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首页> 外文期刊>Molecular Genetics and Genomics >Comparative sequence analysis of VRN1 alleles of Lolium perenne with the co-linear regions in barley, wheat, and rice
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Comparative sequence analysis of VRN1 alleles of Lolium perenne with the co-linear regions in barley, wheat, and rice

机译:大麦,小麦和水稻中黑麦草VRN1等位基因与共线性区的比较序列分析

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摘要

Vernalization, a period of low temperature to induce transition from vegetative to reproductive state, is an important environmental stimulus for many cool season grasses. A key gene in the vernalization pathway in grasses is the VRN1 gene. The objective of this study was to identify causative polymorphism(s) at the VRN1 locus in perennial ryegrass (Lolium perenne) for variation in vernalization requirement. Two allelic Bacterial Artificial Chromosome clones of the VRN1 locus from the two genotypes Veyo and Falster with contrasting vernalization requirements were identified, sequenced, and characterized. Analysis of the allelic sequences identified an 8.6-kb deletion in the first intron of the VRN1 gene in the Veyo genotype which has low vernalization requirement. This deletion was in a divergent recurrent selection experiment confirmed to be associated with genotypes with low vernalization requirement. The region surrounding the VRN1 locus in perennial ryegrass showed microcolinearity to the corresponding region on chromosome 3 in Oryza sativa with conserved gene order and orientation, while the micro-colinearity to the corresponding region in Triticum monococcum was less conserved. Our study indicates that the first intron of the VRN1 gene, and in particular the identified 8.6 kb region, is an important regulatory region for vernalization response in perennial ryegrass.
机译:春化是一个低温时期,可以促使植物从营养状态向生殖状态转变,它是许多凉爽季节草的重要环境刺激。草春化途径中的关键基因是VRN1基因。这项研究的目的是确定多年生黑麦草(Lolium perenne)中VRN1基因座的致病多态性,以实现春化要求的变化。鉴定,测序和鉴定了来自两个基因型Veyo和Falster的VRN1基因座的两个等位基因细菌人工染色体克隆,并具有不同的春化要求。对等位基因序列的分析表明,在Veyo基因型中,VRN1基因的第一个内含子缺失了8.6-kb,这对春化处理的要求低。在不同的重复选择实验中,该缺失被证实与春化要求低的基因型有关。多年生黑麦草中VRN1基因座周围的区域与水稻3号染色体上的相应区域具有微共线性,具有保守的基因顺序和方向,而与小麦的相应区域的微共线性则较不保守。我们的研究表明,VRN1基因的第一个内含子,特别是已确定的8.6 kb区域,是多年生黑麦草春化反应的重要调控区域。

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