4.2 Article

Intrapopulation variation in habitat use by two abundant coastal fish species

Journal

MARINE ECOLOGY PROGRESS SERIES
Volume 415, Issue -, Pages 211-220

Publisher

INTER-RESEARCH
DOI: 10.3354/meps08714

Keywords

Behavioral ecology; Body size; Fisheries; Food web; Individual specialization; Movement patterns; Optimal foraging theory; Stable isotopes

Funding

  1. NSF OCE [0746164]
  2. NSF DEB [0842196]
  3. MacTaggart Third Fund, Friends of the Environment (Abaco)
  4. Bahamas Reef Environmental Education Foundation

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Decline of marine fisheries has become one of the most severe global environmental crises. In typical fishery management efforts, fish populations are often treated as homogeneous units, thereby tacitly ignoring potential intrapopulation variation within taxonomic groupings. We used acoustic telemetry and stable isotope analysis to examine movement patterns of 20 gray snapper Lutjanus griseus and 20 schoolmaster snapper L. apodus in a Bahamian tidal creek and wetland. In particular, we examined (1) if intrapopulation variation in fish habitat use and movement patterns existed, (2) whether that variation was a function of body size, and (3) if there was evidence of specialization in habitat use among individuals. We found that movement varied substantially among individuals, but was independent of body size. Some individuals exhibited frequent, repeated, movements to certain areas of the study site. delta C-13 values of individual snapper were significantly related to movement metrics, suggesting that movement differences were related to specific patterns of foraging behavior. Our findings suggest the importance of incorporating intrapopulation niche variation-a source of variation that is often overlooked in traditional conservation and management strategies-into the study of coastal fish populations.

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