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首页> 外文期刊>Molecular Plant-Microbe Interactions >The I Gene of Bean: A Dosage-Dependent Allele Conferring Extreme Resistance, Hypersensitive Resistance, or Spreading Vascular Necrosis in Response to the Potyvirus Bean common mosaic virus
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The I Gene of Bean: A Dosage-Dependent Allele Conferring Extreme Resistance, Hypersensitive Resistance, or Spreading Vascular Necrosis in Response to the Potyvirus Bean common mosaic virus

机译:菜豆的I基因:依赖剂量的等位基因,赋予对菜花叶病毒的菜豆普通花叶病毒的极端耐药性,超敏性耐药或传播性血管坏死

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摘要

The resistance to the potyvirus Bean common mosaic virus (BCMV) conferred by the I allele in cultivars of Phaseolus vulgaris has been characterized as dominant, and it has been associated with both immunity and a systemic vascular necrosis in infected bean plants under field, as well as controlled, conditions. In our attempts to understand more fully the nature of the interaction between bean with the I resistance allele and the pathogen BCMV, we carefully varied both I allele dosage and temperature and observed the resulting, varying resistance responses. We report here that the I allele in the bean cultivars we studied is not dominant, but rather incompletely dominant, and that the system can be manipulated to show in plants a continuum of response to BCMV that ranges from immunity or extreme resistance, to hypersensitive resistance, to systemic phloem necrosis (and subsequent plant death). We propose that the particular phenotypic outcome in bean results from a quantitative interaction between viral pathogen and plant host that can be altered to favor one or the other by manipulating I allele dosage, temperature, viral pathogen, or plant cultivar.
机译:I等位基因在菜豆的栽培品种中对马铃薯病毒普通菜花叶病毒(BCMV)的抗性具有显性特征,并且与田间受感染豆类植物的免疫力和系统性血管坏死也相关作为受控条件。为了更全面地了解I抗性等位基因与病原菌BCMV之间的相互作用,我们仔细地改变了I等位基因的剂量和温度,并观察了产生的抗性变化。我们在此报告,我们研究的大豆品种中的I等位基因不是显性的,而是不完全显性的,并且可以操纵该系统以显示植物中对BCMV的连续响应范围,范围从免疫或极端抗性到超敏性抗性,导致全身韧皮坏死(以及随后的植物死亡)。我们提出,豆中的特定表型结果是由病毒病原体和植物宿主之间的定量相互作用产生的,可以通过操纵I等位基因剂量,温度,病毒病原体或植物品种来改变它们,从而有利于一个或另一个。

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