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Estimation of genetic parameters for growth and carcass traits in turbot ( Scophthalmus maximus )

机译:大菱岩生长和胴体性状遗传参数估算(Scophthalmus Maximus)

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Information on phenotypic and genetic (co)variance for production traits in turbot is required to improve breeding programs. So far, information on morphometric growth traits is sparse and completely lacking on quality carcass traits like fillet weight or fillet yield for turbot. As part of a long-term study we explored the phenotypic and genetic (co)variance of 16 biometrical and carcass traits of three different European turbot strains. Fish were reared under commercial grow-out conditions, including size grading. We used molecular relatedness (MR) methods based on genotyping with 96?microsatellite markers and animal models. We included an adapted condition factor for Pleuronectiformes (FCI PLN ) and average daily weight gain (ADG) between the ages of 300 and 500?d post-hatch (dph) for their potential correlation with body weight at harvest. Heritability estimates for all traits were low to medium (0.04–0.29) when strains were jointly analyzed. Separate analysis of strains yielded higher heritability estimates (0.12–0.43). Genetic correlations between weight-related traits were highly positive (0.70–0.99), while runs with yield and ratio traits often resulted in unreliable estimates of genetic correlation due to high standard errors. Body weight ( h 2 =0.19 ), fillet yield ( h 2 =0.1 5), and dressing percentage ( h 2 =0.17 ) are particularly promising selection traits for turbot breeding.
机译:需要关于涡轮机中生产性状的表型和遗传(CO)方差的信息来改善育种计划。到目前为止,关于形态学生长性状的信息稀疏,完全缺乏质量胴体性状,如圆角的重量或圆角的圆角屈服。作为长期研究的一部分,我们探讨了三种不同欧洲Turbot菌株的16个生物学和胴体性状的表型和遗传(CO)方差。在商业增长条件下饲养鱼,包括大小分级。我们使用基于基因分型的分子相关性(MR)方法用96〜微卫星标记和动物模型。我们包括一种适应性调节因子(FCI PLN)的适应条件因子,以及在舱口后的300和500〜D 500?D的年龄之间的平均每日体重增加(ADG),其潜在与收获体重的潜在相关性。在共同分析菌株时,所有特征的遗传性估算均低至培养基(0.04-0.29)。分离菌株分析产生较高的遗传性估算(0.12-0.43)。重量相关性状之间的遗传相关性高度阳性(0.70-0.99),而产率和比率的运行通常导致由于高标准误差导致遗传相关的不可靠性估计。体重(H 2 = 0.19),圆角产率(H 2 = 0.1 5),并且敷料百分比(H 2 = 0.17)是涡轮机育种的选择性特性。

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