1, L 2, L 3, and L 4 confer a broadening spectra of resistance to differe'/> Genetic Basis for the Hierarchical Interaction Between Tobamovirus spp. and L Resistance Gene Alleles from Different Pepper Species
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Genetic Basis for the Hierarchical Interaction Between Tobamovirus spp. and L Resistance Gene Alleles from Different Pepper Species

机译:烟草花叶病毒属之间的层次相互作用的遗传基础。辣椒种的L和L抗性基因等位基因

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The pepper L gene conditions the plant's resistance to Tobamovirus spp. Alleles L 1, L 2, L 3, and L 4 confer a broadening spectra of resistance to different virus pathotypes. In this study, we report the genetic basis for the hierarchical interaction between L genes and Tobamovirus pathotypes. We cloned L 3 using map-based methods, and L 1, L 1a, L 1c, L 2, L 2b, and L 4 using a homology-based method. L gene alleles encode coiled-coil, nucleotide-binding, leucine-rich repeat (LRR)-type resistance proteins with the ability to induce resistance response to the viral coat protein (CP) avirulence effectors by themselves. Their different recognition spectra in original pepper species were reproduced in an Agrobacterium tumefaciens –mediated transient expression system in Nicotiana benthamiana . Chimera analysis with L 1, which showed the narrowest recognition spectrum, indicates that the broader recognition spectra conferred by L 2, L 2b, L 3, and L 4 require different subregions of the LRR domain. We identified a critical amino acid residue for the determination of recognition spectra but other regions also influenced the L genes' resistance spectra. The results suggest that the hierarchical interactions between L genes and Tobamovirus spp. are determined by the interaction of multiple subregions of the LRR domain of L proteins with different viral CP themselves or some protein complexes including them.
机译:胡椒L基因调节了植物对烟草花叶病毒的抗性。等位基因L 1 ,L 2 ,L 3 和L 4 赋予对不同病毒的抗性谱病型。在这项研究中,我们报告了L基因和Tobamovirus致病型之间的分层相互作用的遗传基础。我们使用基于地图的方法克隆了L 3 ,以及L 1 ,L 1a ,L 1c ,L < SUP> 2 ,L 2b 和L 4 使用基于同源性的方法。 L基因等位基因编码卷曲螺旋,核苷酸结合,富含亮氨酸的重复(LRR)型抗性蛋白,能够自行诱导对病毒外壳蛋白(CP)无毒力效应子的抗性响应。它们在原始辣椒种中的不同识别光谱在根癌农杆菌介导的本生烟草瞬时表达系统中复制。 L 1 的嵌合分析显示最窄的识别光谱,表明L 2 ,L 2b ,L < SUP> 3 和L 4 需要LRR域的不同子区域。我们确定了确定识别光谱的关键氨基酸残基,但其他区域也影响了L基因的抗性光谱。结果表明,L基因和烟草花叶病毒属之间有层次的相互作用。通过L蛋白的LRR结构域的多个亚区域与不同病毒CP本身或包括它们的某些蛋白质复合物的相互作用来确定。

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