Lipid profiling suggests species specificity and minimal seasonal variation in Pacific Green and Hawksbill Turtle plasma

Author:

Clyde-Brockway Chelsea E.ORCID,Ferreira Christina R.,Flaherty Elizabeth A.,Paladino Frank V.

Abstract

In this study, we applied multiple reaction monitoring (MRM)-profiling to explore the relative ion intensity of lipid classes in plasma samples from sea turtles in order to profile lipids relevant to sea turtle physiology and investigate how dynamic ocean environments affect these profiles. We collected plasma samples from foraging green (Chelonia mydas, n = 28) and hawksbill (Eretmochelys imbricata, n = 16) turtles live captured in North Pacific Costa Rica in 2017. From these samples, we identified 623 MRMs belonging to 10 lipid classes (sphingomyelin, phosphatidylcholine, free fatty acid, cholesteryl ester, phosphatidylserine, phosphatidylinositol, phosphatidylglycerol, phosphatidylethanolamine, ceramide, and triacylglyceride) and one metabolite group (acyl-carnitine) present in sea turtle plasma. The relative ion intensities of most lipids (80%) were consistent between species, across seasons, and were not correlated to body size or estimated sex. Of the differences we observed, the most pronounced was the differences in relative ion intensity between species. We identified 123 lipids that had species-specific relative ion intensities. While some of this variability is likely due to green and hawksbill turtles consuming different food items, we found indications of a phylogenetic component as well. Of these, we identified 47 lipids that varied by season, most belonging to the structural phospholipid classes. Overall, more lipids (n = 39) had higher relative ion intensity in the upwelling (colder) season compared to the non-upwelling season (n = 8). Further, we found more variability in hawksbill turtles than green turtles. Here, we provide the framework in which to apply future lipid profiling in the assessment of health, physiology, and behavior in endangered sea turtles.

Funder

Department of Forestry and Natural Resources at Purdue University, West Lafayette, IN

The Leatherback Trust

Equipo Tora Carey, San Jose, CR

Agricultural Research Service

Jack W. Schrey Distinguished Professorship funds

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference95 articles.

1. Diet and ambient temperature interact to shape plasma fatty acid composition, basal metabolic rate and oxidative stress in great tits;MN Andersson;J Exp Biol,2018

2. Dietary polyunsaturated fatty acids influence flight muscle oxidative capacity but not endurance flight performance in a migratory songbird;MF Dick;Am J Physiol Regul Integr Comp Physiol,2019

3. Direct infusion mass spectrometry for metabolomic phenotyping of diseases;R González-Domínguez;Bioanalysis,2017

4. Species-dependent effects of the urban environment on fatty acid composition and oxidative stress in birds;C Isaksson;Front Ecol Evol,2017

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