Malformation in commercially raised fish, such as cranial, vertebral and gill cover deformities is a major factor reducing their market value. Although these deformities are most apparent in the juvenile and adult stages they may originate from suboptimal nutrition during the critical larval rearing stage. Previous research hypothesized that dietary phosphatidylinostol (PI) was more effective in reducing deformities than the main membrane phospholipid, phosphatidylcholine (PC). Consequently, the aim of this study was to test the effect of different dietary ratios of PC and PI fed to the gilthead sea bream (Sparus aura to) larvae, on developmental performances in juvenile fish in terms of survival, growth and malformation rate. Four microdiet (MD) treatments, that differed in their PC/PI ratio and replaced 75% of the Anemia ration (wt/wt), were fed to 20-34 dph (days post hatching) sea bream larvae. In addition to the high PC/PI or low PI containing MD control, a commercial reference treatment (100% Artemia ration) was also given. At 40 dph, the larvae were graded in all treatments into small (<1.3 mg dry wt larva(-1)) and large (>2.9 mg dry wt larva(-1)) larvae, in order to test if growth rate influenced treatment effect throughout development to 141 dph. There was no marked (P>0.05) treatment effect on growth rate in 40 dph larvae. On the other hand in later juvenile development (67 dph), decreasing dietary PC/PI ratio contributed to significantly (P<0.05) better growth and (P>0.05) higher survival. Moreover, reducing dietary PI markedly (P<0.05) increased jaw (cranial) deformity in both size groups at 67 dph which may have adversely affected juvenile feeding on a dry hard starter feed. Conversely, increasing dietary PI (reducing PC/PI ratio) showed a non-significant trend of increased skeletal deformity which was markedly (P<0.05) higher in faster growing larvae in all MD treatments. Although there was no clear effect of PC/PI ratio on gill cover deformity rate, there was a size dependent susceptibility to this deformity where smaller larvae showed the highest incidence of this malformation. Osteocalcin (BGP) mRNA levels correlated well (R-2 = 0.964) with development in the faster growing fry fed the high PI diet. Higher production of BGP may have reduced (P<0.05) the jaw deformity while tending to cause over-mineralization and deformity of the skeleton. The results suggest an effective dietary PC/PI ratio of 1.28 for sea bream larvae during culture. (C) 2010 Elsevier B.V. All rights reserved.
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Israel Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Ben Gurion Univ Negev, Eilat Campus,Sderot HaTmarim 162, IL-8855630 Elat, IsraelIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Gaon, A.
Nixon, O.
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Israel Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, IsraelIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Nixon, O.
Tandler, A.
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Israel Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, IsraelIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Tandler, A.
Falcon, J.
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Sorbonne Univ, BIOM, UMR Biol Integrat Organismes Marins, CNRS, F-66650 Banyuls Sur Mer, FranceIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Falcon, J.
Besseau, L.
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Sorbonne Univ, BIOM, UMR Biol Integrat Organismes Marins, CNRS, F-66650 Banyuls Sur Mer, FranceIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Besseau, L.
Escande, M.
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Sorbonne Univ, BIOM, UMR Biol Integrat Organismes Marins, CNRS, F-66650 Banyuls Sur Mer, FranceIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Escande, M.
El Sadin, S.
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Israel Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Ben Gurion Univ Negev, Eilat Campus,Sderot HaTmarim 162, IL-8855630 Elat, IsraelIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
El Sadin, S.
Allon, G.
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Israel Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Ben Gurion Univ Negev, Eilat Campus,Sderot HaTmarim 162, IL-8855630 Elat, IsraelIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
Allon, G.
Koven, W.
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Israel Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, IsraelIsrael Oceanog & Limnol Res IOLR, Natl Ctr Mariculture NCM, POB 1212, IL-88112 Elat, Israel
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Univ Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, SpainUniv Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, Spain
Miguel Mancera, Juan
Martinez-Rodriguez, Gonzalo
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CSIC, Inst Ciencias Marinas Andalucia ICMAN, Dept Marine Biol & Aquaculture, Madrid, SpainUniv Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, Spain
Martinez-Rodriguez, Gonzalo
Krystyna Skrzynska, Arleta
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Univ Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, SpainUniv Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, Spain
Krystyna Skrzynska, Arleta
Antonio Martos-Sitcha, Juan
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Univ Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, Spain
CSIC, Inst Ciencias Marinas Andalucia ICMAN, Dept Marine Biol & Aquaculture, Madrid, Spain
CSIC, IATS, Nutrigen & Fish Growth Endocrinol Grp, E-12595 Ribera De Cabanes, Castellon, SpainUniv Cadiz, Fac Marine & Environm Sci, Dept Biol, Campus Excelencia Int Mar CEI MAR, Cadiz, Spain