首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >A Novel Retrotransposon Inserted in the Dominant Vrn-B1 Allele Confers Spring Growth Habit in Tetraploid Wheat (Triticum turgidum L.)
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A Novel Retrotransposon Inserted in the Dominant Vrn-B1 Allele Confers Spring Growth Habit in Tetraploid Wheat (Triticum turgidum L.)

机译:插入到主要的Vrn-B1等位基因中的新型反转录转座子赋予四倍体小麦(Triticum turgidum L.)春季生长习性

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摘要

Vernalization genes determine winter/spring growth habit in temperate cereals and play important roles in plant development and environmental adaptation. In wheat (Triticum L. sp.), it was previously shown that allelic variation in the vernalization gene VRN1 was due to deletions or insertions either in the promoter or in the first intron. Here, we report a novel Vrn-B1 allele that has a retrotransposon in its promoter conferring spring growth habit. The VRN-B1 gene was mapped in a doubled haploid population that segregated for winter-spring growth habit but was derived from two spring tetraploid wheat genotypes, the durum wheat (T. turgidum subsp. durum) variety ‘Lebsock’ and T. turgidum subsp. carthlicum accession PI 94749. Genetic analysis revealed that Lebsock carried the dominant Vrn-A1 and recessive vrn-B1 alleles, whereas PI 94749 had the recessive vrn-A1 and dominant Vrn-B1 alleles. The Vrn-A1 allele in Lebsock was the same as the Vrn-A1c allele previously reported in hexaploid wheat. No differences existed between the vrn-B1 and Vrn-B1 alleles, except that a 5463-bp insertion was detected in the 5′-UTR region of the Vrn-B1 allele. This insertion was a novel retrotransposon (designated as retrotrans_VRN), which was flanked by a 5-bp target site duplication and contained primer binding site and polypurine tract motifs, a 325-bp long terminal repeat, and an open reading frame encoding 1231 amino acids. The insertion of retrotrans_VRN resulted in expression of Vrn-B1 without vernalization. Retrotrans_VRN is prevalent among T. turgidum subsp. carthlicum accessions, less prevalent among T. turgidum subsp. dicoccum accessions, and rarely found in other tetraploid wheat subspecies.
机译:春化基因决定了温带谷物的冬/春季生长习性,并在植物发育和环境适应中发挥重要作用。在小麦(Triticum L. sp。)中,先前显示春化基因VRN1中的等位基因变异是由于启动子或第一个内含子的缺失或插入引起的。在这里,我们报告了一个新的Vrn-B1等位基因,在其启动子中具有逆转录转座子,赋予了春季生长习性。 VRN-B1基因定位在一个双倍的单倍体种群中,该种群因冬春季的生长习性而隔离,但来自两个春季四倍体小麦基因型,硬粒小麦(T. turgidum subsp。durum)变种“ Lessock”和T. turgidum subsp。 。 Carthlicum登录号PI94749。遗传分析表明,Lebsock携带有显性Vrn-A1和隐性vrn-B1等位基因,而PI 94749则有隐性vrn-A1和显性Vrn-B1等位基因。 Lebsock的Vrn-A1等位基因与先前在六倍体小麦中报道的Vrn-A1c等位基因相同。 vrn-B1和Vrn-B1等位基因之间没有差异,除了在 Vrn-B1 等位基因的5'-UTR区检测到5463-bp插入。此插入是一种新型的反转录转座子(称为Retrotrans_VRN),其侧翼为5 bp的目标位点重复,并包含引物结合位点和聚嘌呤束基序,325 bp长的末端重复序列以及编码1231个氨基酸的开放阅读框。 Retrotrans_VRN的插入导致 Vrn-B1 的表达没有春化。 Retrotrans_VRN在 T中很普遍。 urg节亚种 carthlicum 种,在 T中不那么普遍。 urg节亚种 dicoccum 品种,在其他四倍体小麦亚种中很少见。

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