Iwai Shoko, Kurisu Futoshi, Urakawa Hidetoshi, Yagi Osami, Furumai Hiroaki
Department of Urban Engineering, Graduate School of Engineering, The University of Tokyo, Tokyo, Japan.
Appl Microbiol Biotechnol. 2007 Jun;75(4):929-39. doi: 10.1007/s00253-007-0877-0. Epub 2007 Mar 10.
We constructed a 60-mer oligonucleotide microarray on the basis of benzene monooxygenase gene diversity to develop a new technology for simultaneous detection of the functional gene diversity in environmental samples. The diversity of the monooxygenase genes associated with benzene degradation was characterized. A new polymerase chain reaction (PCR) primer set was designed using conserved regions of benzene monooxygenase gene (BO12 primer) and used for PCR-clone library analysis along with a previously designed RDEG primer which targeted the different types of benzene monooxygenase gene. We obtained 20 types of amino acid sequences with the BO12 primer and 40 with the RDEG primer. Phylogenetic analysis of the sequences obtained suggested the large diversity of the benzene monooxygenase genes. A total of 87 60-mer probes specific for each operational taxonomical unit were designed and spotted on a microarray. When genomic DNAs of single strains were used in microarray hybridization assays, corresponding sequences were successfully detected by the microarray without any false-negative signals. Hybridization with soil DNA samples showed that the microarray was able to detect sequences that were not detected in clone libraries. Constructed microarray can be a useful tool for characterizing monooxygenase gene diversity in benzene degradation.
我们基于苯单加氧酶基因多样性构建了一个60聚体寡核苷酸微阵列,以开发一种同时检测环境样品中功能基因多样性的新技术。对与苯降解相关的单加氧酶基因的多样性进行了表征。利用苯单加氧酶基因的保守区域设计了一套新的聚合酶链反应(PCR)引物(BO12引物),并与先前设计的针对不同类型苯单加氧酶基因的RDEG引物一起用于PCR克隆文库分析。使用BO12引物我们获得了20种氨基酸序列,使用RDEG引物获得了40种。对所得序列的系统发育分析表明苯单加氧酶基因具有很大的多样性。总共设计了87种针对每个操作分类单元的60聚体探针,并点样到微阵列上。当在微阵列杂交试验中使用单菌株的基因组DNA时,微阵列成功检测到了相应序列,没有任何假阴性信号。与土壤DNA样品的杂交表明,该微阵列能够检测到在克隆文库中未检测到的序列。构建的微阵列可成为表征苯降解中单加氧酶基因多样性的有用工具。