CAS Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences (CAS), Beijing 100101, China.
G3 (Bethesda). 2014 Apr 16;4(4):595-604. doi: 10.1534/g3.114.010389.
Quantitative trait locus (QTL) mapping studies of Pacific three-spined sticklebacks (Gasterosteus aculeatus) have uncovered several genomic regions controlling variability in different morphological traits, but QTL studies of Atlantic sticklebacks are lacking. We mapped QTL for 40 morphological traits, including body size, body shape, and body armor, in a F2 full-sib cross between northern European marine and freshwater three-spined sticklebacks. A total of 52 significant QTL were identified at the 5% genome-wide level. One major QTL explaining 74.4% of the total variance in lateral plate number was detected on LG4, whereas several major QTL for centroid size (a proxy for body size), and the lengths of two dorsal spines, pelvic spine, and pelvic girdle were mapped on LG21 with the explained variance ranging from 27.9% to 57.6%. Major QTL for landmark coordinates defining body shape variation also were identified on LG21, with each explaining ≥15% of variance in body shape. Multiple QTL for different traits mapped on LG21 overlapped each other, implying pleiotropy and/or tight linkage. Thus, apart from providing confirmatory data to support conclusions born out of earlier QTL studies of Pacific sticklebacks, this study also describes several novel QTL of both major and smaller effect for ecologically important traits. The finding that many major QTL mapped on LG21 suggests that this linkage group might be a hotspot for genetic determinants of ecologically important morphological traits in three-spined sticklebacks.
太平洋棘背鱼(Gasterosteus aculeatus)的数量性状位点(QTL)图谱研究已经揭示了几个控制不同形态特征变异的基因组区域,但大西洋棘背鱼的 QTL 研究却缺乏。我们在北欧海洋和淡水三种棘背鱼的 F2 全同胞杂交群体中,对 40 种形态特征进行了 QTL 作图,包括体型、体型和体甲。共鉴定出 52 个显著的 QTL,达到全基因组水平的 5%。在 LG4 上检测到一个解释侧鳞数总方差的 74.4%的主要 QTL,而几个解释体心大小(代表体型大小)、两个背刺、臀棘和骨盆带长度的主要 QTL 被映射到 LG21,解释方差范围从 27.9%到 57.6%。定义身体形状变化的地标坐标的主要 QTL也在 LG21 上被鉴定出来,每个 QTL 解释了身体形状变化的 ≥15%的方差。LG21 上多个不同特征的 QTL 相互重叠,暗示了多效性和/或紧密连锁。因此,除了提供证实性数据来支持太平洋棘背鱼早期 QTL 研究的结论外,本研究还描述了几个对生态重要特征具有主要和较小效应的新 QTL。许多主要 QTL 被映射到 LG21 的发现表明,这个连锁群可能是三种棘背鱼生态重要形态特征的遗传决定因素的热点。