Intraspecific Variation in Gulf Killifish (Fundulus grandis) Avoidance of Contaminants

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Gulf killifish populations from western sites avoided fresh oil, while eastern populations showed less avoidance, suggesting regional differences in sensitivity to petroleum contamination.

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This study examined how Gulf killifish (Fundulus grandis) from four geographically distinct estuaries respond behaviorally to petroleum-contaminated sediments, using choice experiments with uncontaminated sediment versus sediment contaminated with fresh or weathered oil. The key finding was significant population-level differences: fish from western Gulf sites (Louisiana and Alabama) showed strong avoidance of fresh oil, whereas fish from eastern sites (Florida) showed limited or no avoidance, and no populations avoided weathered oil. The authors interpret the lack of avoidance to weathered oil as diminished ability to detect residual contamination, but note the study’s behavioral framework is focused on oil cues and regional variation rather than testing underlying mechanisms directly. This paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Understanding the behavioral response of estuarine fish populations to environmental contaminants is critical for assessing the ecological consequences of disturbances. Here, we examined population-level variation in avoidance behavior to petroleum-contaminated sediments in the Gulf killifish ( Fundulus grandis ), a sentinel species in northern Gulf of Mexico marshes. Adult fish were collected from four geographically distinct estuaries—Terrebonne Bay, Louisiana; Mississippi Sound, Alabama; Pensacola Bay, Florida; and Cedar Key, Florida. Choice experiments tested fish preference to either uncontaminated sediments or sediments contaminated with fresh or weathered oil. Results found significant differences among populations with individuals from western Gulf sites (Louisiana and Alabama) exhibiting strong avoidance of fresh oil, while those from eastern sites (Florida) showed limited or no avoidance. No populations avoided weathered oil. These findings suggest that sensitivity to oil contamination varies regionally, potentially reflecting local exposure histories or environmental adaptation. The diminished response to weathered oil across all populations highlights a reduced ability to detect residual contamination and indicates that these fish may use more volatile compounds that precipitate or degrade faster as a cue. This study underscores the importance of incorporating behavioral and population-level variability into impact assessments and emphasizes the need for regionally tailored conservation strategies.
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Abstract Understanding the behavioral response of estuarine fish populations to environmental contaminants is critical for assessing the ecological consequences of disturbances. Here, we examined population-level variation in avoidance behavior to petroleum-contaminated sediments in the Gulf killifish (Fundulus grandis), a sentinel species in northern Gulf of Mexico marshes. Adult fish were collected from four geographically distinct estuaries—Terrebonne Bay, Louisiana; Mississippi Sound, Alabama; Pensacola Bay, Florida; and Cedar Key, Florida. Choice experiments tested fish preference to either uncontaminated sediments or sediments contaminated with fresh or weathered oil. Results found significant differences among populations with individuals from western Gulf sites (Louisiana and Alabama) exhibiting strong avoidance of fresh oil, while those from eastern sites (Florida) showed limited or no avoidance. No populations avoided weathered oil. These findings suggest that sensitivity to oil contamination varies regionally, potentially reflecting local exposure histories or environmental adaptation. The diminished response to weathered oil across all populations highlights a reduced ability to detect residual contamination and indicates that these fish may use more volatile compounds that precipitate or degrade faster as a cue. This study underscores the importance of incorporating behavioral and population-level variability into impact assessments and emphasizes the need for regionally tailored conservation strategies. Competing Interest Statement The authors have declared no competing interest.

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