| Literature DB >> 26586314 |
Dandan Xu1, Gen He1, Kangsen Mai1, Huihui Zhou1, Wei Xu1, Fei Song1.
Abstract
In this study, we chose a carnivorous fish, turbot (Scophthalmus maximus L.), to examine its nutrient-sensing and metabolic responses after ingestion of diets with fishmeal (FM), or 45% of FM replaced by soyabean meal (34·6% dry diet) balanced with or without essential amino acids (EAA) to match the amino acid profile of FM diet for 30 d. After a 1-month feeding trial, fish growth, feed efficiency and nutrient retention were markedly reduced by soyabean meal-incorporated (SMI) diets. Compared with the FM diet, SMI led to a reduction of postprandial influx of free amino acids, hypoactivated target of rapamycin signalling and a hyperactivated amino acid response pathway after refeeding, a status associated with reduced protein synthesis, impaired postprandial glycolysis and lipogenesis. These differential effects were not ameliorated by matching an EAA profile of soyabean meal to that of the FM diet through dietary amino acid supplementation. Therefore, this study demonstrated that the FM diet and SMI diets led to distinct nutrient-sensing responses, which in turn modulated metabolism and determined the utilisation efficiency of diets. Our results provide a new molecular explanation for the role of nutrient sensing in the inferior performance of aquafeeds in which FM is replaced by soyabean meal.Entities:
Keywords: AAR amino acid response; B0AT1zzm321990 B0-type amino acid transporter 1; EAA essential amino acids; FM fishmeal; Fishmeal; Metabolism; Nutrient sensing; PepT1zzm321990 peptide transporter 1; S6 ribosomal protein S6; SMI soyabean meal-incorporated diet; SMI+AA SMI diet with dietary EAA supplementation; SNAT2zzm321990 sodium-coupled neutral amino acid transporter 2; Soyabean meal; TOR target of rapamycin; Turbot; eIF2α eukaryotic initiation factor 2 α; y+LAT1zzm321990 y+L-type amino acid transporter 1
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Year: 2015 PMID: 26586314 DOI: 10.1017/S0007114515004535
Source DB: PubMed Journal: Br J Nutr ISSN: 0007-1145 Impact factor: 3.718