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异源多倍体小麦两个基因组中复杂基因座区域直系同源和旁系同源部分的进化动态。

Dynamics of the evolution of orthologous and paralogous portions of a complex locus region in two genomes of allopolyploid wheat.

作者信息

Kong Xiu-Ying, Gu Yong Qiang, You Frank M, Dubcovsky Jorge, Anderson Olin D

机构信息

Genetic Resources Conservation Program, University of California, Davis, CA 95616, USA.

出版信息

Plant Mol Biol. 2004 Jan;54(1):55-69. doi: 10.1023/B:PLAN.0000028768.21587.dc.

Abstract

Two overlapping bacterial artificial chromosome (BAC) clones from the B genome of the tetraploid wheat Triticum turgidum were identified, each of which contains one of the two high-molecular-weight (HMW) glutenin genes, comprising the complex Glu-B1 locus. The complete sequence (285 506 bp of DNA) of this chromosomal region was determined. The two paralogous x-type ( Glu-1-1 ) and y-type ( Glu-1-2 ) HMW-glutenin genes of the complex Glu-B1 locus were found to be separated by ca. 168 000 bp instead of the 51 000 bp separation previously reported for the orthologous Glu-D1 locus of Aegilops tauschii, the D-genome donor of hexaploid wheat. This difference in intergene spacing is due almost entirely to be the insertion of clusters of nested retrotransposons. Otherwise, the orientation and order of the HMW glutenins and adjacent genes were identical in the two genomes. A comparison of these orthologous regions indicates modes and patterns of sequence divergence, with implications for the overall Triticeae genome structure and evolution. A duplicate globulin gene, found 5' of each HMW-glutenin gene, assists to tentatively define the original duplication event leading to the paralogous x- and y-type HMW-glutenin genes. The intergenic regions of the two loci are composed of different patterns and classes of retrotransposons, indicating that insertion times of these retroelements were after the divergence of the two wheat genomes. In addition, a putative receptor kinase gene near the y-type HMW-glutenin gene at the Glu-B1 locus is likely active as it matches recently reported ESTs from germinating barley endosperm. The presence of four genes represented only in the Triticeae endosperm ESTs suggests an endosperm-specific chromosome domain.

摘要

鉴定出了来自四倍体小麦硬粒小麦B基因组的两个重叠细菌人工染色体(BAC)克隆,每个克隆都包含两个高分子量(HMW)谷蛋白基因之一,这两个基因构成了复合的Glu - B1位点。测定了该染色体区域的完整序列(285506 bp的DNA)。发现复合Glu - B1位点的两个旁系同源x型(Glu - 1 - 1)和y型(Glu - 1 - 2)HMW谷蛋白基因被约168000 bp隔开,而不是先前报道的六倍体小麦D基因组供体节节麦的直系同源Glu - D1位点的51000 bp间隔。基因间间隔的这种差异几乎完全是由于嵌套反转录转座子簇的插入。否则,两个基因组中HMW谷蛋白和相邻基因的方向和顺序是相同的。对这些直系同源区域的比较揭示了序列分歧的模式,这对小麦族基因组的整体结构和进化具有启示意义。在每个HMW谷蛋白基因的5'端发现的一个重复球蛋白基因,有助于初步确定导致旁系同源x型和y型HMW谷蛋白基因的原始复制事件。两个位点的基因间区域由不同模式和类别的反转录转座子组成,表明这些反转录元件的插入时间是在两个小麦基因组分化之后。此外,Glu - B1位点y型HMW谷蛋白基因附近的一个假定受体激酶基因可能是活跃的,因为它与最近报道的来自发芽大麦胚乳的ESTs相匹配。仅在小麦族胚乳ESTs中出现的四个基因的存在表明存在一个胚乳特异性染色体结构域。

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