Guo Huijun, Yan Zhihui, Li Xiao, Xie Yongdun, Xiong Hongchun, Liu Yunchuan, Zhao Linshu, Gu Jiayu, Zhao Shirong, Liu Luxiang
National Engineering Laboratory of Crop Molecular Breeding and National Center of Space Mutagenesis for Crop Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural SciencesBeijing, China.
Front Plant Sci. 2017 Aug 10;8:1404. doi: 10.3389/fpls.2017.01404. eCollection 2017.
Mutated genetic resources play an important role in gene/allele characterization. Currently, there are few hexaploid winter wheat mutated resources available. Here, we developed a hexaploid winter wheat resource by inducing mutations via EMS treatment by the single seed descent method. A broad mutation spectrum with high mutation frequency (∼19%) on phenotypic variations was identified. These mutations included spike, leaf and seed morphology, plant architecture, and heading date variations. To evaluate the efficiency of the resource for reverse genetic analysis, allelic variations in the gene, encoding the AGPase large subunit, were screened by the TILLING approach. Four missense mutations were identified and one allele in line E3-1-3, resulted in an amino acid change predicated to have severe effects on gene function. The other three mutations were predicted to have no effect. Results of gene expression patterns and grain starch content demonstrated that the novel allele in E3-1-3 altered the function of . Our results indicated that this mutated genetic wheat resource contained broad spectrum phenotypic and genotypic variations, that may be useful for wheat improvement, gene discovery, and functional genomics.
突变的遗传资源在基因/等位基因鉴定中发挥着重要作用。目前,可用的六倍体冬小麦突变资源很少。在此,我们通过单粒传法经甲基磺酸乙酯(EMS)处理诱导突变,开发了一种六倍体冬小麦资源。在表型变异方面鉴定出了具有高突变频率(约19%)的广泛突变谱。这些突变包括穗、叶和种子形态、株型以及抽穗期变异。为了评估该资源用于反向遗传分析的效率,通过定向诱导基因组局部突变(TILLING)方法筛选了编码AGPase大亚基的基因中的等位变异。鉴定出四个错义突变,其中E3 - 1 - 3株系中的一个等位基因导致氨基酸变化,预计对基因功能有严重影响。另外三个突变预计无影响。基因表达模式和籽粒淀粉含量的结果表明,E3 - 1 - 3中的新等位基因改变了 的功能。我们的结果表明,这种突变的遗传小麦资源包含广泛的表型和基因型变异,可能对小麦改良、基因发现和功能基因组学有用。