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The Chicken Frizzle Feather Is Due to an α-Keratin (KRT75) Mutation That Causes a Defective Rachis

机译:鸡毛躁羽毛是由于α-角蛋白(KRT75)突变导致不良Rachis

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摘要

Feathers have complex forms and are an excellent model to study the development and evolution of morphologies. Existing chicken feather mutants are especially useful for identifying genetic determinants of feather formation. This study focused on the gene F, underlying the frizzle feather trait that has a characteristic curled feather rachis and barbs in domestic chickens. Our developmental biology studies identified defects in feather medulla formation, and physical studies revealed that the frizzle feather curls in a stepwise manner. The frizzle gene is transmitted in an autosomal incomplete dominant mode. A whole-genome linkage scan of five pedigrees with 2678 SNPs revealed association of the frizzle locus with a keratin gene-enriched region within the linkage group E22C19W28_E50C23. Sequence analyses of the keratin gene cluster identified a 69 bp in-frame deletion in a conserved region of KRT75, an α-keratin gene. Retroviral-mediated expression of the mutated F cDNA in the wild-type rectrix qualitatively changed the bending of the rachis with some features of frizzle feathers including irregular kinks, severe bending near their distal ends, and substantially higher variations among samples in comparison to normal feathers. These results confirmed KRT75 as the F gene. This study demonstrates the potential of our approach for identifying genetic determinants of feather forms.
机译:羽毛具有复杂的形式,是研究形态发展和演变的极佳模型。现有的鸡羽毛突变体对于鉴定羽毛形成的遗传决定因素特别有用。这项研究的重点是基因F,该基因具有卷曲羽毛特征,在家用鸡中具有卷曲的羽毛轴和倒钩。我们的发育生物学研究确定了羽毛髓质形成中的缺陷,而物理研究表明,毛躁羽毛会逐步卷曲。毛躁基因以常染色体不完全显性方式传播。对5个家系和2678个SNP进行的全基因组连锁扫描显示,毛躁基因座与连锁组E22C19W28_E50C23中的富含角蛋白基因的区域相关。角蛋白基因簇的序列分析鉴定出在α-角蛋白基因KRT75的保守区域中有69bp的读框内缺失。逆转录病毒介导的野生型金龟子中突变的F cDNA的表达定性地改变了卷轴的弯曲,具有卷曲的羽毛的一些特征,包括不规则的扭结,在其远端附近的严重弯曲以及与正常羽毛相比样品之间的差异明显更高。这些结果证实了KRT75为F基因。这项研究证明了我们方法鉴定羽毛形式遗传决定因素的潜力。

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