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首页> 外文期刊>Aquaculture >Effect of selection for fasting tolerance on feed intake, growth and feed efficiency in the European sea bass Dicentrarchus labrax.
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Effect of selection for fasting tolerance on feed intake, growth and feed efficiency in the European sea bass Dicentrarchus labrax.

机译:禁食选择对欧洲鲈鱼Dicentrarchus labrax的采食量,生长和饲料效率的影响。

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Feed efficiency is a major goal for aquaculture sustainability, and selecting fish to genetically enhance this trait would be highly valuable. However, no selective breeding program specifically targeted to feed efficiency exists for farmed fish, mostly because of the difficulty of measuring individual feed intake. However, a negative phenotypic correlation between feed efficiency and weight loss at fasting has been previously demonstrated in sea bass submitted to feed deprivation (FD). We mated sea bass parents selected for their high (FD+) or low (FD-) weight loss at fasting to produce FD+ and FD- progeny, which were reared in a single tank to avoid common environmental effects. At 8 months of age, 1200 of those fish were submitted to three alternating periods of fasting (3 weeks) and re-feeding (3 weeks). Individuals were weighed at the end of each feeding and fasting period. Their line of origin was identified by genotyping of 12 microsatellite markers, resulting in 1130 unambiguously assigned fish (484 FD-, 686 FD+). FD- offspring lost significantly less weight than FD+ offspring in this feed deprivation trial. After that, the feed efficiency of eight groups of 50 FD+ fish and eight groups of 50 FD- fish was evaluated in four successive 20-day periods. At the end of the fourth period, 10 fish per tank were sacrificed to evaluate their carcass yield. The FD- fish had a better overall growth and were fatter, and FD+ fish had a better carcass yield. A better feed efficiency was expected for the FD- fish, but differences between the two groups for this trait, measured either with feed efficiency ratio or with residual feed intake, were not consistently significant. Although the two lines were clearly divergent for several traits, demonstration of feed efficiency differences between the FD+ and the FD- lines was not consistently observed in sea bass. A second generation of selection may allow further divergence in the lines and reveal differences in feed efficiency.
机译:饲料效率是水产养殖业可持续发展的主要目标,而选择鱼类以遗传方式增强这一特性将非常有价值。但是,没有针对养殖鱼类的专门针对饲料效率的选择性育种计划,这主要是因为难以测量个体饲料的摄入量。然而,先前在提交饲料剥夺(FD)的鲈鱼中已经证明了饲料效率与禁食时体重减轻之间的负表型相关性。我们选择空腹体重减轻(FD + )或体重减轻(FD -)的鲈鱼父母,以产生FD + 和FD -后代,将它们放在单个水箱中饲养以避免常见的环境影响。在8个月大时,将其中的1200条鱼分别禁食(3周)和重新喂食(3周)三个阶段。在每个喂养和禁食期结束时称重个体。通过对12个微卫星标记进行基因分型来鉴定它们的起源,从而明确鉴定了1130条鱼(484 FD -,686 FD + )。在该饲料剥夺试验中,FD -后代的体重减轻得明显少于FD + 后代。之后,在连续的20天中评估了八组50 FD + 鱼和八组50 FD -鱼的饲料效率。在第四阶段结束时,每桶杀死10条鱼以评估其car体产量。 FD -鱼的总体生长较好,且较胖,而FD + 鱼的car体产量更好。预计FD -鱼的饲料效率会更高,但是两组在该性状上的差异(用饲料效率比或剩余饲料摄入量来衡量)并不一致。尽管两条品系在几个特征上明显不同,但在鲈鱼中未始终观察到FD + 和FD -品系之间的饲料效率差异。第二代选择可以允许线的进一步分歧并揭示进料效率的差异。

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