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Cloning and Functional Analysis of MADS-box Genes TaAG-A and TaAG-B from a Wheat K-type Cytoplasmic Male Sterile Line

机译:小麦K型细胞质雄性不育系MADS-box基因TaAG-A和TaAG-B的克隆与功能分析

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摘要

Wheat (Triticum aestivum L.) is a major crop worldwide. The utilization of heterosis is a promising approach to improve the yield and quality of wheat. Although there have been many studies on wheat cytoplasmic male sterility, its mechanism remains unclear. In this study, we identified two MADS-box genes from a wheat K-type cytoplasmic male sterile (CMS) line using homology-based cloning. These genes were localized on wheat chromosomes 3A and 3B and named TaAG-A and TaAG-B, respectively. Analysis of TaAG-A and TaAG-B expression patterns in leaves, spikes, roots, and stems of Chinese Spring wheat determined using quantitative RT-PCR revealed different expression levels in different tissues. TaAG-A had relatively high expression levels in leaves and spikes, but low levels in roots, while TaAG-B had relatively high expression levels in spikes and lower expression in roots, stems, and leaves. Both genes showed downregulation during the mononucleate to trinucleate stages of pollen development in the maintainer line. In contrast, upregulation of TaAG-B was observed in the CMS line. The transcript levels of the two genes were clearly higher in the CMS line compared to the maintainer line at the trinucleate stage. Overexpression of TaAG-A and TaAG-B in Arabidopsis resulted in phenotypes with earlier reproductive development, premature mortality, and abnormal buds, stamens, and stigmas. Overexpression of TaAG-A and TaAG-B gives rise to mutants with many deformities. Silencing TaAG-A and TaAG-B in a fertile wheat line using the virus-induced gene silencing (VIGS) method resulted in plants with green and yellow striped leaves, emaciated spikes, and decreased selfing seed set rates. These results demonstrate that TaAG-A and TaAG-B may play a role in male sterility in the wheat CMS line.
机译:小麦(Triticum aestivum L.)是世界范围内的主要农作物。利用杂种优势是提高小麦产量和品质的有前途的方法。尽管关于小麦细胞质雄性不育的研究很多,但其机理尚不清楚。在这项研究中,我们使用基于同源性的克隆从小麦K型细胞质雄性不育(CMS)品系中鉴定了两个MADS-box基因。这些基因位于小麦染色体3A和3B上,分别命名为TaAG-A和TaAG-B。使用定量RT-PCR测定的中国春小麦叶片,穗,根和茎中TaAG-A和TaAG-B表达模式的分析揭示了在不同组织中的不同表达水平。 TaAG-A在叶和穗中的表达水平较高,而在根中则较低,而TaAG-B在穗中的表达水平较高,而在根,茎和叶中较低。在维持系中,花粉发育的单核至三核阶段,两个基因均显示出下调。相反,在CMS系中观察到TaAG-B的上调。与三核阶段的维持系相比,CMS系中两个基因的转录水平明显更高。 TaAG-A和TaAG-B在拟南芥中的过表达导致表型具有较早的生殖发育,过早的死亡以及异常的芽,雄蕊和柱头。 TaAG-A和TaAG-B的过表达产生了许多畸形的突变体。使用病毒诱导的基因沉默(VIGS)方法使可育小麦品系中的TaAG-A和TaAG-B沉默,导致植株具有绿色和黄色的条纹叶,消瘦的穗状花序,并降低了自交种子结实率。这些结果表明,TaAG-A和 TaAG-B 可能在小麦CMS系的雄性不育中起作用。

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