Department of Animal Science, Biotechnical Faculty, University of Ljubljana, Groblje 3, 1230 Domzale, Slovenia.
Anim Genet. 2009 Oct;40(5):743-8. doi: 10.1111/j.1365-2052.2009.01917.x. Epub 2009 May 16.
An F(3) resource population originating from a cross between two divergently selected lines for high (D+ line) or low (D- line) body weight at 8-weeks of age (BW55) was generated and used for Quantitative Trait Locus (QTL) mapping. From an initial cross of two founder F(0) animals from D(+) and D(-) lines, progeny were randomly intercrossed over two generations following a full sib intercross line (FSIL) design. One hundred and seventy-five genome-wide polymorphic markers were employed in the DNA pooling and selective genotyping of F(3) to identify markers with significant effects on BW55. Fifty-three markers on GGA2, 5 and 11 were then genotyped in the whole F(3) population of 503 birds, where interval mapping with GridQTL software was employed. Eighteen QTL for body weight, carcass traits and some internal organ weights were identified. On GGA2, a comparison between 2-QTL vs. 1-QTL analysis revealed two separate QTL regions for body, feet, breast muscle and carcass weight. Given co-localization of QTL for some highly correlated traits, we concluded that there were 11 distinct QTL mapped. Four QTL localized to already mapped QTL from other studies, but seven QTL have not been previously reported and are hence novel and unique to our selection line. This study provides a low resolution QTL map for various traits and establishes a genetic resource for future fine-mapping and positional cloning in the advanced FSIL generations.
一个源于两个在 8 周龄体重(BW55)上进行高度选择(D+线)或低度选择(D-线)的分化选择系杂交的 F(3)资源群体被生成并用于数量性状基因座(QTL)映射。从来自 D(+)和 D(-)系的两个初始 F(0)动物的最初杂交中,后代按照全同胞交叉系(FSIL)设计随机交叉两代。在 F(3)的 DNA 池化和选择性基因分型中使用了 175 个全基因组多态性标记,以鉴定对 BW55 具有显著影响的标记。然后在 503 只鸟类的整个 F(3)群体中对 GGA2、5 和 11 上的 53 个标记进行了基因分型,其中使用 GridQTL 软件进行了区间映射。鉴定出 18 个体重、胴体性状和一些内部器官重量的 QTL。在 GGA2 上,2-QTL 与 1-QTL 分析的比较揭示了身体、脚、胸肌和胴体重量的两个独立的 QTL 区域。鉴于一些高度相关性状的 QTL 存在共定位,我们得出结论,有 11 个独特的 QTL 被映射。四个 QTL 定位到了其他研究已经映射的 QTL,但七个 QTL 以前没有报道过,因此是我们选择系特有的新 QTL。本研究为各种性状提供了低分辨率的 QTL 图谱,并为未来在高级 FSIL 世代中的精细图谱和定位克隆建立了遗传资源。