Costa-Nunes Pedro, Ribeiro Teresa, Delgado Margarida, Morais-Cecílio Leonor, Jones Neil, Viegas Wanda
Secção de Genética, Centro de Botânica Aplicada à Agricultura, Instituto Superior de Agronomia, Tapada da Ajuda, Lisboa, Portugal.
Genome. 2005 Oct;48(5):895-904. doi: 10.1139/g05-050.
'Lindström' wheat (AABBDD+rye B chromosomes) was used to study the effects of alien chromatin introgressed into a wheat genetic background, subjecting the wheat genome to a new and transient allopolyploidisation episode. Using this experimental material, we have previously demonstrated that no large-scale chromosomal translocations occurred as a result of the genomic constitution of the addition line. However, we have shown that the presence of a number of rye B chromosomes is associated with changes in the interphase organization and expression patterns of wheat rDNA loci. We have now extended our studies to focus on a further characterization of 'Lindström' 5S rDNA loci and also on high molecular weight glutenin subunit (HMW-GS) patterns. In the process, we have uncovered an unusually large variant of the 5S rDNA locus on wheat chromosome 1B (not to be confused with rye B chromosomes) and 2 novel HMW glutenin y-type alleles. These changes are not directly related to variation in rye B chromosome number in the present material, but the fact that a new, and still segregating, 1Dy HMW-GS gene was identified indicates a recent timescale for its origin. Strikingly, the 'Lindström' 5S rDNA 1B locus integrates a unit sharing 94% homology with a rye 5S rDNA sequence, suggesting the possibility that the wheat locus was colonized by highly homologous rye sequences during the breeding of 'Lindström', when the rye and wheat genomes were together, albeit briefly, in the same nucleus.
“林德斯特伦”小麦(AABBDD + 黑麦B染色体)被用于研究导入小麦遗传背景中的外源染色质的影响,使小麦基因组经历一次新的、短暂的异源多倍体化事件。利用这种实验材料,我们之前已经证明,由于附加系的基因组构成,没有发生大规模的染色体易位。然而,我们已经表明,一些黑麦B染色体的存在与小麦rDNA位点的间期组织和表达模式的变化有关。我们现在扩展了研究,重点进一步表征“林德斯特伦”5S rDNA位点以及高分子量谷蛋白亚基(HMW - GS)模式。在此过程中,我们在小麦1B染色体上发现了一个异常大的5S rDNA位点变体(不要与黑麦B染色体混淆)和2个新的HMW谷蛋白y型等位基因。这些变化与本材料中黑麦B染色体数量的变化没有直接关系,但新鉴定出一个仍在分离的1Dy HMW - GS基因这一事实表明其起源时间较近。引人注目的是,“林德斯特伦”5S rDNA 1B位点整合了一个与黑麦5S rDNA序列具有94%同源性的单元,这表明在“林德斯特伦”育种过程中,当黑麦和小麦基因组虽短暂但同在一个细胞核中时,小麦位点可能被高度同源的黑麦序列所占据。