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Joint multiple quantitative trait loci mapping for allometries of body compositions and metabolic traits to body weights in broiler

机译:对肉鸡体重和代谢性质对肉鸡体重的联合多量子性状基因座测绘

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摘要

In order to map quantitative trait loci (QTLs) for allometries of body compositions and metabolic traits in chicken, we phenotypically characterize the allometric growths of multiple body components and metabolic traits relative to BWs using joint allometric scaling models and then establish random regression models (RRMs) to fit genetic effects of markers and minor polygenes derived from the pedigree on the allometric scalings. Prior to statistically inferring the QTLs for the allometric scalings by solving the RRMs, the LASSO technique is adopted to rapidly shrink most of marker genetic effects to zero. Computer simulation analysis confirms the reliability and adaptability of the so-called LASSO-RRM mapping method. In the F-2 population constructed by multiple families, we formulate two joint allometric scaling models of body compositions and metabolic traits, in which six of nine body compositions are tested as significant, while six of eight metabolic traits are as significant. For body compositions, a total of 14 QTLs, of which 9 dominant, were detected to be associated with the allometric scalings of drumstick, fat, heart, shank, liver and spleen to BWs; while for metabolic traits, a total of 19 QTLs also including 9 dominant be responsible for the allometries of T4, IGFI, IGFII, GLC, INS, IGR to BWs. The detectable QTLs or highly linked markers can be used to regulate relative growths of the body components and metabolic traits to BWs in marker-assisted breeding of chickens.
机译:为了将定量性状的基因座(QTL)用于鸡肉中的身体组成和代谢性状,我们使用关节同种异性缩放模型和建立随机回归模型相对于BWS的多个身体成分和代谢性状的同等物质生长和建立随机回归模型(RRMS )为了适应衍生自血迹上的标记物和次要多根的遗传效果。在通过解决RRMS统计地推断出各种缩放的QTL,采用套索技术将大部分标记遗传效应快速收缩至零。计算机仿真分析证实了所谓的LASSO-RRM映射方法的可靠性和适应性。在由多个家庭构建的F-2种群中,我们制定了两个身体组成和代谢性状的联合同种异体缩放模型,其中六种九个身体组合物的含量显着,而六种代谢性状的六种是显着的。对于身体组合物,检测到具有9个QTL的14个QTL,与鼓槌,脂肪,心脏,柄,肝脏和脾脏的同种异数级别与BWS相关联;在进行代谢性状的同时,共有19个QTL也包含9个显性,对T4,IGFI,IGFII,GLC,IER,IAGR的血栓制人,IAGR为BWS。可检测的QTL或高度连接的标记可用于调节身体成分的相对生长和代谢性质在鸡的标记辅助繁殖中的BWS中。

著录项

  • 来源
    《Animal》 |2020年第6期|共8页
  • 作者单位

    Heilongjiang Bayi Agr Univ Dept Informat &

    Comp Sci 5 Xinfeng Rd Daqing 163319 Peoples R China;

    Heilongjiang Bayi Agr Univ Coll Anim Sci &

    Vet Med 5 Xinfeng Rd Daqing 163319 Peoples R China;

    Heilongjiang Bayi Agr Univ Dept Informat &

    Comp Sci 5 Xinfeng Rd Daqing 163319 Peoples R China;

    Chinese Acad Fishery Sci Res Ctr Aquat Biotechnol 150 Qingta West Rd Beijing 100141 Peoples R China;

    Heilongjiang Bayi Agr Univ Dept Informat &

    Comp Sci 5 Xinfeng Rd Daqing 163319 Peoples R China;

    Heilongjiang Bayi Agr Univ Dept Informat &

    Comp Sci 5 Xinfeng Rd Daqing 163319 Peoples R China;

    Chinese Acad Fishery Sci Res Ctr Aquat Biotechnol 150 Qingta West Rd Beijing 100141 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 畜牧、动物医学、狩猎、蚕、蜂;
  • 关键词

    relative growth; random regression model; organ tissue; quality trait; linkage analysis;

    机译:相对生长;随机回归模型;器官组织;质量特征;联系分析;

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