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1.
J Fish Biol ; 103(5): 994-1002, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37423900

ABSTRACT

Age validation is a critical component of an age-based stock assessment and subsequent species management. Our study used bomb radiocarbon analysis to validate age estimates of Blueline Tilefish Caulolatilus microps, a species for which regional stock assessment scientists have identified age validation as a high priority. We compared a C. microps F14 C chronology to F14 C chronologies for finfish of the U.S. South Atlantic Bight (SAB) and the north-west Atlantic. The high degree of correspondence in the chronologies exhibited for C. microps and other species of the SAB suggests a differential 14 C uptake pattern in the SAB slope waters that is likely the result of local hydrological processes that delay 14 C reaching the environments inhabited by these species. Our study was able to validate C. microps ages up to 25 years in the SAB, with strong evidence suggesting they are living to at least 50 years old.


Subject(s)
Perciformes , Animals , Fishes
2.
Glob Chang Biol ; 27(11): 2520-2536, 2021 Jun.
Article in English | MEDLINE | ID: mdl-33738904

ABSTRACT

Southern flounder (Paralichthys lethostigma) are a coastal flatfish species that supports recreational and commercial fisheries but are currently experiencing range-wide declines. To quantify the range-wide declines and investigate the role of climate in these declines, fishery-independent sampling data of age-0 flounder were obtained from 34 estuaries representing four states in the Gulf of Mexico (TX, LA, AL, and FL) and three states in the Southeastern United States Atlantic Ocean (FL, SC, and NC) spanning from 1976 to 2019. Generalized additive models (GAM) were used to estimate age-0 recruitment trends. Spatial and temporal synchrony analyses were then conducted using annual GAM-predicted values to determine if trends were similar between estuaries in close proximity, and if declines occurred at the same time. Because the species is dependent on physical transport (i.e., winds and tides) for recruitment, hourly wind speed, wind direction, water temperature, and air temperature were obtained for estuaries with non-zero sampling totals and long-term data sets. Only six estuaries showed significant relationships between age-0 flounder indices and growing degree days. However, all estuaries with wind data showed significant relationships between age-0 flounder indices and hourly summed wind speed. Southern flounder also have environmental sex determination, meaning warming estuaries could also account for population changes and declines. We document that water temperatures in the same space and time where southern flounder sexually determine are warmer now than even a decade ago, which could masculinize populations and substantially change population demographics. These results illustrate the vulnerability of estuarine finfish populations to climate change and increased climate variability. Understanding how climate acts on southern flounder biology may help managers respond to and prevent fishery collapses.


Subject(s)
Estuaries , Fishes , Animals , Atlantic Ocean , Climate Change , Gulf of Mexico , Southeastern United States
3.
Mar Pollut Bull ; 160: 111539, 2020 Nov.
Article in English | MEDLINE | ID: mdl-32781266

ABSTRACT

The influence of feeding behavior and feeding ecology on microplastic occurrence in fishes in an urbanized estuary was studied by surveying microplastics in the digestive tracts (gut) of five fish species: the planktivorous Bay Anchovy and Atlantic Menhaden, the piscivore Spotted Seatrout, the benthivore Spot and the detritivore/benthivore Striped Mullet. Microplastics were found in 99% of fishes collected with an average of 27 microplastics per individual fish, 6 microplastics per gram of fish, and 21 microplastics per gram of gut, although exposure varied among species. Atlantic Menhaden possessed significantly more microplastic per fish weight than other species, which may be attributed to their regular ingestion of marine snow aggregates. Fibers were the most common type of microplastic in all fishes, and suspected tire wear particles were found in 14% of individuals across all five species, constituting the first evidence of tire wear particle consumption in field-collected organisms.


Subject(s)
Estuaries , Water Pollutants, Chemical , Animals , Environmental Monitoring , Fishes , Humans , Microplastics , Plastics , Water Pollutants, Chemical/analysis
4.
PLoS One ; 12(3): e0172968, 2017.
Article in English | MEDLINE | ID: mdl-28264006

ABSTRACT

Managed reef fish in the Atlantic Ocean of the southeastern United States (SEUS) support a multi-billion dollar industry. There is a broad interest in locating and protecting spawning fish from harvest, to enhance productivity and reduce the potential for overfishing. We assessed spatiotemporal cues for spawning for six species from four reef fish families, using data on individual spawning condition collected by over three decades of regional fishery-independent reef fish surveys, combined with a series of predictors derived from bathymetric features. We quantified the size of spawning areas used by reef fish across many years and identified several multispecies spawning locations. We quantitatively identified cues for peak spawning and generated predictive maps for Gray Triggerfish (Balistes capriscus), White Grunt (Haemulon plumierii), Red Snapper (Lutjanus campechanus), Vermilion Snapper (Rhomboplites aurorubens), Black Sea Bass (Centropristis striata), and Scamp (Mycteroperca phenax). For example, Red Snapper peak spawning was predicted in 24.7-29.0°C water prior to the new moon at locations with high curvature in the 24-30 m depth range off northeast Florida during June and July. External validation using scientific and fishery-dependent data collections strongly supported the predictive utility of our models. We identified locations where reconfiguration or expansion of existing marine protected areas would protect spawning reef fish. We recommend increased sampling off southern Florida (south of 27° N), during winter months, and in high-relief, high current habitats to improve our understanding of timing and location of reef fish spawning off the southeastern United States.


Subject(s)
Coral Reefs , Ecosystem , Fishes , Animals , Biodiversity , Databases, Factual , Geography , Models, Theoretical , Reproducibility of Results , Seasons , Southeastern United States
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