Hernández-Romero Diana, Lucas-Elío Patricia, López-Serrano Daniel, Solano Francisco, Sanchez-Amat Antonio
Department of Genetics and Microbiology, University of Murcia, 30100 Murcia, Spain.
Department of Biochemistry and Molecular Biology B, University of Murcia, 30100 Murcia, Spain.
Microbiology (Reading). 2003 Sep;149(Pt 9):2679-2686. doi: 10.1099/mic.0.26524-0.
The melanogenic marine bacterium Marinomonas mediterranea synthesizes R-bodies as revealed by transmission electron microscopy. These structures were previously described in some obligate symbionts of paramecia and some free-living bacteria, none of which was isolated from sea water. In other micro-organisms, the synthesis of R-bodies has been related to extrachromosomal elements. Accordingly, M. mediterranea induction by mitomycin C or UV radiation resulted in the production of defective phages resembling bacteriocins, indicating that it is a lysogenic bacterium. Two mitomycin-C-resistant strains defective in prophage replication have been isolated. These mutants, and the previously obtained strains ngC1, T102 and T103, the latter mutated in the ppoS gene encoding a sensor histidine kinase, are affected not only in phage replication but also in polyphenol oxidase activities and melanin synthesis, suggesting a relationship between the control of all these processes.
透射电子显微镜显示,产黑色素海洋细菌地中海海单胞菌可合成R体。这些结构此前在草履虫的一些专性共生体和一些自由生活细菌中有所描述,这些细菌均非从海水中分离得到。在其他微生物中,R体的合成与染色体外元件有关。因此,丝裂霉素C或紫外线辐射诱导地中海海单胞菌会产生类似细菌素的缺陷噬菌体,这表明它是一种溶原性细菌。已分离出两株在原噬菌体复制方面存在缺陷的丝裂霉素C抗性菌株。这些突变体,以及之前获得的菌株ngC1、T102和T103(后者在编码传感组氨酸激酶的ppoS基因中发生了突变),不仅在噬菌体复制方面受到影响,而且在多酚氧化酶活性和黑色素合成方面也受到影响,这表明所有这些过程的控制之间存在关联。