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Morphological variation in the horse: defining complex traits of body size and shape

机译:马的形态变异:定义身体大小和形状的复杂特征

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P>Horses, like many domesticated species, have been selected for broad variation in skeletal size. This variation is not only an interesting model of rapid evolutionary change during domestication, but is also directly applicable to the horse industry. Breeders select for complex traits like body size and skeletal conformation to improve marketability, function, soundness and performance in the show ring. Using a well-defined set of 35 measurements, we have identified and quantified skeletal variation in the horse species. We collected measurements from 1215 horses representing 65 breeds of diverse conformation such as the American Miniature, Shetland Pony, Arabian Horse, Thoroughbred, Shire and Clydesdale. Principal components analysis has identified two key dimensions of skeletal variation in the horse. Principal component 1 is positively correlated with every measurement and quantifies overall body size. Principal component 2 captures a pattern of bone widths vs. lengths and thus quantifies variation in overall bone thickness. By defining these complex skeletal traits, we have created a framework for whole genome association studies to identify quantitative trait loci that contribute to this variation.
机译:P>与许多驯养物种一样,已经选择了马来骨骼尺寸的广泛变化。这种变化不仅是驯化过程中快速进化变化的有趣模型,而且还可以直接应用于马业。繁殖者选择复杂的特征,例如体型和骨骼构象,以提高表演圈的可销售性,功能,稳健性和性能。使用一组定义明确的35个测量值,我们已经识别并量化了马种中的骨骼变异。我们收集了代表15种不同构型的1215匹马的测量值,例如美国微型,设得兰群岛小马,阿拉伯马,纯种马,夏尔和克莱德斯代尔。主成分分析确定了马骨骼变化的两个关键维度。主成分1与每次测量都呈正相关,并量化了整个身体的大小。主成分2捕获了骨骼宽度与长度的关系图,从而量化了整体骨骼厚度的变化。通过定义这些复杂的骨骼特征,我们为全基因组关联研究创建了一个框架,以识别导致这种变异的数量性状基因座。

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