首页> 外文期刊>Aquaculture Research >Strain differences in feed efficiency measured as residual feed intake in individually reared rainbow trout, Oncorhynchus mykiss (Walbaum).
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Strain differences in feed efficiency measured as residual feed intake in individually reared rainbow trout, Oncorhynchus mykiss (Walbaum).

机译:饲料效率的菌株差异以个体饲养的虹鳟鱼(Wonbahynchus mykiss(Walbaum))中的残余饲料摄入量来衡量。

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摘要

The efficient use of feed for growth and meat production is important for all animal production industries including aquaculture. Residual feed intake (RFI) is an alternative measure of feed efficiency that has been widely used in livestock production. Residual feed intake was calculated as the difference between intake observed and intake predicted on the basis of a bioenergetics model; a low RFI indicates greater efficiency. Residual feed intake offers some advantages as a selection criterion for improving production efficiency over traditional feed efficiency statistics because it is not a ratio and it typically has a larger coefficient of variation. The RFI of individually reared rainbow trout progeny from six different genetic cross-types was examined for genetic variation. Proximate analysis and nitrogen retention were also evaluated to determine if differences in RFI correlate to differences in body composition and nutrient retention and varied by cross-type. Differences between cross-types indicated a genetic component for RFI, with the most efficient fish of approximately 160 g consuming 0.99 g less and inefficient fish consuming 0.05 g more feed per day than expected. Lower RFI was associated with higher growth rates (r=-0.38, P<0.05) and greater nitrogen retention (r=-0.82 P<0.001)..
机译:有效地利用饲料进行生长和肉类生产对于包括水产养殖在内的所有动物生产行业都很重要。剩余饲料摄入量(RFI)是替代饲料效率的一种方法,已广泛用于畜牧业。根据生物能学模型,将残余饲料摄入量计算为观察到的摄入量与预测的摄入量之间的差;低RFI表示效率更高。与传统的饲料效率统计数据相比,残余饲料摄入量可以作为提高生产效率的选择标准,具有一些优势,因为它不是比率,并且通常具有较大的变异系数。检查了来自六个不同遗传交叉类型的单独饲养的虹鳟鱼后代的RFI的遗传变异。还评估了近程分析和氮保留量,以确定RFI的差异是否与身体组成和养分保留的差异相关,并且是否因交叉类型而异。交叉类型之间的差异表明,RFI是遗传成分,与预期相比,最高效的鱼约160 g的日消耗量少0.99 g,低效鱼的日食消耗量多0.05 g。较低的RFI与较高的生长速率(r = -0.38,P <0.05)和较高的氮保留(r = -0.82 P <0.001)相关。

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