Ontogenetic changes in diet and habitat use in green sea turtle (Chelonia mydas) life history
Онтогенетические изменения рациона и использования местообитаний в жизненном цикле зелёной морской черепахи (Chelonia mydas)
2008-03-05
SCID: 54.1/3y48tafe
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Green sea turtleHabitat useMoreton BayOntogenetic diet shiftStable isotope analysis
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Abstract (AI)
Green turtles Chelonia mydas are endangered, long-lived marine reptiles that display an ontogenetic shift in diet and habitat use during development. During their early life stage, juvenile green turtles in the southwestern Pacific inhabit the pelagic zone where they feed omnivorously on neustonic material. At approximately 44 cm curved carapace length they recruit to inshore foraging habitats where they become primarily herbivorous. In this study we investigate the change in stable isotope (δC and δN) composition of green turtle epidermal tissue throughout their life history to examine this ontogenetic shift in diet and habitat as it occurs in a southwestern Pacific green turtle population. Turtles that had recently recruited to foraging grounds in Moreton Bay, Australia had significantly higher δN isotopic signatures when compared with all other life history groups examined and significantly lower δC when compared with all age classes other than pelagic juveniles. Adult and large immature turtles had similar isotopic signatures and were both significantly enriched in C when compared with hatchlings and small immature turtles. These results support previous observations that suggest pelagic juveniles are foraging in a different habitat and at a higher trophic level than turtles captured in the neritic environment. This is the first study to capture the entire life history of green turtles in terms of foraging ecology and supports the ontogenetic shift previously observed in traditional diet and behavioral studies of green turtles.
Key Findings
1
Green turtles undergo an ontogenetic shift from pelagic, omnivorous feeding on neustonic material to primarily herbivorous feeding in inshore habitats.
2
Juveniles recruit to inshore foraging habitats at approximately 44 cm curved carapace length.
3
Recently recruited turtles had significantly lower δC signatures than most other groups, while adults and large immatures were similarly enriched in δC.
4
Recently recruited turtles in Moreton Bay had significantly higher δN signatures than all other life-history groups, indicating higher trophic-level feeding.
5
Stable-isotope patterns across all life stages support distinct pelagic and neritic foraging habitats and corroborate previous dietary and behavioral observations.
Research Object
Green turtles (Chelonia mydas) from a southwestern Pacific population throughout their life history, including pelagic juveniles and inshore foraging-stage turtles
Research Subject
Ontogenetic changes in diet, habitat use, and trophic position inferred from stable carbon and nitrogen isotope composition of epidermal tissue
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2008-03-05
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