Tropicalization of mid-western Atlantic coastal bays by pinfish Lagodon rhomboides: a combined ecological and oceanographic perspective

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2024-01-01

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Abstract

As climate change continues to shift the distributions of species worldwide, understanding where, why, and how organisms move beyond their historical ranges is of critical importance. Here, we report on the expansion of pinfish Lagodon rhomboides poleward along the mid-western Atlantic in response to rising temperatures. Pinfish are a key interactor in nearshore subtidal habitats like seagrasses in the southwestern Atlantic and Gulf of Mexico, but they have been historically sparse north of the ecotone at Cape Hatteras, North Carolina, USA. Using multidecadal trawl surveys, we show that while pinfish have been present both below (North Carolina) and above (Virginia and Maryland) this ecotone for many years, they have increasingly intruded into restored eelgrass (Zostera marina) meadows in the coastal bays of Virginia over the past decade. In 2022, for instance, pinfish abundances in Virginia equaled those observed historically in North Carolina. To understand the factors promoting these changes in abundance, we used a passive drifter model to show that these increases are not necessarily tied to changes in offshore currents. Instead, linear models revealed that the local abundance of pinfish in Virginia correlates most with inshore summertime water temperatures. Thus, favorable environmental conditions of the recipient bays appear to encourage greater recruitment and therefore greater abundance of pinfish. Given their outsized ecological role in subtropical ecosystems, and that the climate will continue to warm, our findings suggest that pinfish may soon come to dominate the structure and functioning of temperate seagrass meadows in Virginia and beyond.

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10.3354/meps14705

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Lefcheck, JS, RJ Orth, FJ Fodrie, D Gong, M Faulkner, KM Laumann and CJ Patrick (2024). Tropicalization of mid-western Atlantic coastal bays by pinfish Lagodon rhomboides: a combined ecological and oceanographic perspective. Marine Ecology Progress Series, 748. pp. 137–148. 10.3354/meps14705 Retrieved from https://hdl.handle.net/10161/35387.

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Scholars@Duke

Fodrie

Joel Fodrie

Research Professor in the Marine Science and Conservation Division

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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