Serum Protein Electrophoresis Reference Intervals for Six Species of Wild-Sampled Sharks in South Florida

Author:

Shinder Samantha L1,Cray Carolyn2,Hammerschlag Neil34,Merly Liza13ORCID

Affiliation:

1. Department of Marine Biology and Ecology, Rosenstiel School of Marine and Atmospheric Science, University of Miami at Coral Gables Miami , FL 33149 , USA

2. Department of Pathology & Laboratory Medicine, Division of Comparative Pathology, University of Miami Miller School of Medicine at Miami , FL 33136 , USA

3. Shark Research and Conservation Program, Rosenstiel School of Marine and Atmospheric Science, University of Miami at Coral Gables Miami , FL 33149 , USA

4. Department of Environmental Science and Policy, Rosenstiel School of Marine and Atmospheric Science, University of Miami at Coral Gables Miami , FL 33149 , USA

Abstract

Abstract Serum proteins found in the blood have been used as diagnostic markers in both human and animal medicine. Evaluating proteins in the blood of sharks may be a valuable way to assess shark health. The purpose of this study was to perform serum protein electrophoresis from non-lethal blood samples of wild sharks and establish baseline values for six species off South Florida: blacknose (Carcharhinus acronotus), blacktip (C. limbatus), bull (C. leucas), lemon (Negaprion brevirostris), sandbar (C. plumbeus), and tiger shark (Galeocerdo cuvier). Two hundred and fifty-one serum samples were collected between 2015–2018 along with sex determination and morphometric measurements. Agarose gel analysis was performed using mammalian protein fraction delimits albumin, alpha 1-globulins, alpha 2-globulins, beta globulins, and gamma globulins alternatively defined as fractions 1–5. Reference electrophoretic profiles were established for each species, revealing the dominance of protein fractions 3 and 4. The fraction 3:4 ratio was determined for each shark and reference intervals for total solids, protein fractions, and fraction 3:4 ratio are reported for each species. There were no significant differences in total solids or protein fractions between males and females of any species. In both blacktip sharks and bull sharks, total solids were positively correlated with body size, but not in the other species evaluated. In blacknose sharks, the fraction 3:4 ratio was positively correlated with body condition. Results suggest that there may be differences in total solids values across dry and wet seasons for some species. Newly established reference intervals can now be utilized in future research to evaluate the health of captive sharks and to investigate the health status of individuals in the wild as well as relate health measures to environmental conditions.

Funder

University of Miami

Shark Research and Conservation Program

UM Division of Comparative Pathology

Disney Wildlife Conservation Fund

The Batchelor Foundation

Herbert W. Hoover Foundation

UM Shark Research and Conservation Program

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Animal Science and Zoology

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