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- W1964726674 endingPage "218" @default.
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- W1964726674 abstract "In fast growing organisms, like fish larvae, fatty acids provided through live prey are essential to satisfy high energy demand and are required to promote growth. Therefore, in recent decades, a great amount of research has been directed towards the development of lipid enrichment in order to improve larval fish survival and growth. However, in fish, the biochemical and molecular processes related to highly unsaturated fatty acid (HUFA) administration are still poorly understood. In the current study, the false percula clownfish, a short larval phase marine species, was used as an experimental model and the effects of a standard and a HUFAs-enriched diet were tested through a molecular, biochemical, ultrastructural and morphometric approach. Our results support the hypothesis that HUFA administration may improve larval development through the presence of better structured mitochondria, a higher synthesis of energy compounds and coenzymes with a central position in the metabolism, with respect to controls. This higher energy status was confirmed by better growth performance and a shorter larval phase in larvae fed with an enriched diet with respect to the control. This strategy of rapid growth and early energy storage may be considered positively adaptive and beneficial to the survival of this species." @default.
- W1964726674 created "2016-06-24" @default.
- W1964726674 creator A5005467138 @default.
- W1964726674 creator A5007945612 @default.
- W1964726674 creator A5029397112 @default.
- W1964726674 creator A5048892935 @default.
- W1964726674 creator A5062710136 @default.
- W1964726674 creator A5069917039 @default.
- W1964726674 creator A5088421342 @default.
- W1964726674 date "2011-07-01" @default.
- W1964726674 modified "2023-09-23" @default.
- W1964726674 title "Live prey enrichment, with particular emphasis on HUFAs, as limiting factor in false percula clownfish (Amphiprion ocellaris, Pomacentridae) larval development and metamorphosis: Molecular and biochemical implications" @default.
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