Sánchez Cintia, Iannino Florencia, Deakin William J, Ugalde Rodolfo A, Lepek Viviana C
Instituto de Investigaciones Biotecnológicas, INTECH, Universidad Nacional de General San Martín, CONICET, Buenos Aires, Argentina.
Mol Plant Microbe Interact. 2009 May;22(5):519-28. doi: 10.1094/MPMI-22-5-0519.
Type III secretion systems (T3SS) have been found in several species of rhizobia. Proteins (termed effectors) secreted by this system are involved in host-range determination and influence nodulation efficiency. Mesorhizobium loti MAFF303099 possesses a functional T3SS in its symbiotic island whose expression is induced by flavonoids. As in other rhizobia, conserved cis-elements (tts box) were found in the promoter regions of genes or operons encoding T3SS components. Using a bioinformatics approach, we searched for other tts-box-controlled genes, and confirmed this transcriptional regulation for some of them using lacZ fusions to the predicted promoter regions. Translational fusions to a reporter peptide were created to demonstrate T3SS-mediated secretion of two new MAFF303099 effectors. Finally, we showed that mutation of the M. loti MAFF303099 T3SS affects its competitiveness on Lotus glaber and investigated, at the molecular level, responses of the model legume L. japonicus to the T3SS.
III型分泌系统(T3SS)已在多种根瘤菌中被发现。该系统分泌的蛋白质(称为效应蛋白)参与宿主范围的确定并影响结瘤效率。百脉根中生根瘤菌MAFF303099在其共生岛中拥有一个功能性T3SS,其表达受类黄酮诱导。与其他根瘤菌一样,在编码T3SS组分的基因或操纵子的启动子区域中发现了保守的顺式元件(tts框)。我们采用生物信息学方法搜索其他受tts框控制的基因,并通过将lacZ与预测的启动子区域融合,证实了其中一些基因的这种转录调控。构建了与报告肽的翻译融合体,以证明T3SS介导的两种新的MAFF303099效应蛋白的分泌。最后,我们表明百脉根中生根瘤菌MAFF303099的T3SS突变会影响其在光滑百脉根上 的竞争力,并在分子水平上研究了模式豆科植物日本百脉根对T3SS的反应。