Department of Systems Biology, Technical University of Denmark, Søltofts Plads, Bldg. 221, DK-2800, Kgs. Lyngby, Denmark.
Environ Microbiol. 2014 May;16(5):1252-66. doi: 10.1111/1462-2920.12265. Epub 2013 Oct 10.
In many species of the marine Roseobacter clade, periods of attached life, in association with phytoplankton or particles, are interspersed with planktonic phases. The purpose of this study was to determine whether shifts between motile and sessile life in the globally abundant Roseobacter clade species Ruegeria mobilis are associated with intracellular concentrations of the signal compound cyclic dimeric guanosinmonophosphate (c-di-GMP), which in bacteria regulates transitions between motile and sessile life stages. Genes for diguanylate cyclases and phosphodiesterases, which are involved in c-di-GMP signalling, were found in the genome of R. mobilis strain F1926. Ion pair chromatography-tandem mass spectrometry revealed 20-fold higher c-di-GMP concentrations per cell in biofilm-containing cultures than in planktonic cells. An introduced diguanylate cyclase gene increased c-di-GMP and enhanced biofilm formation and production of the potent antibiotic tropodithietic acid (TDA). An introduced phosphodiesterase gene decreased c-di-GMP and reduced biofilm formation and TDA production. tdaC, a key gene for TDA biosynthesis, was expressed only in attached or biofilm-forming cells, and expression was induced immediately after initial attachment. In conclusion, c-di-GMP signalling controls biofilm formation and biofilm-associated traits in R. mobilis and, as suggested by presence of GGDEF and EAL domain protein genes, also in other Roseobacter clade species.
在海洋玫瑰杆菌群的许多物种中,与浮游植物或颗粒结合的附着生活期与浮游阶段交错出现。本研究的目的是确定在全球丰富的玫瑰杆菌群物种 Mobilibacterium rubrum 中,从运动到静止生活的转变是否与信号化合物环二鸟苷酸单磷酸(c-di-GMP)的细胞内浓度有关,在细菌中,c-di-GMP 调节运动和静止生活阶段之间的转变。R. mobilis 菌株 F1926 的基因组中发现了参与 c-di-GMP 信号转导的双鸟苷酸环化酶和磷酸二酯酶基因。离子对色谱-串联质谱法显示,生物膜培养物中的 c-di-GMP 浓度比浮游细胞高 20 倍。引入的双鸟苷酸环化酶基因增加了 c-di-GMP,增强了生物膜的形成和强效抗生素 Tropodithietic acid(TDA)的产生。引入的磷酸二酯酶基因降低了 c-di-GMP,减少了生物膜的形成和 TDA 的产生。TDA 生物合成的关键基因 tdaC 仅在附着或生物膜形成细胞中表达,并且在初始附着后立即诱导表达。总之,c-di-GMP 信号转导控制着 Mobilibacterium rubrum 生物膜的形成和生物膜相关特性,并且如 GGDEF 和 EAL 结构域蛋白基因的存在所表明的,也控制着其他玫瑰杆菌群物种的生物膜形成和生物膜相关特性。