首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Alternative splicing of a barley gene results in an excess-tillering and semi-dwarf mutant
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Alternative splicing of a barley gene results in an excess-tillering and semi-dwarf mutant

机译:大麦基因的替代拼接导致过量分蘖和半矮突变体

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Key message An excess-tillering semi-dwarf gene Hvhtd was identified from an EMS-induced mutant in barley and alternative splicing results in excess-tillering semi-dwarf traits. Tillering and plant height are important traits determining plant architecture and grain production in cereal crops. This study identified an excess-tillering semi-dwarf mutant (htd) from an EMS-treated barley population. Genetic analysis of the F-1, F-2, and F-2:3 populations showed that a single recessive gene controlled the excess-tillering semi-dwarf in htd. Using BSR-Seq and gene mapping, the Hvhtd gene was delimited within a 1.8 Mb interval on chromosome 2HL. Alignment of the RNA-Seq data with the functional genes in the interval identified a gene HORVU2Hr1G098820 with alternative splicing between exon2 and exon3 in the mutant, due to a G to A single-nucleotide substitution at the exon and intron junction. An independent mutant with a similar phenotype confirmed the result, with alternative splicing between exon3 and exon4. In both cases, the alternative splicing resulted in a non-functional protein. And the gene HORVU2Hr1G098820 encodes a trypsin family protein and may be involved in the IAA signaling pathway and differs from the mechanism of Green Revolution genes in the gibberellic acid metabolic pathway.
机译:关键消息从大麦的EMS诱导的突变体中鉴定过量分蘖半幼级基因HVHTD,并且替代剪接结果过量分蘖的半矮小性状。分蘖和植物高度是确定谷物作物的植物建筑和谷物生产的重要特征。本研究确定了来自EMS处理的大麦群的过量分蘖半矮虫突变体(HTD)。 F-1,F-2和F-2的遗传分析:3种群表明,单个隐性基因控制HTD中的过量分蘖半幼术。使用BSR-SEQ和基因映射,HVHTD基因在2HL染色体的1.8mb间隔内界定。 RNA-SEQ数据与间隔中的功能基因的对准鉴定了基因Horvu2HR1G098820,其在突变体中的ExOn2和Exon3之间的替代拼接,由于外显子和内部结的单核苷酸取代。具有类似表型的独立突变体证实了结果,在外部3和外部4之间具有替代剪接。在这两种情况下,替代剪接导致非功能性蛋白质。并且Gene Horvu2HR1G098820编码胰蛋白酶家族蛋白质,并且可以参与IAA信号通路,与甘油酸代谢途径中绿色旋转基因的机制不同。

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