Cánovas D, Vargas C, Csonka L N, Ventosa A, Nieto J J
Department of Microbiology and Parasitology, Faculty of Pharmacy, University of Seville, Spain.
J Bacteriol. 1996 Dec;178(24):7221-6. doi: 10.1128/jb.178.24.7221-7226.1996.
The osmoregulatory pathways of the moderately halophilic bacterium Halomonas elongata DSM 3043 have been investigated. This strain grew optimally at 1.5 to 2 M NaCl in M63 glucose-defined medium. It required at least 0.5 M NaCl for growth, which is a higher concentration than that exhibited by the H. elongata type strain ATCC 33173. Externally provided betaine, choline, or choline-O-sulfate (but not proline, ectoine, or proline betaine) enhanced the growth of H. elongata on 3 M NaCl-glucose-M63 plates, demonstrating the utilization of these compounds as osmoprotectants. Moreover, betaine and choline stimulated the growth of H. elongata DSM 3043 over the entire range of salinity, although betaine was more effective than choline at salinities below and above the optimum. We found that H. elongata DSM 3043 has at least one high-affinity transport system for betaine (K(m) = 3.06 microM and Vmax = 9.96 nmol of betaine min(-1) mg of protein(-1)). Competition assays demonstrated that proline betaine and ectoine, but not proline, choline, or choline-O-sulfate, are also transported by the betaine permease. Finally, thin-layer chromatography and 13C-nuclear magnetic resonance analysis showed that exogenous choline was taken up and transformed to betaine by H. elongata, demonstrating the existence of a choline-glycine betaine pathway in this moderately halophilic bacterium.
对中度嗜盐细菌长枝盐单胞菌DSM 3043的渗透调节途径进行了研究。该菌株在M63葡萄糖限定培养基中,于1.5至2 M NaCl浓度下生长最佳。其生长至少需要0.5 M NaCl,这一浓度高于长枝盐单胞菌模式菌株ATCC 33173所需的浓度。外部提供的甜菜碱、胆碱或胆碱-O-硫酸盐(但脯氨酸、四氢嘧啶或脯氨酸甜菜碱则不然)可促进长枝盐单胞菌在3 M NaCl-葡萄糖-M63平板上的生长,表明这些化合物可作为渗透保护剂被利用。此外,甜菜碱和胆碱在整个盐度范围内均刺激长枝盐单胞菌DSM 3043的生长,不过在低于和高于最适盐度时,甜菜碱比胆碱更有效。我们发现长枝盐单胞菌DSM 3043至少有一个甜菜碱高亲和力转运系统(K(m)=3.06 microM,Vmax = 9.96 nmol甜菜碱min(-1)mg蛋白质(-1))。竞争试验表明,脯氨酸甜菜碱和四氢嘧啶也可被甜菜碱通透酶转运,但脯氨酸、胆碱或胆碱-O-硫酸盐则不能。最后,薄层色谱和13C核磁共振分析表明,外源胆碱被长枝盐单胞菌吸收并转化为甜菜碱,证明该中度嗜盐细菌中存在胆碱-甘氨酸甜菜碱途径。