Guilhabert Magalie R, Stewart Valley J, Kirkpatrick Bruce C
Department of Plant Pathology, University of California, Davis, CA 95616, USA.
Plasmid. 2006 Jan;55(1):70-80. doi: 10.1016/j.plasmid.2005.06.004. Epub 2005 Sep 6.
This study was initiated to characterize a small Xylella fastidiosa (X. fastidiosa) plasmid and attempt to create a X. fastidosa/Escherichia coli shuttle vector that was stable in planta. Restriction enzyme analysis of a 1.3kb plasmid DNA from a grape-infecting strain of X. fastidiosa (UCLA) revealed the presence of three similar, but genetically distinct, plasmids, pUCLAs. Evidence that suggests the pUCLA plasmids replicate via a rolling-circle (RC) mechanism include: (i) the presence of ssDNA in X. fastidiosa cells; (ii) the presence of conserved motifs in the predicted ORF1 that are typical of initiator (Rep) proteins associated with RC replication; (iii) high amino acid identity between the putative Rep proteins of pUCLAs and Pf3, a filamentous bacteriophage of Pseudomonas aeruginosa that replicates by a RC mechanism; and (iv) the presence of a putative origin of replication upstream of ORF1 that has the potential to form secondary hairpin structures. One DNA motif present in pUCLA shared sequence similarity to known nicking sites in the origins of replication of other RC plasmids and phages. The shuttle vector, pXF001, successfully transformed grape X. fastidiosa strains and was found to be present as autonomous, structurally unchanged DNA molecules in X. fastidiosa. However, pXF001 was not stably maintained in X. fastidiosa without antibiotic selection.
开展本研究是为了鉴定一种小型的木质部难养菌(Xylella fastidiosa,简称X. fastidiosa)质粒,并尝试构建一种在植物中稳定存在的X. fastidiosa/大肠杆菌穿梭载体。对一株感染葡萄的X. fastidiosa(UCLA)菌株的1.3kb质粒DNA进行限制性内切酶分析,结果显示存在三种相似但基因不同的质粒,即pUCLAs。表明pUCLA质粒通过滚环(RC)机制复制的证据包括:(i)X. fastidiosa细胞中存在单链DNA;(ii)预测的ORF1中存在保守基序,这些基序是与RC复制相关的起始蛋白(Rep)所特有的;(iii)pUCLAs的推定Rep蛋白与Pf3(铜绿假单胞菌的一种丝状噬菌体,通过RC机制复制)的推定Rep蛋白之间具有高度氨基酸同一性;(iv)ORF1上游存在一个推定的复制起点,该起点有可能形成二级发夹结构。pUCLA中存在的一个DNA基序与其他RC质粒和噬菌体复制起点中已知的切口位点具有序列相似性。穿梭载体pXF001成功转化了葡萄X. fastidiosa菌株,并发现其以自主的、结构未改变的DNA分子形式存在于X. fastidiosa中。然而,在没有抗生素选择的情况下,pXF001在X. fastidiosa中不能稳定维持。