Burlage R S, Kuo C T
Environmental Sciences Division, Oak Ridge National Laboratory, Tennessee 37831-6036.
Annu Rev Microbiol. 1994;48:291-309. doi: 10.1146/annurev.mi.48.100194.001451.
The increasing interest in microbial ecology has resulted in the creation of new tools for the study of complex microbial interactions. Bioreporter genes are particularly useful because they provide a means of determining gene activity. Most bioreporter genes utilize a biochemical assay requiring destructive sampling of the microbial consortium, but lux bioreporter genes produce visible light when active. The measurement of light is rapid, sensitive, and quantifiable, and background signal is usually absent. The usefulness of lux bioreporters is shown in several examples that demonstrate the unique attributes of this bioreporter. Despite some limitations, bioluminescence has proved to be a useful bioreporter under both laboratory and field conditions. Technological developments are discussed that have the potential to increase the number of bioreporter genes.
对微生物生态学日益增长的兴趣催生了用于研究复杂微生物相互作用的新工具。生物报告基因特别有用,因为它们提供了一种确定基因活性的方法。大多数生物报告基因利用需要对微生物群落进行破坏性采样的生化分析,但发光生物报告基因在激活时会产生可见光。光的测量快速、灵敏且可量化,并且通常没有背景信号。发光生物报告基因的实用性在几个例子中得到了体现,这些例子展示了这种生物报告基因的独特属性。尽管存在一些局限性,但生物发光已被证明在实验室和野外条件下都是一种有用的生物报告基因。文中还讨论了有可能增加生物报告基因数量的技术发展。