Sei K, Inaba M, Upadhye R, Inoue D, Ike M
Division of Sustainable Energy and Environmental Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Water Sci Technol. 2009;59(1):97-107. doi: 10.2166/wst.2009.575.
DNA microarray mounted 85 functional gene sequences related to carbon, nitrogen and sulphur cycles, chemical degradation, metal metabolisms, and energy flows was developed to evaluate the function and status of the environment. Total of 24 river water samples from 6 sampling stations in 2 rivers in 4 seasons were analyzed using constructed DNA microarray. The numbers and constitution of the functional genes were much affected by the seasonal change. Some of the functional genes related to methane oxidation, nitrite reduction, nitrogen fixation, aromatic compounds degradation (catechol 2,3-dioxygenase), alkane degradation (group I and III) and iron reduction were detected in most of all the samples, suggesting that these could be the general functions of the river environment. Some other functional genes related to ammonium oxidation, aromatic compounds degradation (catechol 1,2-dioxygenase) and alkane degradation (group II) can be a certain indicator for the evaluation of the environmental condition.
为评估环境功能与状态,开发了一种装有85个与碳、氮和硫循环、化学降解、金属代谢及能量流动相关的功能基因序列的DNA微阵列。使用构建好的DNA微阵列对4个季节里2条河流6个采样站的总共24个河水样本进行了分析。功能基因的数量和构成受季节变化影响很大。大多数样本中都检测到了一些与甲烷氧化、亚硝酸盐还原、固氮、芳香化合物降解(儿茶酚2,3 -双加氧酶)、烷烃降解(第一组和第三组)及铁还原相关的功能基因,这表明这些可能是河流环境的一般功能。其他一些与铵氧化、芳香化合物降解(儿茶酚1,2 -双加氧酶)和烷烃降解(第二组)相关的功能基因可作为评估环境状况的特定指标。