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Genetic improvement of feed conversion ratio via indirect selection against lipid deposition in farmed rainbow trout (Oncorhynchus mykiss Walbaum)

机译:通过间接选择养殖虹鳟鱼中脂质沉积的遗传选择来提高饲料转化率的遗传学(Oncorhynchus mykiss Walbaum)

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摘要

In farmed fish, selective breeding for feed conversion ratio (FCR) may be possible via indirectly selecting for easily-measured indicator traits correlated with FCR. We tested the hypothesis that rainbow trout with low lipid% have genetically better FCR, and that lipid% may be genetically related to retention efficiency of macronutrients, making lipid% a useful indicator trait. A quantitative genetic analysis was used to quantify the benefit of replacing feed intake in a selection index with one of three lipid traits: body lipid%, muscle lipid% or viscera% weight of total body weight (reflecting visceral lipid). The index theory calculations showed that simultaneous selection for weight gain and against feed intake (direct selection to improve FCR) increased the expected genetic response in FCR by 1.50-fold compared with the sole selection for growth. Replacing feed intake in the selection index with body lipid%, muscle lipid% or viscera% increased genetic response in FCR by 1.29-, 1.49- and 1.02-fold, respectively, compared with the sole selection for growth. Consequently, indirect selection for weight gain and against muscle lipid% was almost as effective as direct selection for FCR. Fish with genetically low body and muscle lipid% were more efficient in turning ingested protein into protein weight gain. Both physiological and genetic mechanisms promote the hypothesis that low-lipid% fish are more efficient. These results highlight that in breeding programmes of rainbow trout, control of lipid deposition improves not only FCR but also protein-retention efficiency. This improves resource efficiency of aquaculture and reduces nutrient load to the environment.
机译:在养殖鱼类中,可以通过间接选择与FCR相关的易于测量的指标性状来进行饲料转化率(FCR)的选择性育种。我们检验了以下假设:低脂质%的虹鳟鱼在遗传上具有更好的FCR,并且脂质%可能与大量营养素的保留效率遗传相关,这使脂质%成为有用的指示性状。定量遗传分析用于量化选择指数中三种脂质特性之一替代饲料摄入的益处:身体脂质%,肌肉脂质%或内脏重量占总体重的重量(反映内脏脂质)。指数理论计算表明,与单独选择生长相比,同时选择增重和反对采食(直接选择以改善FCR)可使FCR的预期遗传反应提高1.50倍。与单独选择生长相比,用体脂%,肌肉脂%或内脏%代替饲料摄入的选择率使FCR的遗传反应分别提高了1.29、1.49和1.02倍。因此,间接选择体重增加和对抗肌肉脂质%几乎与直接选择FCR一样有效。具有低遗传和低体脂百分比的鱼类在将摄入的蛋白质转变为蛋白质增重方面更有效。生理机制和遗传机制都促进了低脂鱼类效率更高的假说。这些结果表明,在虹鳟鱼的育种程序中,控制脂质沉积不仅可以改善FCR,而且可以提高蛋白质保留效率。这提高了水产养殖的资源效率,并减少了对环境的营养负荷。

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