Jordan Mark C, Somers Daryl J, Banks Travis W
Agriculture and Agri-Food Canada, Cereal Research Centre, 195 Dafoe Road, Winnipeg, MB, Canada.
Plant Biotechnol J. 2007 May;5(3):442-53. doi: 10.1111/j.1467-7652.2007.00253.x. Epub 2007 Mar 26.
Statistical methods established for the genetic analysis of quantitative traits can be applied to gene expression data. Quantitative trait locus (QTL) analysis can associate the expression of genes or groups of genes with particular genomic regions, and thereby identify regions regulating gene expression. A segregating population of 41 doubled haploid (DH) lines from the hard red spring wheat cross RL4452 x 'AC Domain' was used to map expression level polymorphisms. This population had previously been mapped with microsatellites, and includes a full QTL analysis for agronomic and seed quality traits. Expression analysis on mRNA from developing seed grown in two field locations was conducted on 39 of the 41 DH lines using the Affymetrix GeneChip Wheat Genome Array. Analysis of the hybridization intensity identified 1484 Affymetrix probe sets in the first location and 10,280 probe sets in the second location, where the hybridization intensity varied significantly between genotypes of the population. A common set of 1455 probe sets differing in intensity between genotypes in both locations was used for mapping, and 542 QTLs were identified that each mapped to a single chromosome interval, illustrating that major gene expression QTLs could be found in wheat. Genomic regions corresponding to multiple gene expression QTLs were identified. Comparison of expression mapping data with physical mapping of wheat expressed sequence tag (EST) sequences using rice synteny, as well as logarithm of odds (LOD) score analysis, showed that both cis- and trans-acting expression QTLs were present. Chromosomes 1D and 4B may contain significant trans-regulatory regions in this population.
为数量性状的遗传分析建立的统计方法可应用于基因表达数据。数量性状基因座(QTL)分析可以将单个基因或基因群的表达与特定基因组区域联系起来,从而识别调控基因表达的区域。利用硬红春小麦杂交种RL4452דAC Domain”的41个双单倍体(DH)系的分离群体来定位表达水平多态性。该群体先前已用微卫星进行了图谱绘制,并且包括对农艺和种子品质性状的完整QTL分析。使用Affymetrix基因芯片小麦基因组阵列对41个DH系中的39个进行了在两个田间位置种植的发育种子mRNA的表达分析。对杂交强度的分析在第一个位置鉴定出1484个Affymetrix探针组,在第二个位置鉴定出10280个探针组,在该群体的不同基因型之间杂交强度存在显著差异。使用在两个位置的基因型之间强度不同的1455个探针组的公共集合进行图谱绘制,并且鉴定出542个QTL,每个QTL都定位到单个染色体区间,这表明在小麦中可以找到主要的基因表达QTL。鉴定出了与多个基因表达QTL相对应的基因组区域。使用水稻同线性以及优势对数(LOD)得分分析将表达图谱数据与小麦表达序列标签(EST)序列的物理图谱进行比较,结果表明顺式和反式作用表达QTL均存在。在该群体中,1D和4B染色体可能包含重要的反式调控区域。