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首页> 外文期刊>Phytopathology >Effectiveness of the Wheat Blast Resistance Gene Rmg8 in Bangladesh Suggested by Distribution of an AVR-Rmg8 Allele in the Pyricularia oryzae Population
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Effectiveness of the Wheat Blast Resistance Gene Rmg8 in Bangladesh Suggested by Distribution of an AVR-Rmg8 Allele in the Pyricularia oryzae Population

机译:孟加拉国小麦爆破抗性基因RMG8的有效性通过Pyricularia Oryzae群体的AVR-RMG8等位基因分布提出

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Wheat blast caused by the Triticum pathotype of Pyricularia oryzae was first reported in 1985 in Brazil and recently spread to Bangladesh. We tested whether Rmg8 and RmgGR119, recently identified resistance genes, were effective against Bangladeshi isolates of the pathogen. Common wheat accessions carrying Rmg8 alone (IL191) or both Rmg8 and RmgGR119 (GR119) were inoculated with Brazilian isolates (Br48, Br5, and Br116.5) and Bangladeshi isolates (T-108 and T-109). Br48, T-108, and T-109 carried the eI type of AVR-Rmg8 (the avirulence gene corresponding to Rmg8) while Br5 and Br116.5 carried its variants, eII and eII' types, respectively. Detached primary leaves of IL191 and GR119 were resistant to all isolates at 25 degrees C. At a higher temperature (28 degrees C), their resistance was still effective against the eI carriers but was reduced to a low level against the eII/eII' carriers. A survey of databases and sequence analyses revealed that all Bangladeshi isolates carried the eI type which induced a higher level of resistance than the eII/eII' types. The resistance of IL191 (Rmg8/_) to the eI carriers was maintained even at the heading stage and at the higher temperature. In addition, GR119 (Rmg8/RmgGR119) displayed higher levels of resistance than IL191 at this stage. These results suggest that Rmg8 combined with RmgGR119 will be useful in breeding for resistance against wheat blast in Bangladesh.
机译:由Pyricularia oryzae的Triticum途径引起的小麦爆炸于1985年在巴西报道,最近蔓延到孟加拉国。我们测试了RMG8和RMGGR119最近鉴定的抗性基因是否有效对孟加拉国病原体的分离物。用巴西分离株(BR48,BR5和BR116.5)和Bangladeshi分离物(T-108和T-109)接种携带RMG8或RMG8和RMGGR119(GR119)的常见小麦涂抹。 BR48,T-108和T-109携带EI类型的AVR-RMG8(对应于RMG8的非血管基因),而BR5和BR116.5分别携带其变体,EII和EII'类型。 IL191和GR119的分离的主要叶子在25℃下耐含有25℃的分离物。在更高的温度(28℃)时,它们的抗性对EI载体仍然有效,但对EII / EII'载体的低水平降低。对数据库和序列分析的调查显示,所有孟加拉国分离株都携带EI型,其诱导比EII / EII的类型更高水平的电阻。即使在标题阶段和较高温度下也保持IL191(RMG8 / _)对EI载体的阻力。此外,GR119(RMG8 / RMGGR119)在此阶段显示比IL191更高的电阻。这些结果表明,RMG8与RMGGR119结合的RMG8将用于培育孟加拉国的麦芽爆炸。

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