O'Morchoe S B, Ogunseitan O, Sayler G S, Miller R V
Department of Biochemistry and Biophysics, Stritch School of Medicine, Loyola University of Chicago, Maywood, Illinois 60153.
Appl Environ Microbiol. 1988 Aug;54(8):1923-9. doi: 10.1128/aem.54.8.1923-1929.1988.
Recent concern over the release of genetically engineered organisms has resulted in a need for information about the potential for gene transfer in the environment. In this study, the conjugal transfer in Pseudomonas aeruginosa of the plasmids R68.45 and FP5 was demonstrated in the freshwater environment of Fort Loudoun Resevoir, Knoxville, Tenn. When genetically well defined plasmid donor and recipient strains were introduced into test chambers suspended in Fort Loudoun Lake, transfer of both plasmids was observed. Conjugation occurred in both the presence and absence of the natural microbial community. The number of transconjugants recovered was lower when the natural community was present. Transfer of the broad-host-range plasmid R68.45 to organisms other than the introduced recipient was not observed in these chambers but was observed in laboratory simulations when an organism isolated from lakewater was used as the recipient strain. Although the plasmids transferred in laboratory studies were genetically and physically stable, a significant number of transconjugants recovered from the field trials contained deletions and other genetic rearrangements, suggesting that factors which increase gene instability are operating in the environment. The potential for conjugal transfer of genetic material must be considered in evaluating the release of any genetically engineered microorganism into a freshwater environment.
最近对基因工程生物释放的关注引发了对环境中基因转移可能性信息的需求。在本研究中,在田纳西州诺克斯维尔市劳登堡水库的淡水环境中证实了铜绿假单胞菌中质粒R68.45和FP5的接合转移。当将基因明确的质粒供体和受体菌株引入悬浮在劳登堡湖中的试验箱时,观察到了两种质粒的转移。在有和没有天然微生物群落的情况下均发生了接合。当存在天然群落时,回收的接合子数量较少。在这些试验箱中未观察到广宿主范围质粒R68.45向引入的受体以外的生物体的转移,但在实验室模拟中,当使用从湖水中分离的生物体作为受体菌株时观察到了这种转移。尽管在实验室研究中转移的质粒在遗传和物理上是稳定的,但从田间试验回收的大量接合子含有缺失和其他基因重排,这表明增加基因不稳定性的因素在环境中起作用。在评估任何基因工程微生物释放到淡水环境中的情况时,必须考虑遗传物质接合转移的可能性。