Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden.
PLoS Genet. 2012 Jun;8(6):e1002775. doi: 10.1371/journal.pgen.1002775. Epub 2012 Jun 28.
Rose-comb, a classical monogenic trait of chickens, is characterized by a drastically altered comb morphology compared to the single-combed wild-type. Here we show that Rose-comb is caused by a 7.4 Mb inversion on chromosome 7 and that a second Rose-comb allele arose by unequal crossing over between a Rose-comb and wild-type chromosome. The comb phenotype is caused by the relocalization of the MNR2 homeodomain protein gene leading to transient ectopic expression of MNR2 during comb development. We also provide a molecular explanation for the first example of epistatic interaction reported by Bateson and Punnett 104 years ago, namely that walnut-comb is caused by the combined effects of the Rose-comb and Pea-comb alleles. Transient ectopic expression of MNR2 and SOX5 (causing the Pea-comb phenotype) occurs in the same population of mesenchymal cells and with at least partially overlapping expression in individual cells in the comb primordium. Rose-comb has pleiotropic effects, as homozygosity in males has been associated with poor sperm motility. We postulate that this is caused by the disruption of the CCDC108 gene located at one of the inversion breakpoints. CCDC108 is a poorly characterized protein, but it contains a MSP (major sperm protein) domain and is expressed in testis. The study illustrates several characteristic features of the genetic diversity present in domestic animals, including the evolution of alleles by two or more consecutive mutations and the fact that structural changes have contributed to fast phenotypic evolution.
玫瑰冠是鸡的一种经典的单基因特征,与单冠野生型相比,其鸡冠形态发生了剧烈改变。在这里,我们表明玫瑰冠是由第 7 号染色体上的 7.4Mb 倒位引起的,而第二个玫瑰冠等位基因是由玫瑰冠和野生型染色体之间的不等交换产生的。鸡冠表型是由 MNR2 同源结构域蛋白基因的重新定位引起的,导致 MNR2 在鸡冠发育过程中短暂异位表达。我们还为 Bateson 和 Punnett 104 年前报道的第一个上位性相互作用的例子提供了分子解释,即胡桃冠是由玫瑰冠和豌豆冠等位基因的共同作用引起的。MNR2 和 SOX5(导致豌豆冠表型)的瞬时异位表达发生在相同的间质细胞群体中,并且在鸡冠原基中的单个细胞中至少部分重叠表达。玫瑰冠具有多效性效应,因为雄性纯合性与精子运动能力差有关。我们推测这是由于位于其中一个倒位断点处的 CCDC108 基因的破坏所致。CCDC108 是一种特征描述较差的蛋白质,但它包含一个 MSP(主要精子蛋白)结构域,并在睾丸中表达。该研究说明了家养动物中存在的遗传多样性的几个特征,包括通过两个或更多连续突变进化的等位基因,以及结构变化为快速表型进化做出贡献的事实。