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全基因组关联研究以鉴定伯克夏猪的肉和胴体品质性状的数量性状位点。

Genome-wide Association Study to Identify Quantitative Trait Loci for Meat and Carcass Quality Traits in Berkshire.

作者信息

Iqbal Asif, Kim You-Sam, Kang Jun-Mo, Lee Yun-Mi, Rai Rajani, Jung Jong-Hyun, Oh Dong-Yup, Nam Ki-Chang, Lee Hak-Kyo, Kim Jong-Joo

机构信息

Jung P&C Institute, Seoul 16950, Korea.

Livestock Research Institute, Yeongju, 750-871, Korea.

出版信息

Asian-Australas J Anim Sci. 2015 Nov;28(11):1537-44. doi: 10.5713/ajas.15.0752.

Abstract

Meat and carcass quality attributes are of crucial importance influencing consumer preference and profitability in the pork industry. A set of 400 Berkshire pigs were collected from Dasan breeding farm, Namwon, Chonbuk province, Korea that were born between 2012 and 2013. To perform genome wide association studies (GWAS), eleven meat and carcass quality traits were considered, including carcass weight, backfat thickness, pH value after 24 hours (pH24), Commission Internationale de l'Eclairage lightness in meat color (CIE L), redness in meat color (CIE a), yellowness in meat color (CIE b), filtering, drip loss, heat loss, shear force and marbling score. All of the 400 animals were genotyped with the Porcine 62K SNP BeadChips (Illumina Inc., USA). A SAS general linear model procedure (SAS version 9.2) was used to pre-adjust the animal phenotypes before GWAS with sire and sex effects as fixed effects and slaughter age as a covariate. After fitting the fixed and covariate factors in the model, the residuals of the phenotype regressed on additive effects of each single nucleotide polymorphism (SNP) under a linear regression model (PLINK version 1.07). The significant SNPs after permutation testing at a chromosome-wise level were subjected to stepwise regression analysis to determine the best set of SNP markers. A total of 55 significant (p<0.05) SNPs or quantitative trait loci (QTL) were detected on various chromosomes. The QTLs explained from 5.06% to 8.28% of the total phenotypic variation of the traits. Some QTLs with pleiotropic effect were also identified. A pair of significant QTL for pH24 was also found to affect both CIE L and drip loss percentage. The significant QTL after characterization of the functional candidate genes on the QTL or around the QTL region may be effectively and efficiently used in marker assisted selection to achieve enhanced genetic improvement of the trait considered.

摘要

猪肉品质和胴体质量属性对于影响猪肉行业的消费者偏好和盈利能力至关重要。从韩国全北道南原市的大山种猪场收集了400头伯克夏猪,这些猪出生于2012年至2013年之间。为了进行全基因组关联研究(GWAS),考虑了11个肉品质和胴体质量性状,包括胴体重、背膘厚、24小时后的pH值(pH24)、国际照明委员会肉色亮度(CIE L)、肉色红色度(CIE a)、肉色黄色度(CIE b)、过滤、滴水损失、热损失、剪切力和大理石纹评分。所有400头动物都用猪62K SNP基因分型芯片(美国Illumina公司)进行了基因分型。在GWAS之前,使用SAS通用线性模型程序(SAS 9.2版本)对动物表型进行预调整,将父系和性别效应作为固定效应,屠宰年龄作为协变量。在模型中拟合固定和协变量因素后,根据线性回归模型(PLINK 1.07版本),将表型残差回归到每个单核苷酸多态性(SNP)的加性效应上。在染色体水平上进行排列检验后,对显著的SNP进行逐步回归分析,以确定最佳的SNP标记集。在不同染色体上共检测到55个显著(p<0.05)的SNP或数量性状位点(QTL)。这些QTL解释了性状总表型变异的5.06%至8.28%。还鉴定出了一些具有多效性的QTL。发现一对影响pH24的显著QTL也会影响CIE L和滴水损失百分比。在QTL或QTL区域周围鉴定出功能候选基因后,这些显著的QTL可有效且高效地用于标记辅助选择,以实现所考虑性状的遗传改良。

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