Guo Ming, Manulis Shulamit, Mor Henia, Barash Isaac
Department of Plant Sciences, Faculty of Life Sciences, Tel Aviv University, Israel.
Mol Plant Microbe Interact. 2002 Jul;15(7):709-16. doi: 10.1094/MPMI.2002.15.7.709.
The pathogenicity of Erwinia herbicola pv. gypsophilae (Ehg) and Erwinia herbicola pv. betae (Ehb) is dependent on a native plasmid (pPATH(Ehg) or pPATH(Ehb)) that harbors the hrp gene cluster, genes encoding type III effectors, phytohormones, biosynthetic genes, and several copies of IS1327. Sequence analysis of the hrp-flanking region in pPATH(Ehg) (cosmid pLA150) revealed a cluster of four additional IS elements designated as ISEhel, ISEhe2, ISEhe3, and ISEhe4. Two copies of another IS element (ISEhe5) were identified on the upstream region of the indole-3-acetic acid operon located on the same cosmid. Based on homology of amino acids and genetic organization, ISEhe1 belongs to the IS630 family, ISEhe2 to the IS5 family, ISEhe3 and ISEhe4 to different groups of the IS3 family, and ISEhe5 to the IS1 family. With the exception of ISEhe4, one to three copies of all the other IS elements were identified only in pathogenic strains of Erwinia herbicola pv. gypsophilae and Erwinia herbicola pv. betae whereas ISEhe4 was present in both pathogenic and nonpathogenic strains. An open reading frame that exhibited high identity (89% in amino acids) to AvrPphD of Pseudomonas syringae pv. phaseolicola was present within the cluster of IS elements. An insertional mutation in the AvrPphDEh, reduced gall size in gypsophila by approximately 85%. In addition, remnants of known genes from four different bacteria were detected on the same cosmid.
嗜甜欧文氏菌致病型(Ehg)和甜菜欧文氏菌致病型(Ehb)的致病性取决于一个携带hrp基因簇、编码III型效应子的基因、植物激素、生物合成基因以及多个IS1327拷贝的天然质粒(pPATH(Ehg)或pPATH(Ehb))。对pPATH(Ehg)(黏粒pLA150)中hrp侧翼区域的序列分析揭示了另外四个IS元件组成的簇,命名为ISEhel、ISEhe2、ISEhe3和ISEhe4。在同一黏粒上吲哚 - 3 - 乙酸操纵子的上游区域鉴定出了另一个IS元件(ISEhe5)的两个拷贝。基于氨基酸同源性和基因组织,ISEhe1属于IS630家族,ISEhe2属于IS5家族,ISEhe3和ISEhe4属于IS3家族的不同组,ISEhe5属于IS1家族。除ISEhe4外,所有其他IS元件的一至三个拷贝仅在嗜甜欧文氏菌致病型和甜菜欧文氏菌致病型的致病菌株中被鉴定到,而ISEhe4在致病和非致病菌株中均存在。在IS元件簇内存在一个与丁香假单胞菌菜豆致病型的AvrPphD具有高度同一性(氨基酸同一性为89%)的开放阅读框。AvrPphDEh中的插入突变使满天星上的虫瘿大小减少了约85%。此外,在同一黏粒上还检测到来自四种不同细菌的已知基因的残余片段。