Royer Monique, Costet Laurent, Vivien Eric, Bes Martine, Cousin Arnaud, Damais Anne, Pieretti Isabelle, Savin Alexandre, Megessier Sandrine, Viard Magali, Frutos Roger, Gabriel Dean W, Rott Philippe C
UMR 385 CIRAD/ENSAM/INRA Biologie et Génétique des Interactions Plante-Parasite, Centre de Coopération Internationale en Recherche Agronomique pour le Développement, Campus International de Baillarguet, TA 41/K, 34398 Montpellier Cedex 5, France.
Mol Plant Microbe Interact. 2004 Apr;17(4):414-27. doi: 10.1094/MPMI.2004.17.4.414.
Xanthomonas albilineans, which causes leaf scald disease of sugarcane, produces a highly potent pathotoxin called albicidin. We report here sequencing and homology analysis of the major gene cluster, XALB1 (55,839 bp), and a second, smaller region, XALB2 (2,986 bp), involved in albicidin biosynthesis. XALB1 contains 20 open reading frames, including i) three large genes with a modular architecture characteristic of polyketide synthases (PKSs) and nonribosomal peptide synthases (NRPSs) and ii) several putative modifying, regulatory, and resistance genes. Sequencing and complementation studies of six albicidin-defective mutants enabled us to confirm the involvement of the three PKS and NRPS genes encoded by XALB1 in albicidin production. XALB2 contains only one gene that is required for post-translational activation of PKS and NRPS enzymes, confirming the involvement of these enzymes in albicidin biosynthesis. In silico analysis of these three PKS or NRPS enzymes allowed us to propose a model for the albicidin backbone assembly and to gain insight into the structural features of this pathotoxin. This is the first description of a complete mixed PKS-NRPS gene cluster for toxin production in the genus Xanthomonas.
引起甘蔗叶烧病的白叶黄单胞菌会产生一种名为杀稻瘟菌素的高效致病毒素。我们在此报告了参与杀稻瘟菌素生物合成的主要基因簇XALB1(55,839 bp)和第二个较小区域XALB2(2,986 bp)的测序和同源性分析。XALB1包含20个开放阅读框,其中包括:i)三个具有聚酮合酶(PKS)和非核糖体肽合成酶(NRPS)模块化结构特征的大基因;ii)几个推定的修饰、调控和抗性基因。对六个杀稻瘟菌素缺陷型突变体的测序和互补研究使我们能够确认XALB1编码的三个PKS和NRPS基因参与了杀稻瘟菌素的产生。XALB2仅包含一个PKS和NRPS酶翻译后激活所需的基因,证实了这些酶参与杀稻瘟菌素的生物合成。对这三种PKS或NRPS酶的计算机分析使我们能够提出杀稻瘟菌素主链组装的模型,并深入了解这种致病毒素的结构特征。这是首次对黄单胞菌属中用于毒素产生的完整混合PKS-NRPS基因簇进行描述。