Kim Jinwoo, Kim Jung-Gun, Kang Yongsung, Jang Ji Youn, Jog Geetanjali J, Lim Jae Yun, Kim Suhyun, Suga Hiroaki, Nagamatsu Tomohisa, Hwang Ingyu
School of Agricultural Biotechnology, Seoul National University, Seoul 151-742, Korea.
Mol Microbiol. 2004 Nov;54(4):921-34. doi: 10.1111/j.1365-2958.2004.04338.x.
Burkholderia glumae BGR1 produces a broad-host range phytotoxin, called toxoflavin, which is a key pathogenicity factor in rice grain rot and wilt in many field crops. Our molecular and genetic analyses of toxoflavin-deficient mutants demonstrated that gene clusters for toxoflavin production consist of four transcriptional units. The toxoflavin biosynthesis genes were composed of five genes, toxA to toxE, as Suzuki et al. (2004) reported previously. Genes toxF to toxI, which are responsible for toxoflavin transport, were polycistronic and similar to the genes for resistance-nodulation-division (RND) efflux systems. Using Tn3-gusA reporter fusions, we found that ToxR, a LysR-type regulator, regulates both the toxABCDE and toxFGHI operons in the presence of toxoflavin as a coinducer. In addition, the expression of both operons required a transcriptional activator, ToxJ, whose expression is regulated by quorum sensing. TofI, a LuxI homologue, was responsible for the biosynthesis of both N-hexanoyl homoserine lactone and N-octanoyl homoserine lactone (C8-HSL). C8-HSL and its cognate receptor TofR, a LuxR homologue, activated toxJ expression. This is the first report that quorum sensing is involved in pathogenicity by the regulation of phytotoxin biosynthesis and its transport in plant pathogenic bacteria.
水稻细菌性条斑病菌BGR1可产生一种具有广泛宿主范围的植物毒素——毒黄素,它是许多大田作物稻谷腐烂和枯萎病的关键致病因子。我们对毒黄素缺陷型突变体进行的分子和遗传分析表明,毒黄素产生相关的基因簇由四个转录单元组成。正如铃木等人(2004年)之前报道的那样,毒黄素生物合成基因由五个基因组成,即toxA至toxE。负责毒黄素转运的基因toxF至toxI是多顺反子,与抗药-结瘤-分裂(RND)外排系统的基因相似。使用Tn3-gusA报告基因融合体,我们发现LysR型调节因子ToxR在毒黄素作为共诱导剂存在的情况下,可调节toxABCDE和toxFGHI操纵子。此外,这两个操纵子的表达都需要转录激活因子ToxJ,其表达受群体感应调节。TofI是一种LuxI同源物,负责N-己酰基高丝氨酸内酯和N-辛酰基高丝氨酸内酯(C8-HSL)的生物合成。C8-HSL及其同源受体TofR(一种LuxR同源物)激活toxJ的表达。这是关于群体感应通过调节植物病原菌中植物毒素生物合成及其转运来参与致病性的首次报道。