...
首页> 外文期刊>Genetics, selection, evolution >A genome-wide association study of limb bone length using a Large White?×?Minzhu intercross population
【24h】

A genome-wide association study of limb bone length using a Large White?×?Minzhu intercross population

机译:大白×××民珠交叉种群的四肢骨长全基因组关联研究

获取原文

摘要

Background In pig, limb bone length influences ham yield and body height to a great extent and has important economic implications for pig industry. In this study, an intercross population was constructed between the indigenous Chinese Minzhu pig breed and the western commercial Large White pig breed to examine the genetic basis for variation in limb bone length. The aim of this study was to detect potential genetic variants associated with porcine limb bone length. Methods A total of 571?F2 individuals from a Large White and Minzhu intercross population were genotyped using the Illumina PorcineSNP60K Beadchip, and phenotyped for femur length (FL), humerus length (HL), hipbone length (HIPL), scapula length (SL), tibia length (TL), and ulna length (UL). A genome-wide association study was performed by applying the previously reported approach of genome-wide rapid association using mixed model and regression. Statistical significance of the associations was based on Bonferroni-corrected P-values. Results A total of 39 significant SNPs were mapped to a 11.93?Mb long region on pig chromosome 7 (SSC7). Linkage analysis of these significant SNPs revealed three haplotype blocks of 495?kb, 376?kb and 492?kb, respectively, in the 11.93?Mb region. Annotation based on the pig reference genome identified 15 genes that were located near or contained the significant SNPs in these linkage disequilibrium intervals. Conditioned analysis revealed that four SNPs, one on SSC2 and three on SSC4, showed significant associations with SL and HL, respectively. Conclusions Analysis of the 15 annotated genes that were identified in these three haplotype blocks indicated that HMGA1 and PPARD, which are expressed in limbs and influence chondrocyte cell growth and differentiation, could be considered as relevant biological candidates for limb bone length in pig, with potential applications in breeding programs. Our results may also be useful for the study of the mechanisms that underlie human limb length and body height.
机译:背景技术在猪中,四肢的骨长在很大程度上影响火腿产量和身高,并且对养猪业具有重要的经济意义。在这项研究中,在中国本土的猪zhu猪品种和西方商业的大白猪品种之间建立了一个交叉种群,以研究肢体骨长变异的遗传基础。这项研究的目的是检测与猪肢体骨长相关的潜在遗传变异。方法使用Illumina PorcineSNP60K Beadchip对来自大白族和民朱族的一个大群交配的571?F2个体进行基因分型,并对股骨长度(FL),肱骨长度(HL),髋骨长度(HIPL),肩cap骨长度(SL)进行表型分析,胫骨长度(TL)和尺骨长度(UL)。通过使用混合模型和回归应用先前报道的全基因组快速关联方法,进行了全基因组关联研究。关联的统计显着性基于Bonferroni校正的P值。结果共有39个重要SNP被定位在猪7号染色体(SSC7)的11.93?Mb长区域。对这些重要的SNP的连锁分析显示,在11.93?Mb区域中,分别有四个分别为495?kb,376?kb和492?kb的单倍型区。基于猪参考基因组的注释识别了15个位于这些连锁不平衡区间中或附近包含重要SNP的基因。条件分析表明,四个SNP,一个在SSC2上,三个在SSC4上,分别显示与SL和HL显着相关。结论对这三个单倍型模块中鉴定的15个注释基因的分析表明,HMGA1和PPARD在肢体中表达并影响软骨细胞的生长和分化,可以被认为是猪肢体骨长的相关生物学候选物,具有潜在的潜力。在育种程序中的应用。我们的结果对于研究人体四肢长度和身高的潜在机制也可能有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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