首页> 外文期刊>Journal of Experimental Botany >Transgenic wheat expressing Thinopyrum intermedium MYB transcription factor TiMYB2R-1 shows enhanced resistance to the take-all disease
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Transgenic wheat expressing Thinopyrum intermedium MYB transcription factor TiMYB2R-1 shows enhanced resistance to the take-all disease

机译:表达中间Thin麦草MYB转录因子TiMYB2R-1的转基因小麦显示出增强的抗病能力

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The disease take-all, caused by the fungus Gaeumannomyces graminis, is one of the most destructive root diseases of wheat worldwide. Breeding resistant cultivars is an effective way to protect wheat from take-all. However, little progress has been made in improving the disease resistance level in commercial wheat cultivars. MYB transcription factors play important roles in plant responses to environmental stresses. In this study, an R2R3-MYB gene in Thinopyrum intermedium, TiMYB2R-1, was cloned and characterized. The gene sequence includes two exons and an intron. The expression of TiMYB2R-1 was significantly induced following G. graminis infection. An in vitro DNA binding assay proved that TiMYB2R-1 protein could bind to the MYB-binding site c/s-element ACI. Subcellular localization assays revealed that TiMYB2R-1 was localized in the nucleus. TiMYB2R-1 transgenic wheat plants were generated, characterized molecularly, and evaluated for take-all resistance. PCR and Southern blot analyses confirmedthat TiMYB2R-1 was integrated into the genomes of three independent transgenic wheat lines by distinct patterns and the transgene was heritable. Reverse transcription-PCR and western blot analyses revealed that TiMYB2R-1 was highly expressed in the transgenic wheat lines. Based on disease response assessments for three successive generations, the significantly enhanced resistance to take-all was observed in the three T7MYB2R-7-overexpressing transgenic wheat lines. Furthermore, the transcript levels ofat least six wheat defence-related genes were significantly elevated in the TiMYB2R-1 transgenic wheat lines. These results suggest that engineering and overexpression of TiMYB2R-1 may be used for improving take-all resistance of wheat and other cereal crops.
机译:由真菌Gaeumannomyces graminis引起的全部疾病是全世界小麦中最具破坏性的根系疾病之一。育种抗性品种是保护小麦不受通吃的有效方法。但是,在提高商品小麦品种的抗病水平方面进展甚微。 MYB转录因子在植物对环境胁迫的反应中起重要作用。在本研究中,克隆并鉴定了中间Thin麦草中的R2R3-MYB基因TiMYB2R-1。该基因序列包括两个外显子和一个内含子。 Ti.MYB2R-1的表达在格里米斯芽孢杆菌感染后被显着诱导。体外DNA结合测定法证明TiMYB2R-1蛋白可以与MYB结合位点c / s元素ACI结合。亚细胞定位分析表明,TiMYB2R-1位于细胞核中。产生了TiMYB2R-1转基因小麦植株,对其进行了分子表征,并评估了抗性。 PCR和Southern印迹分析证实,TiMYB2R-1以不同的模式整合到三个独立的转基因小麦品系的基因组中,并且转基因是可遗传的。逆转录-PCR和蛋白质印迹分析表明,TiMYB2R-1在转基因小麦品系中高表达。根据连续三个世代的疾病反应评估,在三个过表达T7MYB2R-7的转基因小麦品系中观察到对全食的抗性显着增强。此外,在TiMYB2R-1转基因小麦品系中,至少六个小麦防御相关基因的转录水平显着升高。这些结果表明,TiMYB2R-1的工程化和过表达可用于改善小麦和其他谷物作物的整体抗性。

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