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首页> 外文期刊>Cereal Research Communications >Molecular genetical characterization of vernalization genes Vrn-A1, Vrn-B1 and Vrn-D1 in spring wheat germplasm from Russia and adjacent regions.
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Molecular genetical characterization of vernalization genes Vrn-A1, Vrn-B1 and Vrn-D1 in spring wheat germplasm from Russia and adjacent regions.

机译:俄罗斯及邻近地区春小麦种质中春化基因Vrn-A1,Vrn-B1和Vrn-D1的分子遗传特征。

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摘要

We characterized a representative set of 42 spring wheat cultivars from Russia and adjacent regions for 3 Vrn loci. The 42 genotypes were screened, along with 3 genotypes of known Vrn genes, using previously published genome-specific polymerase chain reaction (PCR) primers designed for detecting the presence or absence of dominant or recessive alleles of the major Vrn loci: Vrn-A1, Vrn-B1 and Vrn-D1. The dominant promoter duplication allele Vrn-A1a was present in 28 of 42 cultivars, whereas the promoter deletion allele Vrn-A1b was present in only 1 of the Russian cultivars (Triticum aestivum L. 'Pyrothrix 28'). The intron deletion allele Vrn-A1c was not present in any tested cultivar. The dominant Vrn-D1 allele was found in 1 of the cultivars. Thirteen of the spring wheat cultivars tested here carry the recessive vrn-A1 allele. However, for 6 cultivars, there were inconsistencies between PCR data and genetic segregation analysis, showing the presence of the dominant Vrn-A1 gene. No inconsistencies were found in the case of Vrn-B1 locus. A new combination of specific primers allowed amplification of the common Vrn-B1a allele along with the novel Vrn-B1c allele, which was present in 17 of the studied cultivars (40%). Twenty-five cultivars (59%) had dominant alleles of Vrn-A1a and Vrn-B1 in combination. We showed the predominance of the Vrn-B1c allele among cultivars with monogenic control of vernalization in West Siberia and Kazakhstan. In the absence of epistatic effects of Vrn-A1, this allele causes an earlier heading time compared to Vrn-B1a, thereby avoiding early fall frosts. Suggestions are made concerning the origin and distribution of the Vrn-B1c allele among Russian spring wheats.
机译:我们对来自俄罗斯和邻近地区的42个春季小麦品种的3个Vrn基因座进行了表征。使用先前发布的基因组特异性聚合酶链反应(PCR)引物筛选了42种基因型以及已知Vrn基因的3种基因型,这些引物旨在检测主要Vrn基因座的显性或隐性等位基因的存在与否: Vrn-B1和Vrn-D1。显性启动子重复等位基因Vrn-A1a存在于42个品种中的28个中,而启动子缺失等位基因Vrn-A1b仅存在于一个俄罗斯品种中(Triticum aestivum L.'Pyrothrix 28')。内含子缺失等位基因Vrn-A1c在任何测试的品种中均不存在。在其中一个品种中发现了主要的Vrn-D1等位基因。这里测试的13个春小麦品种带有隐性vrn-A1等位基因。然而,对于6个品种,PCR数据和遗传分离分析之间存在不一致,表明存在显性的Vrn-A1基因。在Vrn-B1基因座的情况下未发现不一致。特定引物的新组合允许扩增常见的Vrn-B1a等位基因以及新的Vrn-B1c等位基因,该基因存在于研究的17个品种中(40%)。 25个品种(59%)具有Vrn-A1a和Vrn-B1组合的优势等位基因。我们在西伯利亚和哈萨克斯坦显示了由春化单基因控制的品种中,Vrn-B1c等位基因占优势。在没有Vrn-A1的上位性作用的情况下,与Vrn-B1a相比,该等位基因会导致更早的抽穗时间,从而避免了早期的霜冻。对俄罗斯春小麦中Vrn-B1c等位基因的起源和分布提出了建议。

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