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首页> 外文期刊>Molecular Plant-Microbe Interactions >Additional Resistance Gene(s) Against Cladosporium fulvum Present on the Cf-9 Introgression Segment Are Associated with Strong PR Protein Accumulation
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Additional Resistance Gene(s) Against Cladosporium fulvum Present on the Cf-9 Introgression Segment Are Associated with Strong PR Protein Accumulation

机译:出现在Cf-9渐渗区段上的针对叶形枝孢菌的其他抗性基因与强大的PR蛋白积累相关

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The existence of a gene or genes conferring weak resistance against the fungal tomato pathogen Cladosporium fulvum , in addition to the Cf-9 resistance gene, present on the Lycopersicon pimpinellifolium Cf-9 segment introgressed into L. esculentum , was demonstrated with strains of C. fulvum lacking a functional Avr 9 avirulence gene and tomato genotypes lacking a functional Cf-9 gene, respectively. Two mutant strains, obtained by disruption of Avr 9 in race 4 and race 5 of C. fulvum, do not trigger the hypersensitive response-mediated resistance on MM-Cf9 genotypes that is normally induced after recognition of the AVR9 elicitor. However, when these strains are inoculated onto MM-Cf0 and MM-Cf9 genotypes, adult MM-Cf9 plants still show weak resistance. This resistance is not related to the Cf-9 gene, as ethyl methanesulfonate (EMS)-generated Cf-9 mutants retained weak resistance. Growth of the fungus in the leaf mesophyll is strongly inhibited, whereas re-emergence of fungal mycelium and conidiation are poor. Strong accumulation of pathogenesis-related proteins and early leaf chlorosis are associated with this phenotype of weak resistance. A search among natural strains lacking the Avr9 gene revealed that one strain is able to overcome this weak resistance. Possible mechanisms underlying this weak resistance are discussed. The presence of the additional weak resistance gene(s) could explain why the resistance of Cf9 genotypes has not been overcome so far in practice.
机译:用C.菌株证实了除了对Cf-9抗性基因存在的一种或多种赋予对番茄真菌病原菌黄腐梭状芽孢杆菌的弱抗性的基因,该基因存在于渗入番茄中的番茄(Lycopersicon pimpinellifolium Cf-9)片段上。缺乏功能性Avr 9无毒力基因的黄腐病毒和缺乏功能性Cf-9基因的番茄基因型。通过破坏黄花梭菌的第4和第5族中的Avr 9而获得的两个突变株,不会触发对MM-Cf9基因型的超敏反应介导的抗性,该抗性通常是在识别AVR9激发子后诱导的。但是,当将这些菌株接种到MM-Cf0和MM-Cf9基因型上时,成年MM-Cf9植物仍显示出较弱的抗性。该抗性与Cf-9基因无关,因为甲磺酸乙酯(EMS)生成的Cf-9突变体保持了弱抗性。叶肉中的真菌生长受到强烈抑制,而真菌菌丝体的再生和分生孢子则很差。病程相关蛋白的大量积累和早期叶绿化与这种弱抗性的表型有关。在缺乏Avr9基因的天然菌株中进行搜索后发现,一种菌株能够克服这种弱抗性。讨论了这种弱抵抗的潜在机制。其他弱抗性基因的存在可以解释为什么到目前为止在实践中尚未克服Cf9基因型的抗性。

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