Haworth K, Putt W, Cattanach B, Breen M, Binns M, Lingaas F, Edwards Y H
MRC Human Biochemical Genetics Unit, University College London, UK.
Mamm Genome. 2001 Mar;12(3):212-8. doi: 10.1007/s003350010253.
Domestic dog breeds show a wide variety of morphologies and offer excellent opportunities to study the molecular genetics of phenotypic traits. We are interested in exploring this potential and have begun by investigating the genetic basis of a short-tail trait. Our focus has been on the T gene, which encodes a T-box transcription factor important for normal posterior mesoderm development. Haploinsufficiency of T protein underlies a short-tail phenotype in mice that is inherited in an autosomal dominant fashion. We have cloned the dog homolog of T and mapped the locus to canine Chromosome (Chr) 1q23. Full sequence analysis of the T gene from a number of different dog breeds identified several polymorphisms and a unique missense mutation in a bob-tailed dog and its bob-tailed descendants. This mutation is situated in a highly conserved region of the T-box domain and alters the ability of the T protein to bind to its consensus DNA target. Analysis of offspring from several independent bobtail x bobtail crosses indicates that the homozygous phenotype is embryonic lethal.
家犬品种呈现出各种各样的形态,为研究表型性状的分子遗传学提供了绝佳机会。我们对探索这一潜力很感兴趣,并已从研究短尾性状的遗传基础入手。我们关注的是T基因,它编码一种对正常后中胚层发育很重要的T盒转录因子。T蛋白的单倍剂量不足是小鼠短尾表型的基础,该表型以常染色体显性方式遗传。我们已经克隆了犬T基因的同源物,并将该基因座定位到犬1号染色体(Chr)1q23。对多个不同犬种的T基因进行全序列分析,在一只短尾犬及其短尾后代中鉴定出了几种多态性和一个独特的错义突变。该突变位于T盒结构域的一个高度保守区域,改变了T蛋白与共有的DNA靶点结合的能力。对几个独立的短尾×短尾杂交后代的分析表明,纯合表型在胚胎期致死。