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Mercury Stable Isotopes Reveal Influence of Foraging Depth on Mercury Concentrations and Growth in Pacific Bluefin Tuna

  • Daniel J. Madigan
  • , Miling Li
  • , Runsheng Yin
  • , Hannes Baumann
  • , Owyn E. Snodgrass
  • , Heidi Dewar
  • , David P. Krabbenhoft
  • , Zofia Baumann
  • , Nicholas S. Fisher
  • , Prentiss Balcom
  • , Elsie M. Sunderland
  • Harvard University
  • Gulf of California International Research Center
  • CAS - Institute of Geochemistry
  • United States Geological Survey
  • University of Connecticut
  • National Oceanic and Atmospheric Administration

Research output: Contribution to journalArticlepeer-review

65 Scopus citations

Abstract

Pelagic ecosystems are changing due to environmental and anthropogenic forces, with uncertain consequences for the ocean's top predators. Epipelagic and mesopelagic prey resources differ in quality and quantity, but their relative contribution to predator diets has been difficult to track. We measured mercury (Hg) stable isotopes in young (<2 years old) Pacific bluefin tuna (PBFT) and their prey species to explore the influence of foraging depth on growth and methylmercury (MeHg) exposure. PBFT total Hg (THg) in muscle ranged from 0.61 to 1.93 μg g-1 dw (1.31 μg g-1 dw ±0.37 SD; 99% ± 6% MeHg) and prey ranged from 0.01 to 1.76 μg g-1 dw (0.13 μg g-1 dw ±0.19 SD; 85% ± 18% MeHg). A systematic decrease in prey Î202Hg and Î"199Hg with increasing depth of occurrence and discrete isotopic signatures of epipelagic prey (Î202Hg: 0.74 to 1.49‰ Î"199Hg: 1.76-2.96‰) and mesopelagic prey (Î202Hg: 0.09 to 0.90‰ Î"199Hg: 0.62-1.95‰) allowed the use of Hg isotopes to track PBFT foraging depth. An isotopic mixing model was used to estimate the dietary proportion of mesopelagic prey in PBFT, which ranged from 17% to 55%. Increased mesopelagic foraging was significantly correlated with slower growth and higher MeHg concentrations in PBFT. The slower observed growth rates suggest that prey availability and quality could reduce the production of PBFT biomass.

Original languageEnglish
Pages (from-to)6256-6264
Number of pages9
JournalEnvironmental Science and Technology
Volume52
Issue number11
DOIs
StatePublished - Jun 5 2018

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