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Parental contribution and growth hormone gene polymorphism associated with growth phenotypes of red sea bream Pagrus major in mass production: A case study

机译:大量生产的红鲷Pa草生长表型相关的父母贡献和生长激素基因多态性:案例研究

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摘要

Red sea bream is one of the most important aquaculture fish species in Japan. To improve the productivity of this fish during seed production, improved growth traits and reduced size variation are needed. In this study, we assessed parental contribution of fast- and slow-growing individuals observed in two different rearing phases in a mass production lot: (1) 50 dph reared in a tank and (2) 200 dph reared in a net cage. We also assessed GH gene (pmaGH) polymorphisms based on a previously developed minisatellite DNA marker. Specific broodstock individuals were significantly associated with fast- or slow-growing individuals at 50 dph and 200 dph. Significant differences in pmaGH minisatellite allele frequencies were observed between fast- and slow-growing groups at 50 dph in the frequency of two alleles (pmaGH-740 and pmaGH-900, respectively). Combining the results of DNA parentage analysis and pmaGH minisatellite allele analysis, one dam and two sires, possessing pmaGH-740, were significantly associated with the slow-growing groups. These results suggest that the minisatellite marker of pmaGH could be a useful tool for growth selection of this fish species.
机译:红鲷是日本最重要的水产养殖鱼类之一。为了提高该鱼在种子生产过程中的生产力,需要改善其生长性状和减小尺寸变化。在这项研究中,我们评估了在批量生产的两个不同饲养阶段中观察到的快速生长和缓慢生长个体的父母贡献:(1)在罐中饲养了50 dph,(2)在网箱中饲养了200 dph。我们还基于先前开发的小卫星DNA标记评估了GH基因(pmaGH)多态性。特定亲鱼个体与快速生长或缓慢生长的个体(50 dph和200 dph)显着相关。在两个等位基因(分别为pmaGH-740和pmaGH-900)的频率分别为50 dph时,快速生长组和缓慢生长组之间的pmaGH小卫星等位基因频率存在显着差异。结合DNA亲本分析和pmaGH小卫星等位基因分析的结果,拥有pmaGH-740的1个大坝和2个父本与生长缓慢的群体显着相关。这些结果表明,pmaGH的微卫星标记可能是该鱼类生长选择的有用工具。

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