Huang Wei E, Singer Andrew C, Spiers Andrew J, Preston Gail M, Whiteley Andrew S
Molecular Microbial Ecology, CEH-Oxford, Mansfield Road, Oxford OX1 3SR, UK.
Environ Microbiol. 2008 Jul;10(7):1668-80. doi: 10.1111/j.1462-2920.2008.01583.x. Epub 2008 Mar 19.
Effective gene trapping and screening requires sensory and regulatory compatibility of both host and exogenous systems. The naturally competent bacterium Acinetobacter baylyi ADP1 is able to efficiently take up and integrate exogenous DNA into the chromosome, making it an attractive host system for a wide range of metagenomic applications. To test the ability of A. baylyi ADP1 to express the XylR-regulated Pu promoter from Pseudomonas putida mt-2, we have constructed and examined an A. baylyi ADP1 strain, ADPWH-Pu-lux-xylR. The Pu promoter in ADPWH-Pu-lux-xylR was specifically induced by toluene, m-, p- and o-xylene. The substrate-induced Pu promoter was highly dependent on the growth medium: it was repressed in rich media until stationary phase, but was immediately induced in minimal medium with glucose as the sole carbon source (MMG). However, the Pu promoter was repressed in MMG when it was supplemented with 5 g l(-1) yeast extract. Further investigation showed that the Pu promoter in MMG was repressed by 0.5 g l(-1) aspartic acid or asparagine, but not repressed by glutamine. Changing the carbon/nitrogen ratios by addition of ammonia did not significantly affect the Pu promoter activity but addition of nitrate did. These results show that A. baylyi ADP1 reproduced characteristics of the XylR-regulated Pu promoter observed in its original host. It demonstrates that A. baylyi could provide an excellent genetic host for a wide range of functional metagenomic applications.
有效的基因捕获和筛选需要宿主系统和外源系统在传感和调控方面具有兼容性。天然感受态细菌鲍氏不动杆菌ADP1能够有效地摄取外源DNA并将其整合到染色体中,使其成为广泛的宏基因组应用中具有吸引力的宿主系统。为了测试鲍氏不动杆菌ADP1表达恶臭假单胞菌mt-2中受XylR调控的Pu启动子的能力,我们构建并检测了一株鲍氏不动杆菌ADP1菌株,即ADPWH-Pu-lux-xylR。ADPWH-Pu-lux-xylR中的Pu启动子受到甲苯、间二甲苯、对二甲苯和邻二甲苯的特异性诱导。底物诱导的Pu启动子高度依赖于生长培养基:在丰富培养基中直到稳定期才被抑制,但在以葡萄糖作为唯一碳源的基本培养基(MMG)中会立即被诱导。然而,当在MMG中添加5 g l(-1)酵母提取物时,Pu启动子会被抑制。进一步研究表明,MMG中的Pu启动子会被0.5 g l(-1)天冬氨酸或天冬酰胺抑制,但不会被谷氨酰胺抑制。通过添加氨来改变碳/氮比不会显著影响Pu启动子活性,但添加硝酸盐会有影响。这些结果表明,鲍氏不动杆菌ADP1重现了在其原始宿主中观察到的受XylR调控的Pu启动子的特征。这表明鲍氏不动杆菌可为广泛的功能宏基因组应用提供优良的遗传宿主。