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Postprandial expression of growth-related genes in Atlantic salmon (Salmo salar L.) juveniles fasted for 1 week and fed a single meal to satiation

Published online by Cambridge University Press:  02 April 2012

Luísa M. P. Valente*
Affiliation:
CIMAR/CIIMAR – Centro Interdisciplinar de Investigação Marinha e Ambiental and ICBAS – Instituto de Ciências Biomédicas de Abel Salazar, Universidade de Porto, Rua dos Bragas, 289, 4050-123 Porto, Portugal
Neil I. Bower
Affiliation:
Scottish Oceans Institute, School of Biology, University of St Andrews, St Andrews KY16 8LB, UK
Ian A. Johnston
Affiliation:
Scottish Oceans Institute, School of Biology, University of St Andrews, St Andrews KY16 8LB, UK
*
* Corresponding author: Dr L. M. P. Valente, fax +351 223401838, email lvalente@icbas.up.pt
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Abstract

We investigated postprandial changes in transcript abundance following a single satiating meal in juvenile Atlantic salmon (Salmo salar L.) (about 70 g body mass) following fasting for 1 week at 12°C. The expression of twenty-three growth-related genes was determined in fast myotomal muscle using quantitative real-time PCR at the following postprandial time points: − 12, 0, 1, 3, 6, 12, 24, 48 and 96 h. The gut was fullest 1–6 h after feeding and emptied within 48–96 h. IGF-I, MyoD1c, MRF4 and myf5 transcripts were sharply up-regulated within 1 h of refeeding and are promising candidate genes involved in a fast-response signalling system that regulates fish myotomal muscle growth. These genes clustered together with MyoD1b and suggest a coordinated regulation to favour resumption of myogenesis as an early response to feeding. Insulin-like growth factor (IGF)-II and the ubiquitin ligase MAFbx/atrogin-1 were initially down-regulated but restored to initial values after 12 h. It is also suggested that local production of IGF-I within the muscle might suppress catabolic pathways depressing MAFbx/atrogin-1.

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Type
Full Papers
Copyright
Copyright © The Authors 2012
Figure 0

Table 1 Summary of parameters for quantitative real-time PCR (qPCR)

Figure 1

Fig. 1 (A) Gut content (g) of fish sampled before (T–24 and T0) and several hours (T1–T96) after feeding a single meal to satiation. Values are means (seven fish per sample), with their standard errors represented by vertical bars. a,b,cMean values with unlike letters were significantly different (P < 0·05). (B) Photographs of gut and intestine, which were dissected to ensure the presence of food in the stomach and to follow their fullness during the course of the single meal experiment. Scale bar = 2 cm.

Figure 2

Fig. 2 Normalised expression of the insulin-like growth factor (IGF) system genes (IGF-I (A), IGF-II (B), IGF-IRa (C) and IGF-Irb (D)) in the fast myotomal muscle at different times postprandially. Values are means (seven fish per sample), with their standard errors represented by vertical bars. a,b,c Mean values with unlike letters were significantly different (P < 0·05).

Figure 3

Fig. 3 Expression profiles of insulin-like growth factor binding protein (IGFBP) transcripts (IGFBP-rP1 (A), IGFBP-2·1 (B), IGFBP-4 (C) and IGFBP-6 (D)) in the fast myotomal muscle at different times postprandially. Values are means (seven fish per sample), with their standard errors represented by vertical bars. a,b Mean values with unlike letters were significantly different (P < 0·05).

Figure 4

Fig. 4 Normalised expression of muscle-regulatory factors (MRF) (MyoD1c (A), Myogenin (B), myogenic factor 5 (myf5) (C) and MRF4 (D)) and the atrophy genes (MAFbx/atrogin-1 (E) and muscle RING finger protein 1 (MuRF1) (F)) at different times postprandially. Values are means (seven fish per sample), with their standard errors represented by vertical bars. a,b,c Mean values with unlike letters were significantly different (P < 0·05).

Figure 5

Fig. 5 Heat map summary and unsupervised hierarchical clustering analysis of the genes in muscle according to the similarity in their expression across different postprandial times ( − 24 to 96 h). Yellow and blue shading represents the maximal (Max) and lowest (Min) transcript abundance, respectively. IGFBP-2·1, insulin-like growth factor binding protein 2 paralogue 1; IGFBP-5·1, insulin-like growth factor binding protein 5 paralogue 1; IGF-II, insulin-like growth factor II; MEF2A, myocyte enhancer factor 2A; FGF2, fibroblast growth factor 2; CrebA, cyclic AMP response element binding protein; IGFBP-6, insulin-like growth factor binding protein 6; IGF-IIR, insulin-like growth factor II receptor; IGF-IRa, insulin-like growth factor I receptor a; MuRF1, muscle RING finger protein 1; IGF-IRb, insulin-like growth factor I receptor b; IGFBP-rP1, insulin-like growth factor binding protein-related protein 1; IGFBP-4, insulin-like growth factor binding protein 4; Pax7, paired box protein 7; MyoD1b, myoblast determination factor 1b; IGF-I, insulin-like growth factor I; MyoD1c, myoblast determination factor 1c; MRF4, myogenic factor 6; myf5, myogenic factor 5; myog, myogenin; MAFbx, muscle atrophy F box; IGFBP-5·2, insulin-like growth factor binding protein 2 paralogue 2; MyoD1a, myoblast determination factor 1a.