Sinha Himanshu, Nicholson Bradly P, Steinmetz Lars M, McCusker John H
Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina, USA.
PLoS Genet. 2006 Feb;2(2):e13. doi: 10.1371/journal.pgen.0020013. Epub 2006 Feb 3.
Whether in natural populations or between two unrelated members of a species, most phenotypic variation is quantitative. To analyze such quantitative traits, one must first map the underlying quantitative trait loci. Next, and far more difficult, one must identify the quantitative trait genes (QTGs), characterize QTG interactions, and identify the phenotypically relevant polymorphisms to determine how QTGs contribute to phenotype. In this work, we analyzed three Saccharomyces cerevisiae high-temperature growth (Htg) QTGs (MKT1, END3, and RHO2). We observed a high level of genetic interactions among QTGs and strain background. Interestingly, while the MKT1 and END3 coding polymorphisms contribute to phenotype, it is the RHO2 3'UTR polymorphisms that are phenotypically relevant. Reciprocal hemizygosity analysis of the Htg QTGs in hybrids between S288c and ten unrelated S. cerevisiae strains reveals that the contributions of the Htg QTGs are not conserved in nine other hybrids, which has implications for QTG identification by marker-trait association. Our findings demonstrate the variety and complexity of QTG contributions to phenotype, the impact of genetic background, and the value of quantitative genetic studies in S. cerevisiae.
无论是在自然种群中还是在一个物种的两个不相关成员之间,大多数表型变异都是数量性状。为了分析这种数量性状,首先必须定位潜在的数量性状基因座。接下来,且难度大得多的是,必须鉴定数量性状基因(QTG),表征QTG相互作用,并鉴定表型相关的多态性,以确定QTG如何影响表型。在这项工作中,我们分析了三个酿酒酵母高温生长(Htg)QTG(MKT1、END3和RHO2)。我们观察到QTG与菌株背景之间存在高度的遗传相互作用。有趣的是,虽然MKT1和END3编码多态性影响表型,但表型相关的却是RHO2 3'UTR多态性。对S288c与十个不相关的酿酒酵母菌株之间的杂种中的Htg QTG进行的相互半合子分析表明,Htg QTG在其他九个杂种中的贡献并不保守,这对通过标记-性状关联鉴定QTG有影响。我们的研究结果证明了QTG对表型贡献的多样性和复杂性、遗传背景的影响以及酿酒酵母中数量遗传学研究的价值。