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首页> 外文期刊>Animal Genetics >A QTL study of growth and body shape in the inter-species hybrid of Pere David's deer (Elaphurus davidianus) and red deer (Cervus elaphus)
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A QTL study of growth and body shape in the inter-species hybrid of Pere David's deer (Elaphurus davidianus) and red deer (Cervus elaphus)

机译:QTL研究在David鹿(Elaphurus davidianus)和马鹿(Cervus elaphus)种间杂交中的生长和体形

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摘要

An interspecies deer hybrid resource population developed from a cross of Pere David's and red deer was used to detect QTL that account for species differences. A genome scan, coupled with composite interval mapping, was conducted to search for QTL controlling body measurements at pre-pubescent age (6 months of age) and puberty (15 months of age) in this interspecies hybrid. Five linkage groups that harbour QTL affecting morphology were identified. A joint-traits analysis was used to search for putative pleiotropic QTL on four of these linkage groups, and three were significantly associated with pleiotropic QTL for nose width and foot length (metacarpal and phalanges), which collectively accounted for 29-58% of the phenotypic difference between the two deer species. This study suggests that a few loci with large pleiotropic effects may be responsible for species-specific differences in growth and structure-related traits.
机译:从佩尔·大卫(David)和马鹿杂交而来的种间鹿杂种资源种群被用于检测QTL,该QTL解释了物种差异。在该种间杂种中,进行了基因组扫描和复合区间作图,以搜索控制青春期前年龄(6个月大)和青春期(15个月大)的QTL。确定了包含QTL影响形态的五个连锁群。进行了一项联合特征分析,在其中四个连锁组中寻找推定的多效性QTL,其中三项与多效性QTL的鼻子宽度和脚长(掌骨和指骨)显着相关,这些合计占了29-58%两种鹿的表型差异。这项研究表明,少数具有较大多效性的基因座可能是造成生长和结构相关性状的物种特异性差异的原因。

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