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首页> 外文期刊>North American Journal of Aquaculture >Comparison of production, meat yield, and meat quality traits of NWAC103 line channel catfish, norris line channel catfish, and female channel catfish x male blue catfish F-1 hybrids
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Comparison of production, meat yield, and meat quality traits of NWAC103 line channel catfish, norris line channel catfish, and female channel catfish x male blue catfish F-1 hybrids

机译:NWAC103系chan​​nel鱼,诺里斯系chan​​nel鱼和雌性cat鱼x雄蓝cat鱼F-1杂种的生产,肉产量和肉质性状的比较

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NWAC103 line channel catfish Ictalurus punctatus, Norris line channel catfish, and Norris line female channel catfish x Dycus Farm line male blue catfish I. furcatus F-1 hybrids were compared for production, meat yield, and meat quality traits. Juvenile fish from each genetic group were stocked at 12,000 fish/ha into three, 0.04-ha ponds per genetic group. Fish were fed once daily to satiation from June through October, and fed on days when afternoon water temperatures were above 17degreesC from November through December. Fish were harvested, weighed, and counted in January, and 150 fish per genetic group (50 fish per pond) were processed and measured for meat and body component yield. Instrumental and sensory panel evaluations of quality were measured on fresh, frozen-thawed, and baked fillets. Stocking weight, harvest weight, and net production (kg/ha) were highest for the NWAC103 line channel catfish, intermediate for the hybrid, and lowest for the Norris line channel catfish. Growth at unit size (a), percent weight gain, survival, and feed conversion were not significantly different among genetic groups. Carcass yield (relative to whole weight) and fillet yield were higher for the hybrid than for the two channel catfish lines, and higher for females than for males in all genetic groups. Head yield and total viscera yield were higher for the channel catfish lines than the hybrid. Head yield was higher for males than for females, and total viscera yield was higher for females than for males. Visceral fat yield was higher for the hybrid than for the two channel catfish lines. Instrumental and sensory panel analysis indicated only minor differences among genetic groups for fillet quality. Thus, catfish producers and processors can improve important traits and increase profits by utilizing catfish lines with superior performance.
机译:比较了NWAC103品系chan​​nel鱼Ictalurus punctatus,Norris品系chan​​nel鱼和Norris品系母channel鱼x Dycus Farm品系蓝I I. furcatus F-1杂种的产量,肉产量和肉质性状。每个基因组的幼鱼以每公顷12,000条鱼的数量放养到每个基因组三个0.04公顷的池塘中。从6月到10月,每天给鱼喂一次饱食,从11月到12月,在下午水温高于17摄氏度的日子里喂鱼。一月份收获,称重并计数鱼类,每个基因组加工了150条鱼(每个池塘50条鱼),并测量了肉和身体成分的产量。对新鲜,冷冻融化和烤制的鱼片进行了仪器和感官小组的质量评估。 NWAC103系chan​​nel鱼的放养重量,收获重量和净产量(kg / ha)最高,杂种为中间,诺里斯系chan​​nel鱼最低。遗传群体之间,单位大小的生长(a),体重增加百分比,存活率和饲料转化率没有显着差异。在所有基因组中,杂种的whole体产量(相对于总重)和圆角产量均高于两个通道的lines鱼品系,雌性高于雄性。槽cat鱼品系的总产量和内脏总产量均高于杂种。雄性的头产量高于雌性,雌性的内脏总产量高于雄性。杂种的内脏脂肪产量高于两通道than鱼。仪器和感官小组分析表明,各基因组之间的鱼片质量仅有微小差异。因此,cat鱼生产者和加工者可以通过利用性能优异的fish鱼品系来改善重要特性并增加利润。

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