Department of Food Science and Technology, Kyungpook National University, Daegu 702-701, Korea.
J Microbiol Biotechnol. 2010 Jan;20(1):187-92.
In order to monitor the possibility of horizontal gene transfer between transgenic rice and microorganisms in paddy rice field, the gene flow from bifunctional fusion (TPSP) rice containing trehalose-6-phosphate synthase and phosphatase to microorganisms in soils was investigated. The soil samples collected every month from the paddy rice field during June, 2004 to March, 2006 were investigated by multiplex PCR, Southern hybridization, and amplified fragment length polymorphism (AFLP). The TPSP gene from soil genomics DNAs was not detected by PCR. Soil genomic DNAs were not shown its homologies on the Southern blotting data, indicating that gene-transfer did not occur during the last two years in paddy rice field. In addition, the AFLP band patterns produced by both soil genomic DNAs extracted from transgenic and non-transgenic rice field appeared similar to each other when analyzed by NTSYSpc program. Thus, these data suggest that transgenic rice does not give a significant impact on the communities of soil microorganisms although long-term observation may be needed.
为了监测转双功能融合(TPSP)基因水稻与稻田微生物之间水平基因转移的可能性,我们研究了含海藻糖-6-磷酸合酶和磷酸酶的 TPSP 基因向土壤微生物的基因流。2004 年 6 月至 2006 年 3 月期间,每月从稻田采集土壤样本,通过多重 PCR、Southern 杂交和扩增片段长度多态性(AFLP)进行分析。PCR 未检测到土壤基因组 DNA 中的 TPSP 基因。Southern 印迹数据显示土壤基因组 DNA 没有同源性,表明在过去两年的稻田中没有发生基因转移。此外,用 NTSYSpc 程序分析时,从转基因和非转基因稻田提取的土壤基因组 DNA 产生的 AFLP 带型彼此相似。因此,这些数据表明,尽管需要长期观察,但转基因水稻对土壤微生物群落没有显著影响。