Carneiro Miguel, Ferrand Nuno
CIBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos, Campus Agrário de Vairão, 4485-661 Vairão, Portugal.
Genet Sel Evol. 2007 May-Jun;39(3):341-52. doi: 10.1186/1297-9686-39-3-341. Epub 2007 Apr 14.
Kappa-casein (CSN3) plays an important role in stabilising the Ca-sensitive caseins in the micelle. The European rabbit (Oryctolagus cuniculus) CSN3 has previously been shown to possess two alleles (A and B), which differ deeply in their intronic regions (indels of 100 and 1550 nucleotides in introns 1 and 4, respectively). Furthermore, a correlation between several reproductive performance traits and the different alleles was described. However, all these data were exclusively collected in rabbit domestic breeds, preventing a deeper understanding of the extensive polymorphism observed in the CSN3 gene. Additionally, the techniques available for the typing of both indel polymorphisms were until now not suitable for large-scale studies. In this report, we describe a simple, PCR-based typing method to distinguish rabbit CSN3 alleles. We analyse both ancient wild rabbit populations from the Iberian Peninsula and France, and the more recently derived English wild rabbits and domestic stocks. A new allele (C) showing another major indel (250 bp) in intron 1 was found, but exclusively detected in Iberian wild rabbits. In addition, our survey revealed the occurrence of new haplotypes in wild populations, suggesting that intragenic recombination is important in creating genetic diversity at this locus. This easy and low cost single-step PCR-based method results in an improvement over previous described techniques, can be easily set up in a routine molecular laboratory and would probably be a valuable tool in the management of rabbit domestic breeds.
κ-酪蛋白(CSN3)在稳定乳糜微粒中对钙敏感的酪蛋白方面发挥着重要作用。欧洲兔(穴兔)的CSN3先前已被证明具有两个等位基因(A和B),它们的内含子区域差异很大(分别在内含子1和4中有100和1550个核苷酸的插入/缺失)。此外,还描述了几种繁殖性能性状与不同等位基因之间的相关性。然而,所有这些数据都是专门在家兔品种中收集的,这妨碍了对CSN3基因中观察到的广泛多态性的更深入理解。此外,到目前为止,可用于两种插入/缺失多态性分型的技术都不适合大规模研究。在本报告中,我们描述了一种简单的基于PCR的分型方法来区分兔CSN3等位基因。我们分析了来自伊比利亚半岛和法国的古代野兔种群,以及最近衍生的英国野兔和家兔种群。发现了一个新的等位基因(C),其在内含子1中显示出另一个主要的插入/缺失(250 bp),但仅在伊比利亚野兔中检测到。此外,我们的调查揭示了野生种群中出现了新的单倍型,这表明基因内重组在该位点创造遗传多样性方面很重要。这种简单且低成本的基于单步PCR的方法比先前描述的技术有所改进,可以很容易地在常规分子实验室中建立,并且可能是家兔品种管理中的一个有价值的工具。