Institut National de la Recherche Agronomique-Université Blaise Pascal, Unité Mixte de Recherche 1095, Génétique Diversité et Ecophysiologie des Céréales, F-63100 Clermont-Ferrand, France.
Plant Physiol. 2011 Dec;157(4):1596-608. doi: 10.1104/pp.111.183921. Epub 2011 Oct 27.
To improve our understanding of the organization and regulation of the wheat (Triticum aestivum) gene space, we established a transcription map of a wheat chromosome (3B) by hybridizing a newly developed wheat expression microarray with bacterial artificial chromosome pools from a new version of the 3B physical map as well as with cDNA probes derived from 15 RNA samples. Mapping data for almost 3,000 genes showed that the gene space spans the whole chromosome 3B with a 2-fold increase of gene density toward the telomeres due to an increase in the number of genes in islands. Comparative analyses with rice (Oryza sativa) and Brachypodium distachyon revealed that these gene islands are composed mainly of genes likely originating from interchromosomal gene duplications. Gene Ontology and expression profile analyses for the 3,000 genes located along the chromosome revealed that the gene islands are enriched significantly in genes sharing the same function or expression profile, thereby suggesting that genes in islands acquired shared regulation during evolution. Only a small fraction of these clusters of cofunctional and coexpressed genes was conserved with rice and B. distachyon, indicating a recent origin. Finally, genes with the same expression profiles in remote islands (coregulation islands) were identified suggesting long-distance regulation of gene expression along the chromosomes in wheat.
为了深入了解小麦(Triticum aestivum)基因空间的组织和调控,我们利用新开发的小麦表达微阵列,与来自新版 3B 物理图谱的细菌人工染色体池以及 15 个 RNA 样本的 cDNA 探针杂交,构建了小麦染色体 3B 的转录图谱。将近 3000 个基因的映射数据表明,基因空间跨越整个 3B 染色体,由于岛中基因数量的增加,基因密度在端粒处增加了两倍。与水稻(Oryza sativa)和短柄草(Brachypodium distachyon)的比较分析表明,这些基因岛主要由可能源自染色体间基因重复的基因组成。对位于染色体上的 3000 个基因的基因本体论和表达谱分析表明,基因岛显著富集了具有相同功能或表达谱的基因,从而表明在进化过程中,岛中的基因获得了共同的调控。这些具有共同功能和表达谱的基因簇与水稻和短柄草的保守性很小,表明它们具有较近的起源。最后,还鉴定了远程基因岛(共调控基因岛)中具有相同表达谱的基因,表明在小麦的染色体上存在远距离的基因表达调控。