de Paula Soares Cleiton, Rodrigues Elisete Pains, de Paula Ferreira Jéssica, Simões Araújo Jean Luiz, Rouws Luc Felicianus Marie, Baldani José Ivo, Vidal Marcia Soares
Programa de Pós-graduação em Biotecnologia Vegetal, Centro de Ciências da Saúde, Universidade Federal do Rio de Janeiro, Bloco K, Ilha do Fundão, Rio de Janeiro, RJ, 21941-590, Brazil.
Arch Microbiol. 2015 Mar;197(2):223-33. doi: 10.1007/s00203-014-1045-4. Epub 2014 Oct 17.
TonB-dependent receptors in concert with the TonB-ExbB-ExbD protein complex are responsible for the uptake of iron and substances such as vitamin B12 in several bacterial species. In this study, Tn5 mutagenesis of the sugarcane endophytic bacterium Gluconacetobacter diazotrophicus led to the isolation of a mutant with a single Tn5-insertion in the promoter region of a tonB gene ortholog. This mutant, named Gdiaa31, displayed a reduced growth rate and a lack of response to iron availability when compared to the wild-type strain PAL5(T). Several efforts to generate null-mutants for the tonB gene by insertional mutagenesis were without success. RT-qPCR analysis demonstrated reduced transcription of tonB in Gdiaa31 when compared to PAL5(T). tonB transcription was inhibited in the presence of Fe(3+) ions both in PAL5(T) and in Gdiaa31. In comparison with PAL5(T), Gdiaa31 also demonstrated decreased nitrogenase activity and biofilm formation capability, two iron-requiring physiological characteristics of G. diazotrophicus. Additionally, Gdiaa31 accumulated higher siderophore levels in culture supernatant. The genetic complementation of the Gdiaa31 strain with a plasmid that carried the tonB gene including its putative promoter region (pP(tonB)) restored nitrogenase activity and siderophore accumulation phenotypes. These results indicate that the TonB complex has a role in iron/siderophore transport and may be essential in the physiology of G. diazotrophicus.
在几种细菌中,与TonB-ExbB-ExbD蛋白复合物协同作用的TonB依赖性受体负责铁和诸如维生素B12等物质的摄取。在本研究中,对甘蔗内生细菌重氮营养醋杆菌进行Tn5诱变,导致分离出一个突变体,该突变体在tonB基因直系同源物的启动子区域有一个单一的Tn5插入。这个名为Gdiaa31的突变体与野生型菌株PAL5(T)相比,生长速率降低,并且对铁的可用性缺乏响应。通过插入诱变产生tonB基因的缺失突变体的几次尝试均未成功。RT-qPCR分析表明,与PAL5(T)相比,Gdiaa31中tonB的转录减少。在PAL5(T)和Gdiaa31中,Fe(3+)离子的存在均抑制tonB转录。与PAL5(T)相比,Gdiaa31还表现出固氮酶活性和生物膜形成能力降低,这是重氮营养醋杆菌的两个需要铁的生理特征。此外,Gdiaa31在培养上清液中积累了更高水平的铁载体。用携带tonB基因及其推定启动子区域的质粒(pP(tonB))对Gdiaa31菌株进行遗传互补,恢复了固氮酶活性和铁载体积累表型。这些结果表明,TonB复合物在铁/铁载体运输中起作用,并且可能在重氮营养醋杆菌的生理学中至关重要。