Is Exposure to Macondo Oil Reflected in the Otolith Chemistry of Marsh-Resident Fish?
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2016-01
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Genomic and physiological responses in Gulf killifish (Fundulus grandis) in the northern Gulf of Mexico have confirmed oil exposure of resident marsh fish following the Macondo blowout in 2010. Using these same fish, we evaluated otolith microchemistry as a method for assessing oil exposure history. Laser-ablation inductively-coupled-plasma mass spectrometry was used to analyze the chemical composition of sagittal otoliths to assess whether a trace metal signature could be detected in the otoliths of F. grandis collected from a Macondo-oil impacted site in 2010, post-spill relative to pre-spill, as well as versus fish from areas not impacted by the spill. We found no evidence of increased concentrations of two elements associated with oil contamination (nickel and vanadium) in F. grandis otoliths regardless of Macondo oil exposure history. One potential explanation for this is that Macondo oil is relatively depleted of those metals compared to other crude oils globally. During and after the spill, however, elevated levels of barium, lead, and to a lesser degree, copper were detected in killifish otoliths at the oil-impacted collection site in coastal Louisiana. This may reflect oil contact or other environmental perturbations that occurred concomitant with oiling. For example, increases in barium in otoliths from oil-exposed fish followed (temporally) freshwater diversions in Louisiana in 2010. This implicates (but does not conclusively demonstrate) freshwater diversions from the Mississippi River (with previously recorded higher concentrations of lead and copper), designed to halt the ingress of oil, as a mechanism for elevated elemental uptake in otoliths of Louisiana marsh fishes. These results highlight the potentially complex and indirect effects of the Macondo oil spill and human responses to it on Gulf of Mexico ecosystems, and emphasize the need to consider the multiple stressors acting simultaneously on inshore fish communities.
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López-Duarte, Paola C, F Joel Fodrie, Olaf P Jensen, Andrew Whitehead, Fernando Galvez, Benjamin Dubansky and Kenneth W Able (2016). Is Exposure to Macondo Oil Reflected in the Otolith Chemistry of Marsh-Resident Fish?. PloS one, 11(9). p. e0162699. 10.1371/journal.pone.0162699 Retrieved from https://hdl.handle.net/10161/35375.
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Joel Fodrie
Our laboratory group studies the population dynamics of fishes and shellfishes, as well as the community ecology of estuarine systems. Our team’s funded/published research has emphasized: (1) quantifying connectivity among marine populations and ecosystems; (2) understanding the long-term effects of pulse and press disturbances using coastal fishes as a model system; (3) exploring the natural history, restoration ecology, and climate response of coastal habitats such as oyster reefs and seagrass meadows; (4) investigating the landscape ecology of seagrass meadows; and (5) the ecosystem and socioeconomic dynamics of expanding shellfish mariculture operations. Since 2010, we have also served as the primary caretaker of the Cape Lookout long-term shark survey based out of the Institute of Marine Sciences. I have contributed ~115 peer-reviewed papers that explore mechanisms of population and community variability within coastal ecosystems. These articles appear in journals such as Proceedings of the National Academy of Sciences, Ecology, and BioScience. Over the last decade, our team has become increasingly engaged in coastal resource management in North Carolina.
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