Department of Plant Pathology, University of California, Davis, CA 95616, USA.
Mol Plant Pathol. 2007 Mar;8(2):151-62. doi: 10.1111/j.1364-3703.2007.00379.x.
SUMMARY Common bean (Phaseolus vulgaris L.) cultivar (cv.) Othello develops a hypersensitive response-associated vascular resistance to infection by Bean dwarf mosaic virus (BDMV), a single-stranded DNA virus (genus Begomovirus, family Geminiviridae). A PCR-based cDNA subtraction approach was used to identify genes involved in this resistance response. Eighteen clones, potentially involved with BDMV resistance, were identified based upon being up-regulated in BDMV-infected tissues and/or having sequence similarity with known resistance-associated genes. Analysis of these clones revealed potential genes involved in pathogen defence, including pathogenesis-related protein genes and resistance gene analogues (RGAs). Further characterization of one RGA, F1-10, revealed that it encodes a predicted protein with a double Toll/interleukin-1 receptor (TIR) motif. Full-length (F1-10) and spliced (F1-10sp) forms of the RGA were strongly up-regulated in BDMV-infected cv. Othello hypocotyl tissues by 4 days post-inoculation, but not in equivalent mock-inoculated tissues. In agroinfiltration experiments, F1-10, but not F1-10sp, mediated resistance to BDMV in the susceptible common bean cv. Topcrop. By contrast, transgenic Nicotiana benthamiana lines expressing F1-10 or F1-10sp were not resistant to BDMV. Interestingly, when these transgenic lines were inoculated with the potyvirus Bean yellow mosaic virus, some F1-10 lines showed a more severe symptom phenotype compared with non-transgenic control plants. Based on these findings, F1-10 was named: Phaseolus vulgaris VIRUS response TIR-TIR GENE 1 (PvVTT1).
摘要 普通菜豆(Phaseolus vulgaris L.)品种(cv.)奥塞罗对感染 Bean dwarf mosaic virus(BDMV)产生过敏反应相关的血管抗性,BDMV 是一种单链 DNA 病毒(属 Begomovirus,家族 Geminiviridae)。利用基于 PCR 的 cDNA 消减方法鉴定参与这种抗性反应的基因。根据在 BDMV 感染组织中上调和/或与已知抗性相关基因具有序列相似性,鉴定了 18 个可能与 BDMV 抗性相关的克隆。对这些克隆的分析揭示了潜在参与病原体防御的基因,包括病程相关蛋白基因和抗性基因类似物(RGAs)。进一步对一个 RGA,F1-10 的特征分析表明,它编码一种具有双 Toll/白细胞介素-1 受体(TIR)基序的预测蛋白。全长(F1-10)和拼接(F1-10sp)形式的 RGA 在 BDMV 感染 cv. 奥塞罗下胚轴组织中在接种后 4 天强烈上调,但在相应的模拟接种组织中没有上调。在农杆菌浸润实验中,F1-10 但不是 F1-10sp 介导了对易感普通菜豆 cv. Topcrop 中 BDMV 的抗性。相比之下,表达 F1-10 或 F1-10sp 的转基因 Nicotiana benthamiana 品系对 BDMV 没有抗性。有趣的是,当这些转基因系接种 potyvirus Bean yellow mosaic virus 时,与非转基因对照植物相比,一些 F1-10 系表现出更严重的症状表型。基于这些发现,F1-10 被命名为:Phaseolus vulgaris VIRUS response TIR-TIR GENE 1(PvVTT1)。