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首页> 外文期刊>Oceanographic Literature Review >Selective breeding for juvenile survival in Chinese tongue sole (Cynoglossus semilaevis): Heritability and selection response
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Selective breeding for juvenile survival in Chinese tongue sole (Cynoglossus semilaevis): Heritability and selection response

机译:中国舌唯一少年存活的选择性育种(Cynoglossus semilaevis):遗传学和选择响应

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Chinese tongue sole (Cynoglossus semilaevis) is an economically important marine flatfish which is now severely threatened by various bacterial pathogens (especially at juvenile stage) in China. As we all known, it is of great importance to increase the natural disease resistance of farmed fish. So, the aim of this study was to verify the exitance of genetic variance of natural disease resistance and to detect the selection response by using juvenile natural survival data (involving four year-classes and three generations with 221 full-sib families, 195,589 individuals). Survival was defined as binary trait (dead/alive) fitted in two cross-sectional models (i.e. cross-sectional linear sire-dam model (CLM) and cross-sectional threshold (logit) sire-dam model (CTM)). Heritabilities of survival were estimated with each generation dataset and with complete dataset. Heritability estimates varied among generations regardless of model used, i.e., 0.01-0.17 and 0.03-0.25 for CLM and CTM respectively. On the observed (CLM) and underlying (CTM) scale with complete dataset, the heritabilities were 0.09 ± 0.04 and 0.13 ± 0.06 respectively. Both models performed nearly identical and very high selection accuracy (> 0.99), the accuracy of selection obtained from CLM (0.993) was slightly higher than CTM (0.991). By cross-validation, the prediction accuracy of CLM is 21 % higher than CTM, which was 0.885 and 0.730 for CLM and CTM respectively. The average of predicted genetic gain for each generation was 14.89%, and the average of realized genetic gain was 8.10% per generation for juvenile survival. These results confirmed the existence of genetic variation for juvenile natural survival and highlighted the enormous potential for improving natural survival by selective breeding in tongue sole.
机译:中国舌唯一(Cynoglossus semilaevis)是一个经济上重要的海洋扁平鱼,现在受到中国各种细菌病原体(特别是在中国少年阶段)的严重威胁。众所周知,增加养殖鱼的自然疾病抗性是非常重要的。因此,本研究的目的是验证天然疾病抵抗的遗传方差的出发,并通过使用少年自然生存数据来检测选择响应(涉及四年课程,三代,195,589人) 。存活被定义为两个横截面模型(即横截面线性岩石模型(CLM)和横截面阈值(LOGIT)SIRE-DAM模型(CTM))的二进制特征(即死/活)。每个代数据集和完整的数据集估算生存的遗产。不管使用的模型,即CLM和CTM的模型,几代内部的遗传性估计变化。分别用于CLM和CTM的0.01-0.17%。在观察到的(CLM)和底层(CTM)与完全数据集中的尺度,遗传学分别为0.09±0.04和0.13±0.06。两种型号的两种模型几乎相同并且非常高的选择精度(> 0.99),从CLM(0.993)获得的选择精度略高于CTM(0.991)。通过交叉验证,CLM的预测精度高于CTM的21%,分别为CTM,CLM和CTM分别为0.885和0.730。每代预测遗传增益的平均值为14.89%,实现遗传增益的平均值为少年存活率为8.10%。这些结果证实了幼年自然存活的遗传变异,并强调了通过在舌唯一的选择性育种改善自然存活的巨大潜力。

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  • 来源
    《Oceanographic Literature Review 》 |2020年第10期| 2279-2279| 共1页
  • 作者

    Y. Li; Y. Hu; Y. Yang;

  • 作者单位

    Key Laboratory for Sustainable Development of Marine Fisheries Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao 266071 China;

    Key Laboratory for Sustainable Development of Marine Fisheries Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao 266071 China;

    Key Laboratory for Sustainable Development of Marine Fisheries Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao 266071 China;

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