Menotti-Raymond Marilyn, David Victor A, Schäffer Alejandro A, Tomlin James F, Eizirik Eduardo, Phillip Cornel, Wells David, Pontius Joan U, Hannah Steven S, O'Brien Stephen J
Laboratory of Genomic Diversity, National Cancer Institute-Frederick, Frederick, MD 21702, USA.
Genomics. 2009 Apr;93(4):305-13. doi: 10.1016/j.ygeno.2008.11.004. Epub 2008 Dec 13.
We report on the completion of an autosomal genetic linkage (GL) map of the domestic cat (Felis silvestris catus). Unlike two previous linkage maps of the cat constructed with a hybrid pedigree between the domestic cat and the Asian leopard cat, this map was generated entirely with domestic cats, using a large multi-generational pedigree (n=256) maintained by the Nestlé Purina PetCare Company. Four hundred eighty-three simple tandem repeat (STR) loci have been assigned to linkage groups on the cat's 18 autosomes. A single linkage group spans each autosome. The length of the cat map, estimated at 4370 cM, is long relative to most reported mammalian maps. A high degree of concordance in marker order was observed between the third-generation map and the 1.5 Mb-resolution radiation hybrid (RH) map of the cat. Using the cat 1.9x whole-genome sequence, we identified map coordinates for 85% of the loci in the cat assembly, with high concordance observed in marker order between the linkage map and the cat sequence assembly. The present version represents a marked improvement over previous cat linkage maps as it (i) nearly doubles the number of markers that were present in the second-generation linkage map in the cat, (ii) provides a linkage map generated in a domestic cat pedigree which will more accurately reflect recombination distances than previous maps generated in a hybrid pedigree, and (iii) provides single linkage groups spanning each autosome. Marker order was largely consistent between this and the previous maps, though the use of a hybrid pedigree in the earlier versions appears to have contributed to some suppression of recombination. The improved linkage map will provide an added resource for the mapping of phenotypic variation in the domestic cat and the use of this species as a model system for biological research.
我们报告了家猫(Felis silvestris catus)常染色体遗传连锁(GL)图谱的构建完成情况。与之前利用家猫和亚洲豹猫的杂交谱系构建的两张猫连锁图谱不同,本图谱完全由家猫构建而成,使用的是雀巢普瑞纳宠物护理公司维持的一个大型多代谱系(n = 256)。483个简单串联重复(STR)位点已被定位到猫的18条常染色体的连锁群上。每个常染色体都有一个单一的连锁群。猫图谱的长度估计为4370厘摩,相对于大多数已报道的哺乳动物图谱来说较长。在第三代图谱与猫的1.5兆碱基分辨率辐射杂种(RH)图谱之间,观察到标记顺序有高度的一致性。利用猫的1.9倍全基因组序列,我们确定了猫基因组组装中85%位点的图谱坐标,在连锁图谱与猫序列组装之间的标记顺序上观察到高度的一致性。当前版本相对于之前的猫连锁图谱有显著改进,因为它(i)使猫第二代连锁图谱中的标记数量几乎增加了一倍,(ii)提供了一个在家猫谱系中生成的连锁图谱,与之前在杂交谱系中生成的图谱相比,它将更准确地反映重组距离,并且(iii)提供了跨越每条常染色体的单一连锁群。尽管早期版本中使用杂交谱系似乎导致了一些重组抑制,但本图谱与之前的图谱之间标记顺序在很大程度上是一致的。改进后的连锁图谱将为家猫表型变异的定位以及将该物种用作生物学研究的模型系统提供额外的资源。