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首页> 外文期刊>Animal Feed Science and Technology >Effect of temperature and varying level of carbohydrate and lipid on growth, feed efficiency and nutrient digestibility of brook trout, Salvelinus fontinalis (Mitchill, 1814)
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Effect of temperature and varying level of carbohydrate and lipid on growth, feed efficiency and nutrient digestibility of brook trout, Salvelinus fontinalis (Mitchill, 1814)

机译:温度和碳水化合物和脂质水平的变化对font鳟的生长,饲料效率和养分消化率的影响(Mitchill,1814年)

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摘要

Temperature is the most important environmental factor determining the growth rate of fish. Increasing summer temperatures in salmonid growing regions worldwide are presenting new challenges for effective nutrient delivery, particularly as feeds increasingly replace fish oil with cheaper and available energy sources. The effect of temperature and non-protein energy sources on growth performance, nutrient utilisation and digestibility of brook trout, Salvelinus fontinalis was evaluated at temperatures reflective of optimum, 15 degrees C, and elevated summer conditions, 19 degrees C. The experiment was a 2 x 4 factorial design with two temperatures (15 degrees C and 19 degrees C) and four iso-nitrogenous (protein: 440 g/kg) and iso-energetic (22 MJ/kg) diets. Diets were formulated with increasing carbohydrate level (180-260 g/kg) balanced by decreasing lipid level (170-130 g/kg). A 12-week study was conducted using triplicate group of brook trout with initial weight 48.0 +/- 3.46 g at each temperature. Fish were fed 2% body weight ration daily. Growth rate was higher and feed utilisation was more efficient at 15 degrees C than 19 degrees C (P=0.00). Reduced fish oil inclusion and increased gelatinised carbohydrate had no effect on growth and feed utilisation at both temperatures. The apparent digestibility coefficients of nutrient and energy were significantly higher at 15 degrees C than 19 degrees C (P=0.00). Dry matter, gross energy and energy from carbohydrate were more digestible as dietary carbohydrate levels increased, at both temperatures. Increasing dietary carbohydrate generated an increase in the intestinal activity of alpha-amylase, which was higher at 15 degrees C. Across the levels of dietary carbohydrate tested; there were no pathological changes to liver or intestine histology. Fish oil can be substituted with gelatinised carbohydrate under challenging high water temperatures in brook trout feeds, with no detriment to health, nutrient digestibility or growth performance
机译:温度是决定鱼类生长速度的最重要的环境因素。全世界鲑鱼生长地区夏季气温的升高,对有效地输送营养提出了新的挑战,特别是随着饲料越来越多地用更便宜和可用的能源代替鱼油。温度和非蛋白质能源对溪鳟Salvelinus fontinalis的生长性能,养分利用率和消化率的影响在15°C的最佳温度和19°C的夏季条件下进行了评估。实验为2 x 4因子设计,具有两种温度(15摄氏度和19摄氏度)以及四种等氮(蛋白质:440 g / kg)和等能(22 MJ / kg)饮食。配制日粮时应增加碳水化合物含量(180-260 g / kg),同时降低脂质含量(170-130 g / kg)。使用三组溪鳟进行了为期12周的研究,每组温度的初始重量为48.0 +/- 3.46 g。每天给鱼类喂食2%体重定量的饲料。与19摄氏度相比,在15摄氏度下生长速率更高且饲料利用率更高(P = 0.00)。两种温度下鱼油夹杂物的减少和糊化碳水化合物的增加均对生长和饲料利用率无影响。在15摄氏度时,营养物质和能量的表观消化系数显着高于19摄氏度(P = 0.00)。在两种温度下,随着饮食中碳水化合物含量的增加,干物质,总能量和碳水化合物的能量更易于消化。饮食中碳水化合物的增加会导致肠内α-淀粉酶活性的增加,在15摄氏度时更高。肝脏或肠道组织学无病理变化。在挑战性的高温鳟鱼饲料中,鱼油可以用糊化的碳水化合物代替,而不会损害健康,营养物质的消化率或生长性能

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