Royo L J, Traoré A, Tambourá H H, Alvarez I, Kaboré A, Fernández I, Ouédraogo-Sanou G, Toguyeni A, Sawadogo L, Goyache F
SERIDA-Somió, Gijón, Asturias, Spain.
Anim Genet. 2009 Jun;40(3):344-7. doi: 10.1111/j.1365-2052.2008.01828.x. Epub 2009 Jan 20.
To date, no comprehensive study has been performed on mitochondrial genetic diversity of the West African goat. Here, we analysed a 481-bp fragment of the HVI region of 111 goats representing four native West African populations, namely the three main Burkina Faso breeds, zoo-farm kept Dwarf goats and endangered Spanish goat breeds used as the outgroup. Analyses gave 83 different haplotypes with 102 variable sites. Most haplotypes (65) were unique. Only three haplotypes were shared between populations. Haplotypes were assigned to cluster A except for H45 (belonging to the Spanish Bermeya goat) which was assigned to cluster C. amova analysis showed that divergence between groups (Phi(CT)) was not statistically significant regardless of whether the partition in two hierarchical levels that was fitted included Spanish samples or not. The West African goat scenario shown here is consistent with that previously reported for the species: haplogroup A is predominant and has a very high haplotype diversity regardless of the geographic area or sampled breed. The large phenotypic differences observable between the West African Dwarf and Sahelian long-legged goat populations are not detectable with mitochondrial markers. Moreover, a previously suggested introgression of Sahelian goat southwards because of desertification could not be assessed using mtDNA information.
迄今为止,尚未对西非山羊的线粒体遗传多样性进行全面研究。在此,我们分析了111只山羊的高变区I(HVI)区域的481bp片段,这些山羊代表了四个西非本地种群,即布基纳法索的三个主要品种、动物园养殖的矮山羊以及作为外群的濒危西班牙山羊品种。分析得到83种不同单倍型和102个可变位点。大多数单倍型(65种)是独特的。种群间仅共享三种单倍型。除H45(属于西班牙贝梅亚山羊)被归为C簇外,其他单倍型均归为A簇。分子方差分析(AMOVA)表明无论拟合的两个层次水平划分中是否包含西班牙样本,组间差异(Phi(CT))均无统计学意义。此处展示的西非山羊情况与该物种先前报道的一致:无论地理区域或采样品种如何,A单倍群占主导且具有非常高的单倍型多样性。西非矮山羊和萨赫勒长腿山羊种群之间可观察到的巨大表型差异在线粒体标记中无法检测到。此外,先前因沙漠化导致萨赫勒山羊向南渗入这一推测无法利用线粒体DNA信息进行评估。