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首页> 外文期刊>Fish Physiology and Biochemistry >Growth performance and metabolic utilization of diets including starch, dextrin, maltose or glucose as carbohydrate source by gilthead sea bream (Sparus aurata) juveniles
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Growth performance and metabolic utilization of diets including starch, dextrin, maltose or glucose as carbohydrate source by gilthead sea bream (Sparus aurata) juveniles

机译:银头鲷(Sparus aurata)幼鱼的日粮的生长性能和代谢利用,包括淀粉,糊精,麦芽糖或葡萄糖

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The effect of dietary carbohydrate complexity on growth, feed utilization and activity of selected key liver enzymes of intermediary metabolism were studied in gilthead sea bream juveniles. Four isonitrogenous (50% crude protein) and isolipidic (16% crude lipids) diets were formulated to contain 20% of pregelatinized maize starch, dextrin, maltose or glucose. Triplicate groups of fish (117 g initial weight) were fed each diet to near satiation during 6 weeks. No effect of dietary carbohydrate on growth was noticed. Feed efficiency was lower in fish fed the glucose diet than the maltose and dextrin diets. The lowest protein efficiency ratio was observed in fish fed the glucose diet. Six hours after feeding, glycemia was higher in fish fed the glucose diet than the maltose and starch diets. Liver glycogen content was unaffected by dietary carbohydrate complexity. Hepatic glucokinase (GK) activity was higher in fish fed the glucose and the maltose diets, while higher pyruvate kinase (PK) activity was recorded in fish fed the glucose diet than in fish fed the starch diet. Fructose-1,6-bisphosphatase (FBPase) and glucose-6-phosphate dehydrogenase (G6PD) activities were higher in fish fed the starch diet compared to dextrin and glucose diets. Data suggest that dietary glucose and maltose are more effective than complex carbohydrates in enhancing liver glycolytic activity. Dietary glucose also seems to be more effective than starch in depressing liver gluconeogenic and lipogenic activities. Overall, dietary maltose, dextrin or starch was better utilized than glucose as energy source by gilthead sea bream juveniles.
机译:在金头鲷鱼中研究了日粮碳水化合物的复杂性对生长,饲料利用和选定的中间代谢关键肝酶活性的影响。配制了四种等氮(粗蛋白含量为50%)和等脂(粗蛋白含量为16%)日粮,其中含有20%的预糊化玉米淀粉,糊精,麦芽糖或葡萄糖。一式三份的鱼(117克初始重量)在6周内以每种饮食喂养至接近饱食。饮食中的碳水化合物对生长没有影响。饲喂葡萄糖饮食的鱼的饲料效率低于麦芽糖和糊精饮食。在饲喂葡萄糖饮食的鱼中观察到最低的蛋白质效率比。喂食六小时后,喂食葡萄糖饮食的鱼的血糖高于麦芽糖和淀粉饮食。肝糖原含量不受饮食碳水化合物复杂性的影响。饲喂葡萄糖和麦芽糖日粮的鱼肝葡萄糖激酶(GK)活性更高,饲喂葡萄糖日粮的鱼中丙酮酸激酶(PK)活性高于饲喂淀粉日粮的鱼。与糊精和葡萄糖饮食相比,饲喂淀粉饮食的鱼的果糖-1,6-双磷酸酶(FBPase)和葡萄糖6-磷酸脱氢酶(G6PD)活性更高。数据表明,膳食葡萄糖和麦芽糖在增强肝糖酵解活性方面比复杂碳水化合物更有效。膳食葡萄糖似乎在抑制肝脏糖原异生和脂肪形成活性方面比淀粉更有效。总体而言,银头鲷鱼的膳食麦芽糖,糊精或淀粉比葡萄糖更好地利用了能量。

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