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The barley mutant emr2 shows enhanced resistance against several fungal leaf pathogens

机译:大麦突变体emr2对几种真菌叶病原体显示出增强的抗性

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Homozygous mlo-barley plants are resistant to barley powdery mildew but hypersusceptible to the rice blast fungus Magnaporthe oryzae. A mutational analysis was performed in the barley back-cross line BCIngrid mlo5 which led to the identification of two mutants with enhanced capacity to resist infections by M. oryzae, referred to as enhanced M. oryzae resistance mutants emr1 and emr2. Here, we report on the characterization of emr2 mutant plants which not only show an almost complete reduction in disease severity after inoculation with M. oryzae but are also resistant to the necrotrophic fungi Drechslera teres and Rhynchosporium secalis. Histological analysis revealed that resistance to M. oryzae was based mainly on the formation of papillae at sites of attempted penetration into epidermal cells. There was no progression of fungal growth into the mesophyll. Additionally, because of the presence of the mlo-allele, emr2-plants retained resistance to powdery mildew. The emr2-conditioned broad spectrum resistance was inherited as in a recessive manner. Monitoring of PR-gene expression and enzymatic activity of peroxidases revealed a constitutively activated defence in emr2.
机译:纯合子大麦植物对大麦白粉病具有抗性,但对稻瘟病真菌Magnaporthe oryzae敏感。在大麦回交系BCIngrid mlo5中进行了突变分析,这导致鉴定了两个具有增强的抗米曲霉感染能力的突变体,称为增强的米曲霉抗性突变体emr1和emr2。在这里,我们报告了emr2突变植物的特征,这些植物不仅显示出米曲霉接种后疾病严重程度几乎完全降低,而且还对坏死性真菌Drechslera teres和Rhynchosporium secalis具有抗性。组织学分析表明,对米曲霉的抗性主要基于试图渗透到表皮细胞的部位上的乳头形成。真菌生长没有进展到叶肉。另外,由于存在ml-等位基因,emr2植物保留了对白粉病的抗性。 emr2条件的广谱电阻是隐性遗传的。监测PR基因表达和过氧化物酶的酶活性发现emr2的组成性激活防御。

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