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首页> 外文期刊>Journal of bacteriology >Molecular analysis of avirulence gene avrRpt2 and identification of a putative regulatory sequence common to all known Pseudomonas syringae avirulence genes.
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Molecular analysis of avirulence gene avrRpt2 and identification of a putative regulatory sequence common to all known Pseudomonas syringae avirulence genes.

机译:无毒力基因avrRpt2的分子分析和所有已知的丁香假单胞菌无毒力基因共有的推定调控序列的鉴定。

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The avrRpt2 locus from Pseudomonas syringae pv. tomato causes virulent strains of P. syringae to be avirulent on some, but not all, lines of Arabidopsis thaliana and Glycine max (soybean). We determined the DNA sequence of the avrRpt2 locus and identified the avrRpt2 gene as a 768-bp open reading frame encoding a putative 28.2-kDa protein. Deletion analysis and transcription studies provided further evidence that this open reading frame encodes AvrRpt2. We found that the avrRpt2 gene also has avirulence activity in P. syringae pathogens of Phaseolus vulgaris (common bean), suggesting that disease resistance genes specific to avrRpt2 are functionally conserved among diverse plant species. The predicted AvrRpt2 protein is hydrophilic and contains no obvious membrane-spanning domains or export signal sequences, and there was no significant similarity of AvrRpt2 to sequences in the GenBank, EMBL, or Swiss PIR data bases. A comparison of the avrRpt2 DNA sequence to nine other P. syringae avirulence genes revealed a highly conserved sequence, GGAACCNA-N14-CCACNNA, upstream of the translation initiation codon. This motif is located 6 to 8 nucleotides upstream of the transcription start site in all four P. syringae avirulence genes for which a transcription start site has been determined, suggesting a role as a binding site for a novel form of RNA polymerase. Regulation of avrRpt2 was similar to other P. syringae avirulence genes; expression was high in minimal medium and low in rich medium and depended on the hrpRS locus and an additional locus at the opposite end of the hrp cluster of P. syringae pv. tomato.
机译:丁香假单胞菌pv的avrRpt2基因座。番茄导致丁香假单胞菌的强毒株在部分但不是全部的拟南芥和大豆大豆系中无毒。我们确定了avrRpt2基因座的DNA序列,并将avrRpt2基因鉴定为一个768-bp的开放阅读框,编码一个假定的28.2-kDa蛋白。缺失分析和转录研究提供了进一步的证据,表明该开放阅读框编码AvrRpt2。我们发现avrRpt2基因在菜豆(丁香菜)的丁香假单胞菌病原体中也具有无毒活性,这表明特定于avrRpt2的抗病基因在各种植物中功能上保守。预测的AvrRpt2蛋白是亲水性的,没有明显的跨膜结构域或输出信号序列,并且AvrRpt2与GenBank,EMBL或Swiss PIR数据库中的序列没有显着相似性。将avrRpt2 DNA序列与其他9个丁香假单胞菌无毒力基因进行比较,发现在翻译起始密码子上游有一个高度保守的序列GGAACCNA-N14-CCACNNA。该基序位于已确定转录起始位点的所有四个丁香假单胞菌无毒力基因中转录起始位点上游的6至8个核苷酸,表明它是新型RNA聚合酶结合位点的作用。 avrRpt2的调控与其他丁香假单胞菌无毒力基因相似。在最低培养基中高表达而在富培养基中低表达,取决于丁香假单胞菌PV的hrpRS基因座和hrp簇相反末端的其他基因座。番茄。

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