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首页> 外文期刊>Fish Physiology and Biochemistry >Oxygen consumption and ammonia excretion of black carp (Mylopharyngdon piceus Richardson) and allogynogenetic crucian carp (Carassius auratus gibelio c Cyprinus carpio ) fed different carbohydrate diets
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Oxygen consumption and ammonia excretion of black carp (Mylopharyngdon piceus Richardson) and allogynogenetic crucian carp (Carassius auratus gibelio c Cyprinus carpio ) fed different carbohydrate diets

机译:饲喂不同碳水化合物日粮的黑鱼(Mylopharyngdon piceus Richardson)和同种异体cru鱼(Carassius auratus gibelio c Cyprinus carpio)的耗氧量和氨排泄

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Oxygen consumption and ammonia excretion of black carp (Mylopharyngdon piceus Richardson) (4.6 pl 0.3 g) and allogynogenetic crucian carp (Carassius auratus gibelio c Cyprinus carpio ) (5.7 pl 0.5 g) were examined when fish fed two types of carbohydrate (dextrin and glucose) at two levels (20 and 40%) each. The diets were isonitrogenous (40% dry matter) and isocaloric at 18.5 kJ gp# (dry matter) by adjusting the oil content to 10.1 and 1.5%, respectively. In black carp, the interactions between the carbohydrate type and level were found in oxygen consumption at 3 and 6 h and in ammonia excretion at 6 h after feeding. At 20% carbohydrate, no significant difference was observed between dextrin and glucose in oxygen consumption. However, at 40% carbohydrate, oxygen consumption in fish fed glucose was significantly higher than that in fish fed dextrin at 3 and 6 h after feeding. Within the dextrin diets, no significant differences in both oxygen consumption and ammonia excretion were detected between the two carbohydrate levels. Within the glucose diets, however, fish fed 40% glucose showed significantly higher oxygen consumption than those fed 20% glucose at 3 and 6 h after feeding. Ammonia excretion in black carp fed 40% glucose was higher than that in black carp fed 40% dextrin at 6 h and also found higher than those in the other three treatments at 24 h after feeding. The postprandial oxygen consumption and the ammonia excretion in crucian carp fed 40% glucose were the highest, but no significant differences were observed. Our data indicate that the escalation of glucose to 40% in a fish diet results in high oxygen consumption and ammonia excretion in black carp, suggesting that the efficiency of glucose as an energy source for this fish is compromised by the high metabolic expenditure after feeding. Crucian carp, on the other hand, have a better ability to cope with dietary carbohydrates.
机译:当给鱼类喂食两种类型的碳水化合物(糊精和葡萄糖)时,检查了黑鱼(4.6 pl 0.3 g)和同种异体cru鱼(Car鱼5.7 pl 0.5 g)的耗氧量和氨排泄。 ),分别分为两个级别(20%和40%)。通过将油含量分别调节为10.1和1.5%,日粮为等氮(干物质为40%)和等热量的,为18.5 kJ gp#(干物质)。在black鱼中,碳水化合物类型和水平之间的相互作用在喂食后3和6小时的耗氧量和6小时的氨排泄中被发现。碳水化合物含量为20%时,糊精和葡萄糖的耗氧量没有显着差异。但是,在碳水化合物含量为40%的情况下,喂食葡萄糖的鱼在喂食后3和6 h的耗氧量明显高于喂糊精的鱼。在糊精饮食中,两种碳水化合物水平之间的氧气消耗量和氨排泄量均未发现显着差异。然而,在葡萄糖饮食中,喂食40%葡萄糖的鱼在喂食后3和6小时的氧气消耗量显着高于喂食20%葡萄糖的鱼。饲喂40%葡萄糖的at鱼在6 h时的氨排泄高于饲喂40%糊精的鱼,并且在饲喂后24 h的氨排泄率也高于其他3种处理方法。饲喂40%葡萄糖的cru鱼的餐后氧气消耗和氨排泄最高,但未观察到显着差异。我们的数据表明,鱼饲料中葡萄糖的升高至40%会导致黑鱼的高耗氧量和氨排泄,这表明喂食后高代谢消耗会损害葡萄糖作为该鱼的能源的效率。另一方面,鱼具有更好的应付饮食碳水化合物的能力。

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