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Early-life ontogenetic developments drive tuna ecology and evolution ArchiMer
Aoki, Yoshinori; Jusup, Marko; Nieblas, Anne-elise; Bonhommeau, Sylvain; Kiyofuji, Hidetada; Kitagawa, Takashi.
Formal approaches to physiological energetics, such as the Dynamic Energy Budget (DEB) theory, enable interspecies comparisons by uniformly describing how individuals of different species acquire and utilise energy. We used the DEB theory to infer the energy budgets of three commercial tuna species (skipjack, Pacific bluefin, and Atlantic bluefin) throughout all stages of ontogenetic development—from an egg to an adult individual and its eggs. Energy budgets were inferred from exhaustive datasets fed into a DEB-based mathematical model tailored for tuna fish until reaching a high goodness of fit and thus reliable estimates of the model parameters. The life histories of all three species are strongly influenced by morphological and physiological adaptations...
Tipo: Text Palavras-chave: Accelerated ontogeny; Bluefin tuna; Dynamic Energy Budget theory; Ecology and evolution; Energy speculators; Skipjack tuna.
Ano: 2020 URL: https://archimer.ifremer.fr/doc/00600/71238/69605.pdf
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Identification of skipjack tuna juveniles based on DNA control region sequences and potential spawning area around reunion island ArchiMer
Nikolic, Natacha; Jerome, Marc; Fonteneau, Alain; Evano, Hugues; Verrez-bagnis, Veronique.
In this study, we confirmed that DNA control region can be used to identify potential spawning area from pelagic juveniles species. We used the mitochondrial DNA control region to identify tuna juveniles predated by common dolphinfish and sampled in surface waters around Reunion Island. These were skipjack juveniles at an early stage (small length and young age). The biological results confirmed the species identification based on DNA analysis. Catch data by longline reveal a higher number of skipjack from October to December around Reunion Island corresponding to the period of our skipjack juvenile sampling
Tipo: Text Palavras-chave: Skipjack tuna; Reunion island; DNA; Age; Juvenile.
Ano: 2016 URL: https://archimer.ifremer.fr/doc/00299/40993/42657.pdf
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