Wang Shasha, Yan Xuefang, Wang Yongyan, Liu Hongmei, Cui Dangqun, Chen Feng
National Key Laboratory of Wheat and Corn Crop Science, Collaborative Innovation Center of Henan Grain Crops, Agronomy College, Henan Agricultural University Zhengzhou, China.
Front Plant Sci. 2016 Jun 3;7:783. doi: 10.3389/fpls.2016.00783. eCollection 2016.
In previous work, we cloned TaGS5 gene and found the association of TaGS5-A1 alleles with agronomic traits. In this study, the promoter sequence of the TaGS5-A1 gene was isolated from bread wheat. Sequencing results revealed that a G insertion was found in position -1925 bp of the TaGS5-A1 gene (Reference to ATG), which occurred in the Sp1 domain of the promoter sequence. Combined with previous single nucleotide polymorphism (SNP) in the TaGS5-A1 exon sequence, four genotypes were formed at the TaGS5-A1 locus and were designated as TaGS5-A1a-a, TaGS5-A1a-b, TaGS5-A1b-a, and TaGS5-A1b-b, respectively. Analysis of the association of TaGS5-A1 alleles with agronomic traits indicated that cultivars with the TaGS5-A1a-b allele possessed significantly higher thousand-kernel weight (TKW) and lower plant height than cultivars with the TaGS5-A1a-a allele, and cultivars with the TaGS5-A1b-b allele showed higher TKW than cultivars with the TaGS5-A1b-a allele. The differences of these traits between the TaGS5-A1a-a and TaGS5-A1a-b alleles were larger than those of the TaGS5-A1b-a and TaGS5-A1b-b alleles, suggesting that the -1925G insertion plays the more important role in TaGS5-A1a genotypes than in TaGS5-A1b genotypes. qRT-PCR indicated that TaGS5-A1b-b possessed the significantly highest expression level among four TaGS5-A1 haplotypes in mature seeds and further showed a significantly higher expression level than TaGS5-A1b-a at five different developmental stages of the seeds, suggesting that high expression of TaGS5-A1 was positively associated with high TKW in bread wheat. This study could provide a relatively superior genotype in view of TKW in wheat breeding programs and could also provide important information for dissection of the regulatory mechanism of the yield-related traits.
在之前的研究中,我们克隆了TaGS5基因,并发现TaGS5-A1等位基因与农艺性状之间的关联。在本研究中,从普通小麦中分离出TaGS5-A1基因的启动子序列。测序结果显示,在TaGS5-A1基因(以ATG为参照)的-1925 bp位置发现一个G插入,该插入发生在启动子序列的Sp1结构域。结合之前在TaGS5-A1外显子序列中的单核苷酸多态性(SNP),在TaGS5-A1位点形成了四种基因型,分别命名为TaGS5-A1a-a、TaGS5-A1a-b、TaGS5-A1b-a和TaGS5-A1b-b。对TaGS5-A1等位基因与农艺性状的关联分析表明,具有TaGS5-A1a-b等位基因的品种比具有TaGS5-A1a-a等位基因的品种具有显著更高的千粒重(TKW)和更低的株高,并且具有TaGS5-A1b-b等位基因的品种比具有TaGS5-A1b-a等位基因的品种表现出更高的TKW。TaGS5-A1a-a和TaGS5-A1a-b等位基因之间这些性状的差异大于TaGS5-A1b-a和TaGS5-A1b-b等位基因之间的差异,这表明-1925G插入在TaGS5-A1a基因型中比在TaGS5-A1b基因型中发挥更重要的作用。定量逆转录聚合酶链反应(qRT-PCR)表明,TaGS5-A1b-b在成熟种子的四种TaGS5-A1单倍型中具有显著最高的表达水平,并且在种子的五个不同发育阶段进一步显示出比TaGS5-A1b-a显著更高的表达水平,这表明TaGS5-A1的高表达与普通小麦的高TKW呈正相关。本研究可以为小麦育种计划中基于TKW提供一个相对优良的基因型,也可以为剖析产量相关性状的调控机制提供重要信息。