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Genome-wide association study and functional analysis of feet and leg conformation traits in Nellore cattle

机译:内洛尔牛的全基因组关联研究和脚和腿构象特征的功能分析

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摘要

Feet and leg conformation is evaluated as a subset of conformational structure traits in dairy and beef cattle and is related to the feet and leg quality that can compromise the animals’ productive performance and longevity. The aim of this study was to perform a genome-wide association study (>GWAS) of two traits related to feet and leg conformation in Nellore cattle to identify chromosomal regions related to the expression of these traits. Phenotypic and pedigree data from 104,725 animals and genotypes from 1,435 animals and 407,730 SNPs were used. Feet and leg structure was evaluated as a binary trait (>FL1) to identify yearling animals with feet and leg problems or as categorical score (>FL2) to assess the overall quality of their feet and leg. The top ten 1-Mb windows that explained the largest proportion of the total genetic variance were identified and functional enrichment analyses were performed. The 10 windows with large effects obtained for FL1 are located on chromosomes 1, 2, 6, 7, 8, 10, and 14, and together explained 8.96% of the additive genetic variance. For FL2, these windows are located on chromosomes 1, 7, 10, 11, 18, 20, 22, 28, and 29, explaining 8.98% of the additive genetic variance. Several candidate genes were identified, including DLX2 which is associated with osteogenic differentiation, IL-1β and IL-1A associated with some properties of articular cartilage, PiT1 which plays an important role in bone physiology, and CTSL associated with rheumatoid arthritis. The results presented here should contribute to a better understanding of the genetic and physiologic mechanisms regulating both traits, and identifies candidate genes for future investigation of causal mutations.
机译:脚和腿的构型被评估为奶牛和肉牛构象结构特征的一个子集,并且与脚和腿的质量有关,后者可能损害动物的生产性能和寿命。这项研究的目的是对与内罗尔牛脚和腿构型有关的两个性状进行全基因组关联研究(> GWAS ),以鉴定与这些性状表达相关的染色体区域。使用来自104,725只动物的表型和谱系数据以及来自1,435只动物和407,730个SNP的基因型。脚和腿的结构被评估为二元性状(> FL1 ),以识别一岁有脚和腿问题的一岁动物,或作为类别评分(> FL2 )来评估其总体质量脚和腿。确定了解释总遗传变异最大比例的前十个1-Mb窗口,并进行了功能富集分析。 FL1获得的10个影响较大的窗口位于1、2、6、7、8、10和14号染色体上,共同解释了8.96%的累加遗传方差。对于FL2,这些窗口位于1、7、10、11、18、20、22、28和29号染色体上,解释了8.98%的附加遗传方差。确定了几个候选基因,包括与成骨分化相关的DLX2,与关节软骨的某些特性相关的IL-1β和IL-1A,在骨骼生理中起重要作用的PiT1和与类风湿性关节炎相关的CTSL。此处提出的结果应有助于更好地理解调节这两个性状的遗传和生理机制,并确定候选基因以用于将来的因果突变研究。

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