Department of Biology, Virginia Commonwealth University, Richmond, VA 23284, USA.
Department of Plant Sciences, University of California at Davis, Davis, CA 95616, USA.
New Phytol. 2012 Mar;193(4):890-902. doi: 10.1111/j.1469-8137.2011.03976.x. Epub 2011 Nov 30.
The metabolome of a plant comprises all small molecule metabolites, which are produced during cellular processes. The genetic basis for metabolites in nonmodel plants is unknown, despite frequently observed correlations between metabolite concentrations and stress responses. A quantitative genetic analysis of metabolites in a nonmodel plant species is thus warranted. Here, we use standard association genetic methods to correlate 3563 single nucleotide polymorphisms (SNPs) to concentrations of 292 metabolites measured in a single loblolly pine (Pinus taeda) association population. A total of 28 single locus associations were detected, representing 24 and 20 unique SNPs and metabolites, respectively. Multilocus Bayesian mixed linear models identified 2998 additional associations for a total of 1617 unique SNPs associated to 255 metabolites. These SNPs explained sizeable fractions of metabolite heritabilities when considered jointly (56.6% on average) and had lower minor allele frequencies and magnitudes of population structure as compared with random SNPs. Modest sets of SNPs (n = 1-23) explained sizeable portions of genetic effects for many metabolites, thus highlighting the importance of multi-SNP models to association mapping, and exhibited patterns of polymorphism consistent with being linked to targets of natural selection. The implications for association mapping in forest trees are discussed.
植物的代谢组学包含了所有在细胞过程中产生的小分子代谢物。尽管经常观察到代谢物浓度与应激反应之间存在相关性,但非模式植物代谢物的遗传基础仍不清楚。因此,对非模式植物物种的代谢物进行定量遗传分析是有必要的。在这里,我们使用标准的关联遗传方法将 3563 个单核苷酸多态性 (SNP) 与在一个火炬松 (Pinus taeda) 关联群体中测量的 292 种代谢物的浓度进行关联。总共检测到 28 个单基因座关联,分别代表 24 个和 20 个独特的 SNP 和代谢物。多基因座贝叶斯混合线性模型确定了 2998 个额外的关联,总共 1617 个独特的 SNP 与 255 种代谢物相关。当综合考虑时,这些 SNP 解释了代谢物遗传力的相当大的部分(平均为 56.6%),并且与随机 SNP 相比,其次要等位基因频率和群体结构幅度较低。适度数量的 SNP(n=1-23)解释了许多代谢物遗传效应的相当大的部分,因此突出了多 SNP 模型对关联作图的重要性,并表现出与自然选择目标相关联的多态性模式。讨论了其对林木关联作图的影响。