Changzhou University, Jiangsu, China.
ISME J. 2011 Mar;5(3):403-13. doi: 10.1038/ismej.2010.142. Epub 2010 Sep 23.
To compare microbial functional diversity in different oil-contaminated fields and to know the effects of oil contaminant and environmental factors, soil samples were taken from typical oil-contaminated fields located in five geographic regions of China. GeoChip, a high-throughput functional gene array, was used to evaluate the microbial functional genes involved in contaminant degradation and in other major biogeochemical/metabolic processes. Our results indicated that the overall microbial community structures were distinct in each oil-contaminated field, and samples were clustered by geographic locations. The organic contaminant degradation genes were most abundant in all samples and presented a similar pattern under oil contaminant stress among the five fields. In addition, alkane and aromatic hydrocarbon degradation genes such as monooxygenase and dioxygenase were detected in high abundance in the oil-contaminated fields. Canonical correspondence analysis indicated that the microbial functional patterns were highly correlated to the local environmental variables, such as oil contaminant concentration, nitrogen and phosphorus contents, salt and pH. Finally, a total of 59% of microbial community variation from GeoChip data can be explained by oil contamination, geographic location and soil geochemical parameters. This study provided insights into the in situ microbial functional structures in oil-contaminated fields and discerned the linkages between microbial communities and environmental variables, which is important to the application of bioremediation in oil-contaminated sites.
为了比较不同污染油田的微生物功能多样性,并了解污染物和环境因素的影响,我们从中国五个地理区域的典型污染油田采集了土壤样本。高通量功能基因芯片 GeoChip 被用于评估参与污染物降解及其他主要生物地球化学/代谢过程的微生物功能基因。研究结果表明,每个污染油田的整体微生物群落结构都有明显差异,且样本按地理位置聚类。在所有样本中,有机污染物降解基因最为丰富,且在五个油田的污染物胁迫下呈现出相似的模式。此外,烷烃和芳烃降解基因(如单加氧酶和双加氧酶)在污染油田中也被大量检出。典范对应分析表明,微生物功能模式与当地环境变量(如污染物浓度、氮磷含量、盐分和 pH 值)高度相关。最后,GeoChip 数据中 59%的微生物群落变化可以用污染物、地理位置和土壤地球化学参数来解释。本研究深入了解了污染油田原位微生物功能结构,并解析了微生物群落与环境变量之间的联系,这对于污染场地的生物修复应用具有重要意义。