首页> 美国卫生研究院文献>Frontiers in Genetics >Combining Individual Phenotypes of Feed Intake With Genomic Data to Improve Feed Efficiency in Sea Bass
【2h】

Combining Individual Phenotypes of Feed Intake With Genomic Data to Improve Feed Efficiency in Sea Bass

机译:将饲料表型与基因组数据结合起来以提高鲈鱼的饲料效率

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Measuring individual feed intake of fish in farms is complex and precludes selective breeding for feed conversion ratio (FCR). Here, we estimated the individual FCR of 588 sea bass using individual rearing under restricted feeding. These fish were also phenotyped for their weight loss at fasting and muscle fat content that were possibly linked to FCR. The 588 fish were derived from a full factorial mating between parental lines divergently selected for high (F+) or low (F–) weight loss at fasting. The pedigree was known back to the great grand-parents. A subset of 400 offspring and their ancestors were genotyped for 1,110 SNPs which allowed to calculate the genomic heritability of traits. Individual FCR and growth rate in aquarium were both heritable (genomic h2 = 0.47 and 0.76, respectively) and strongly genetically correlated (−0.98) meaning that, under restricted feeding, faster growing fish were more efficient. FCR and growth rate in aquariums were also significantly better for fish with both parents from F– (1.38), worse for fish with two parents F+ (1.51) and intermediate for cross breed fish (F+/F– or F–/F+ at 1.46). Muscle fat content was positively genetically correlated to growth rate in aquarium and during fasting. Thus, selecting for higher growth rate in aquarium, lower weight loss during fasting and fatter fish could improve FCR in aquarium. Improving these traits would also improve FCR of fish in normal group rearing conditions, as we showed experimentally that groups composed of fish with good individual FCR were significantly more efficient. The FCR of groups was also better when the fish composing the groups had, on average, lower estimated breeding values for growth rate during fasting (losing less weight). Thus, improving FCR in aquarium and weight loss during fasting is promising to improve FCR of fish in groups but a selection response experiment needs to be done. Finally, we showed that the reliability of estimated breeding values was higher (from+10% up to +125%) with a genomic-based BLUP model than with a traditional pedigree-based BLUP, showing that genomic data would enhance the accuracy of the prediction of EBV of selection candidates.
机译:测量养殖场中鱼的个体采食量很复杂,因此无法针对饲料转化率(FCR)进行选择性育种。在这里,我们通过在受限喂食的情况下进行单独饲养来估算588海鲈的单独FCR。这些鱼的表型还取决于它们在禁食时的体重减轻和可能与FCR相关的肌肉脂肪含量。 588条鱼取材于在空腹时体重减轻较高(F +)或体重减轻(F–)不同的亲本系之间进行的全因子交配。家谱被曾祖父母所熟知。对400个后代及其祖先的一个亚型进行了1,110个SNP的基因分型,从而可以计算性状的基因组遗传力。水族馆中的个体FCR和生长速率都是可遗传的(分别为h 2 = 0.47和0.76),并且具有很强的遗传相关性(-0.98),这意味着在限制饲喂的情况下,较快生长的鱼类更为有效。父母双亲F–(1.38)的鱼的FCR和生长率也明显好于,父母双F +(1.51)的鱼更差,跨品种鱼(F + / F–或F– / F +为1.46)为中级)。肌肉脂肪含量与水族馆和禁食期间的生长呈正相关。因此,选择较高的水族箱生长速度,降低禁食期间的体重减轻和鱼类增脂可以改善水族馆中的FCR。改善这些性状还可以在正常组饲养条件下改善鱼的FCR,因为我们通过实验证明,由具有良好个体FCR的鱼组成的组效率更高。当组成各组的鱼平均在禁食期间生长速度的估计繁殖值较低(体重减轻)时,各组的FCR也会更好。因此,改善水族箱中的FCR和禁食期间的体重减轻有望改善各组鱼类的FCR,但需要进行选择反应实验。最后,我们表明,基于基因组的BLUP模型的估计育种值的可靠性要高(从+ 10%到+ 125%),这比基于传统谱系的BLUP模型要高,这表明基因组数据可以提高基因组数据的准确性。选择候选人的EBV预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号