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首页> 外文期刊>Poultry Science >Genome-wide linkage analysis to identify chromosomal regions affecting phenotypic traits in the chicken. III. Skeletal integrity
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Genome-wide linkage analysis to identify chromosomal regions affecting phenotypic traits in the chicken. III. Skeletal integrity

机译:全基因组连锁分析,以确定影响鸡表型性状的染色体区域。三,骨骼完整性

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摘要

Two unique chicken F(2) populations generated from a broiler breeder male line and 2 genetically distinct inbred (>99%) chicken lines (Leghorn and Fayoumi) were used for whole genome QTL analysis. Twelve phenotypic skeletal integrity traits (6 absolute and 6 relative traits) were measured or calculated, including bone mineral content, bone mineral density, tibia length, shank length, shank weight, and shank length:shank weight. All traits were also expressed as a percentage of BW at 8 wk of age. Birds were genotyped for 269 microsatellite markers across the entire genome. The QTL affecting bone traits in chickens were detected by the QTL express program. Significance levels were obtained using the permutation test. For the 12 traits, a total of 56 significant QTL were detected at the 5% chromosome-wise significance level, of which 14 and 10 were significant at the 5% genome-wise level for the broiler-Leghorn cross and broiler-Fayoumi cross, respectively. Phenotypic variation for each trait explained by all detected QTL across the genome ranged from 12.0 to 35.6% in the broiler-Leghorn cross and 2.9 to 31.3% in the broiler-Fayoumi cross. Different QTL profiles identified between the 2 related F(2) crosses for most traits suggested that genetic background is an important factor for QTL analysis. Study of associations of biological candidate genes with skeletal integrity traits in chickens will reveal new knowledge of understanding biological process of skeletal homeostasis. The results of the current study have identified markers for bone strength traits, which may be used to genetically improve skeletal integrity in chickens by MAS, and to identify the causal genes for these traits.
机译:从肉鸡育种雄性品系和2个遗传上不同的近交(> 99%)鸡品系(Leghorn和Fayoumi)产生的两个独特的鸡F(2)种群用于全基因组QTL分析。测量或计算了十二个表型骨骼完整性特征(6个绝对特征和6个相对特征),包括骨矿物质含量,骨矿物质密度,胫骨长度,小腿长度,小腿重量以及小腿长度:小腿重量。所有特征也表示为8周龄时体重的百分比。在整个基因组中对鸟类进行269种微卫星标记的基因分型。通过QTL Express程序检测到影响鸡骨骼特征的QTL。使用排列检验获得显着性水平。对于这12个性状,在5%染色体显着性水平上共检测到56个显着QTL,其中在5%染色体组水平上,肉鸡-来格霍恩杂交和肉鸡-Fayoumi杂交中有14和10个显着QTL,分别。整个基因组中所有检测到的QTL解释的每个性状的表型变异在肉鸡-来格霍恩杂交中为12.0%至35.6%,在肉鸡-法尤米杂交中为2.9%至31.3%。对于大多数性状,在2个相关F(2)杂交之间鉴定出的不同QTL概况表明,遗传背景是QTL分析的重要因素。鸡生物学候选基因与骨骼完整性特征的关联研究将揭示了解骨骼稳态的生物学过程的新知识。目前的研究结果已经确定了骨强度性状的标记,可以通过MAS遗传改良鸡的骨骼完整性,并鉴定这些性状的致病基因。

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