4.7 Article

Correlation of trace element concentrations between epidermis and internal organ tissues in Indo-Pacific humpback dolphins (Sousa chinensis)

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 605, Issue -, Pages 238-245

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.scitotenv.2017.06.180

Keywords

Trace elements; Sousa chinensis; Pearl River estuary; Epidermis sampling; Internal tissues

Funding

  1. Natural Science Foundation of China [41576128, 41276147]
  2. Administration of Ocean and Fisheries of Guangdong Province
  3. Ocean Park Conservation Foundation, Hong Kong (OPCFHK), China

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Trace element accumulation in the epidermis of cetaceans has been less studied. This study explored the feasibility of using epidermis as a surrogate tissue to evaluate internal contaminant burdens in Indo-Pacific humpback dolphin (Sousa chinensis). Eleven trace elements were analyzed in the epidermis, muscle and liver tissues from 46 individuals of dolphins stranded along the Pearl River Estuary (PRE) coast between 2007 and 2013. Trace elemental concentrations varied among the three tissues, generally with the highest concentrations found in liver tissues and lowest in the epidermis (except Zn, As, and Pb). Zn concentration in the epidermis was the highest among all tissues, indicating that Zn could be an important element for the epidermis physiology. High concentrations of Hg and Cr in liver were likely due to an excessive intake by dolphins which consumed high Hg and Cr contaminated fishes in the PRE. Hg concentrations in epidermis and muscle tissues were significantly higher in the females than in males. Concentrations of V and Pb in liver, Se and Cd in both muscle and liver, and As and Hg in all tissue samples showed significantly positive relationships with body length. Hepatic Cu concentrations were significantly negatively correlated with the body length. Hg and As concentrations in epidermis showed significantly positive correlations with those in liver tissues. Thus this study proposed that epidermis could be used as a non-invasive monitoring tissue to evaluate Hg and As bioaccumulation in internal tissues of Indo-Pacific humpback dolphins populations. (C) 2017 Elsevier B.V. All rights reserved.

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