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Intrinsic tracers reveal recent foraging ecology of giant Pacific bluefin tuna at their primary spawning grounds

  • Daniel J. Madigan
  • , Wei Chuan Chiang
  • , Natalie J. Wallsgrove
  • , Brian N. Popp
  • , Takashi Kitagawa
  • , C. Anela Choy
  • , Jocelyn Tallmon
  • , Nazmul Ahmed
  • , Nicholas S. Fisher
  • , Chi Lu Sun
  • Harvard University
  • Council of Agriculture Taiwan
  • University of Hawai'i at Mānoa
  • The University of Tokyo
  • Monterey Bay Aquarium Research Institute
  • Stony Brook University
  • National Taiwan Ocean University
  • National Taiwan University

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Pacific bluefin tuna Thunnus orientalis (PBFT) play important economic and ecological roles in the western Pacific Ocean. We currently lack basic information on PBFT foraging that would facilitate ecologically informed recovery strategies for this species. We used stable isotope analysis to investigate recent (previous ∼1.5 yr based on isotopic turnover rate) trophic ecology of 261 giant (<180 cm), sexually mature PBFT entering their major spawning grounds off Taiwan. We performed amino acid-compound specific isotope analysis (AA-CSIA) on a subset of PBFT and select prey to assess the trophic position of PBFT in the western Pacific and to validate putative recent trans-Pacific migration from the eastern Pacific Ocean. Bayesian isotopic mixing model results suggested recent PBFT foraging off eastern Japan and in the Kuroshio-Oyashio transition region, with minimal inputs from the Sea of Japan and Taiwan waters. PBFT did not appear to feed primarily on zooplanktivorous forage fish (e.g. sardine, anchovy) but on higher trophic-level prey including mackerels, squids, and pomfrets. AA-CSIA confirmed a high trophic position (<5) of PBFT in this region and identified putative recent trans-Pacific migration of 2 individuals. This study identifies the prey base that sustains giant PBFT before migrating to spawning grounds off Taiwan and sets the stage for future studies comparing the movements and ecology of PBFT in the western Pacific Ocean.

Original languageEnglish
Pages (from-to)253-266
Number of pages14
JournalMarine Ecology Progress Series
Volume553
DOIs
StatePublished - Jul 14 2016

Keywords

  • AA-CSIA
  • Diet
  • Stable isotopes
  • Thunnus orientalis
  • Trophic

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