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PMID: 26246399 Published · ppublish English

Transient up- and down-regulation of expression of myosin light chain 2 and myostatin mRNA mark the changes from stratified hyperplasia to muscle fiber hypertrophy in larvae of gilthead sea bream (Sparus aurata L.).

Cell and tissue research ·Vol. 363 ·No. 2 ·2016-10-24

Georgiou Stella, Alami-Durante Hélène, Power Deborah M, Sarropoulou Elena, Mamuris Zissis, Moutou Katerina A

Abstract

Hyperplasia and hypertrophy are the two mechanisms by which muscle develops and grows. We study these two mechanisms, during the early development of white muscle in Sparus aurata, by means of histology and the expression of structural and regulatory genes. A clear stage of stratified hyperplasia was identified early in the development of gilthead sea bream but ceased by 35 dph when hypertrophy took over. Mosaic recruitment of new white fibers began as soon as 60 dph. The genes mlc2a and mlc2b were expressed at various levels during the main phases of hyperplasia and hypertrophy. The genes myog and mlc2a were significantly up-regulated during the intensive stratified formation of new fibers and their expression was significantly correlated. Expression of mstn1 and igf1 increased at 35 dph, appeared to regulate the hyperplasia-to-hypertrophy transition, and may have stimulated the expression of mlc2a, mlc2b and col1a1 at the onset of mosaic hyperplasia. The up-regulation of mstn1 at transitional phases in muscle development indicates a dual regulatory role of myostatin in fish larval muscle growth.

Keywords
Gene markers Gilthead sea bream Muscle cellularity Myogenic factors mlc2
Article Info
Journal
Cell and tissue research
Abbr.
Cell Tissue Res
Published
2016-10-24
Indexed
2016-02-02
Updated
2016-11-11
Language
English
Country/Region
Germany
NLM ID
0417625
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