Müller P, Keller M, Weng W M, Quandt J, Arnold W, Pühler A
Lehrstuhl für Genetik, Fakultät fur Biologie, Universität Bielefeld, Germany.
Mol Plant Microbe Interact. 1993 Jan-Feb;6(1):55-65. doi: 10.1094/mpmi-6-055.
The nucleotide sequence of a 4.8-kb ClaI-EcoRI DNA fragment of megaplasmid 2 of Rhizobium meliloti Rm2011 involved in succinoglucan (EPS I) synthesis and nodule infection was determined. Four open reading frames (ORFs) were identified on this fragment. A mutational analysis revealed that these ORFs represent genes that were termed exoX, exoY, exoF, and exoQ. The locations of transposon insertions in these exo genes were determined at the nucleotide level. Plasmid integration mutagenesis revealed that the genes exoY, exoF, and exoQ are organized in an operon. The exoX gene running in opposite direction forms a monocistronic transcriptional unit. The exoX gene was shown to negatively influence the amount of EPS I synthesized. The exoY gene is coding for a membrane associated protein homologous to the C-terminal part of the Xanthomonas campestris glucosyltransferase GumD and the Salmonella typhimurium galactose transferase RfbP. ExoF, a probable periplasmatic protein, is nearly identical to the protein encoded by ORF1 of Rhizobium sp. strain NGR234. ExoQ is most probably a membrane associated protein as deduced by its hydrophobic structural features. All three genes of the exoYFQ operon were shown to be essential for succinoglucan synthesis and nodule infection.
测定了苜蓿中华根瘤菌Rm2011大质粒2上一个参与琥珀葡聚糖(EPS I)合成和根瘤侵染的4.8 kb ClaI-EcoRI DNA片段的核苷酸序列。在该片段上鉴定出4个开放阅读框(ORF)。突变分析表明,这些ORF代表的基因被命名为exoX、exoY、exoF和exoQ。确定了这些exo基因中转座子插入的核苷酸水平位置。质粒整合诱变表明,exoY、exoF和exoQ基因组成一个操纵子。以相反方向运行的exoX基因形成一个单顺反子转录单元。结果表明,exoX基因对合成的EPS I量有负面影响。exoY基因编码一种与野油菜黄单胞菌葡糖基转移酶GumD的C末端部分以及鼠伤寒沙门氏菌半乳糖转移酶RfbP同源的膜相关蛋白。ExoF可能是一种周质蛋白,与根瘤菌属菌株NGR234的ORF1编码的蛋白几乎相同。根据其疏水结构特征推断,ExoQ很可能是一种膜相关蛋白。结果表明,exoYFQ操纵子的所有三个基因对琥珀葡聚糖合成和根瘤侵染都是必需的。