Growth dynamics of loggerhead sea turtles undergoing ontogenetic habitat shifts Academic Article uri icon

Sustainable Development Goals

  • SDG 14: Life Below Water 

Abstract

  • Ontogenetic niche theory predicts that individuals
    may undergo one or more changes in habitat or
    diet throughout their lifetime to maintain optimal growth
    rates, or to optimize trade-offs between mortality risk and
    growth. We combine skeletochronological and stable nitrogen
    isotope (δ15N) analyses of sea turtle humeri (n = 61)
    to characterize the growth dynamics of juvenile loggerhead
    sea turtles (Caretta caretta) during an oceanic-to-neritic
    ontogenetic shift. The primary objective of this study
    was to determine how ontogenetic niche theory extends
    to sea turtles, and to individuals with different patterns of
    resource use (discrete shifters, n = 23; facultative shifters
    n = 14; non-shifters, n = 24). Mean growth rates peaked at
    the start of the ontogenetic shift (based on change in δ15N
    values), but returned to pre-shift levels within 2 years. Turtles
    generally only experienced 1 year of relatively high
    growth, but the timing of peak growth relative to the start
    of an ontogenetic shift varied among individuals (before,
    n = 14; during, n = 12; after, n = 8). Furthermore, no
    reduction in growth preceded the transition, as is predicted
    by ontogenetic niche theory. Annual growth rates were
    similar between non-transitioning turtles resident in oceanic
    and neritic habitats and turtles displaying alternative
    patterns of resource use. These results suggest that factors
    other than maximization of size-specific growth may more
    strongly influence the timing of ontogenetic shifts in loggerhead
    sea turtles, and that alternative patterns of resource
    use may have limited influence on somatic growth and age
    at maturation in this species.

Publication Date

  • 2017-02-01