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Functionally Homologous Host Components Recognize Potato Virus X in Gomphrena globosa and Potato.

机译:在功能上同源的宿主成分可识别球果和马铃薯中的马铃薯X病毒。

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摘要

All known isolates of potato virus X (PVX), with the exception of a South American isolate PVXHB, induce an extreme resistance response on potato carrying the Rx gene and elicit the production of necrotic lesions on Gomphrena globosa: PVXHB establishes systemic infection on Rx genotypes of potato and infects the inoculated leaf of G. globosa without lesion formation. Previously, we have shown that the Rx-mediated resistance is affected by a feature of the coat protein that depends on the presence of a threonine residue at position 121 in the coat protein of PVXCP4 and that the resistance is an induced response expressed in protoplasts of potato with the Rx genotype. In this study, we provide evidence, based on the analysis of PVXCP4/PVXHB hybrids, that the elicitation of lesions on G. globosa also requires the presence of a threonine residue at position 121 of the viral coat protein. The lesion-forming phenotype was not associated with the ability of the viral isolate to accumulate in the infected plant. We therefore propose that there is a homologous component of both potato carrying Rx and G. globosa that interacts with a feature of the PVX coat protein and, following the interaction, activates an induced response in the plant cell.
机译:除南美分离物PVXHB外,所有已知的马铃薯X病毒分离株(PVXHB)都会对带有Rx基因的马铃薯产生极强的抗药性反应,并引起球状线虫坏死性病变的产生:PVXHB对Rx基因型建立全身性感染感染马铃薯球菌,并感染了球孢菌,没有形成病斑。以前,我们已经表明Rx介导的抗性受外壳蛋白特征的影响,该特征取决于PVXCP4外壳蛋白中121位上苏氨酸残基的存在,并且该抗性是诱导的应答,表达形式为具有Rx基因型的马铃薯。在这项研究中,我们基于对PVXCP4 / PVXHB杂种的分析提供证据,表明在球形球菌上引起病变还需要在病毒外壳蛋白的121位上存在苏氨酸残基。形成病变的表型与病毒分离株在受感染植物中积累的能力无关。因此,我们提出在马铃薯中既带有Rx又有球藻的同源成分与PVX外壳蛋白的特征相互作用,并在相互作用后激活植物细胞中的诱导应答。

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