly A Speer; Jennifer M Korstian; Dmitriy V Volokhov; Hannah F Droke; Alexis M Brown; Catherene L Baijnauth; Ticha Padgett-Stewart; Hugh G Broders; Raina K Plowright; Thomas R Rainwater; M Brock Fenton; Nancy B Simmons; Matthew M Chumchal
Journal:  J Appl Ecol       Date:  2020-12-07       Impact factor: 6.528

2.  Examining historical mercury sources in the Saint Louis River estuary: How legacy contamination influences biological mercury levels in Great Lakes coastal regions.

Authors:  Sarah E Janssen; Joel C Hoffman; Ryan F Lepak; David P Krabbenhoft; David Walters; Collin A Eagles-Smith; Greg Peterson; Jacob M Ogorek; John F DeWild; Anne Cotter; Mark Pearson; Michael T Tate; Roger B Yeardley; Marc A Mills
Journal:  Sci Total Environ       Date:  2021-03-13       Impact factor: 10.753

3.  Differential reliance on aquatic prey subsidies influences mercury exposure in riparian arachnids and songbirds.

Authors:  Allyson K Jackson; Collin A Eagles-Smith; W Douglas Robinson
Journal:  Ecol Evol       Date:  2021-05-01       Impact factor: 2.912

  3 in total

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