Title
Dietary vitamin mix levels influence the ossification process in European sea bass (Dicentrarchus labrax) larvae
Date Issued
01 February 2008
Access level
open access
Resource Type
journal article
Author(s)
Mazurais D.
Gouillou-Coustans M.F.
Le Gall M.M.
Huelvan C.
Desbruyères E.
Quazuguel P.
Cahu C.
Zambonino-Infante J.L.
Nutrition Aquaculture and Genomics Research Unit
Abstract
The influence of dietary vitamins on growth, survival, and morphogenesis was evaluated until day 38 of posthatching life in European sea bass larvae (Dicentrarchus labrax). A standard vitamin mix (VM), at double the concentration of the U.S. National Research Council's recommendations, was incorporated into larval feeds at 0.5%, 1.5%, 2.5%, 4.0%, and 8.0% to give treatments VM 0.5, VM 1.5, VM 2.5, VM 4.0, and VM 8.0, respectively. The group fed the VM 0.5 diet all died before day 30. At day 38, the larvae group fed VM 1.5 had 33% survival, while the other groups, with higher vitamin levels, showed at least 50% survival. The higher the percentage VM in the diet, the lower the percentage of column deformities. High dietary vitamin levels positively influenced the formation of mineralized bone in larvae: the higher the dietary vitamin level, the higher the ossification status. In the larvae group fed at the highest vitamin levels, we observed a temporal sequence of coordinated growth factor expression, in which the expression of bone morphometric protein (BMP-4) preceded the expression of IGF-1, which stimulated the maturation of osteoblasts (revealed by high osteocalcin expression levels). In groups fed lower proportions of vitamins, elevated proliferator peroxisome-activated receptors (PPAR-γ) expression coincided with low BMP-4 expression. Our results suggest that high levels of PPAR-γ transcripts in larvae-fed diets with a low VM content converted some osteoblasts into adipocytes during the first two weeks of life. This loss of osteoblasts is likely to have caused skeletal deformities. Copyright © 2008 the American Physiological Society.
Volume
294
Issue
2
Language
English
OCDE Knowledge area
Biología del desarrollo
Subjects
Scopus EID
2-s2.0-38949203379
PubMed ID
Source
American Journal of Physiology - Regulatory Integrative and Comparative Physiology
ISSN of the container
15221490
Sources of information:
Directorio de Producción Científica
Scopus