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Data and novel code supporting "Stable isotopes in eye lenses record patterns and variation in resource-use ontogeny of three New Zealand kelp forest fishes"
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Data and novel code supporting "Stable isotopes in eye lenses record patterns and variation in resource-use ontogeny of three New Zealand kelp forest fishes"

Joseph Curtis, Gretchen J. McCarthy, Leonardo M. Durante, Peter Dillingham and Stephen R. Wing
figshare
07/06/2026
Handle:
https://hdl.handle.net/10523/51344

Abstract

Marine and estuarine ecology (incl. marine ichthyology)
Data and code supporting the forthcoming publication: Stable isotopes in eye lenses record patterns and variation in resource-use ontogeny of three New Zealand kelp forest fishes. Fishes can undergo dramatic social and morphological changes throughout development that drive ontogenetic shifts in diet and habitat association. Measurements of trophic ontogeny at the individual level often complement population-level assessments, detailing patterns of resource use that have underpinned long-term growth and survival. Using stable isotope measurements from muscle and eye lenses, we modelled size-based patterns in basal resource use and trophic position across multiple levels of organisation for three New Zealand reef fishes (Notolabrus fucicola, Odax pullus, and Parapercis colias). From lens-derived data series, we were able to estimate trends and variability in lifetime trophic ontogeny of each species, as well as size-structured changes in breadth and interspecific overlap of resource use. For adults, broadly similar trophic shifts were reflected in isotopic composition of both muscle tissue and lens layers, with subtle differences between tissues for some combinations of species and ecological metric. Critically, only samples from eye lenses yielded estimates of resource use that supported early development. Specifically, our measurements suggested heightened reliance on macroalgal food webs during juvenile dispersal of two carnivores (N. fucicola, P. colias), as well as variable peaks in omnivory at small sizes for O. pullus, a primary herbivore. Individual variability in modelled trophic shifts was generally lower throughout early development, except for O. pullus which exhibited inconsistent patterns of juvenile resource use. Conversely, trophic breadth was estimated to contract around size-at-maturity of all three species, coincident with apparent differentiation of adult resource use between sampled carnivores. Finally, in addition to high-resolution assessments of trophic ontogeny, we provide analytic considerations that may strengthen use of eye lenses for investigation of fish life history, particularly through assessment of calibration assumptions in a novel system.
url
https://doi.org/10.6084/m9.figshare.29431916View
Data Open CC BY V4.0

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