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首页> 外文期刊>Applied and Environmental Microbiology >A stochastic killing system for biological containment of Escherichia coli.
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A stochastic killing system for biological containment of Escherichia coli.

机译:大肠杆菌生物遏制的随机杀死系统。

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Bacteria with a stochastic conditional lethal containment system have been constructed. The invertible switch promoter located upstream of the fimA gene from Escherichia coli was inserted as expression cassette in front of the lethal gef gene deleted of its own natural promoter. The resulting fusion was placed on a plasmid and transformed to E. coli. The phenotype connected with the presence of such a plasmid was to reduce the population growth rate with increasing significance as the cell growth rate was reduced. In very fast growing cells, there was no measurable effect on growth rate. When a culture of E. coli harboring the plasmid comprising the containment system is left as stationary cells in suspension without nutrients, viability drops exponentially over a period of several days, in contrast to the control cells, which maintain viability nearly unaffected during the same period of time. Similar results were obtained with a strain in which the killing cassette was inserted in the chromosome. In competition with noncontained cells during growth, the contained cells are always outcompeted. Stochastic killing obtained by the fim-gef fusion is at present relevant only as a containment approach for E. coli, but the model may be mimicked in other organisms by using species-specific stochastic expression systems.
机译:已经构建了具有随机条件致死抑制系统的细菌。将位于大肠杆菌fimA基因上游的可逆开关启动子作为表达盒插入其自身天然启动子缺失的致死性gef基因的前面。将得到的融合物置于质粒上并转化到大肠杆菌中。与这种质粒的存在有关的表型是随着细胞生长速率降低而降低种群生长速率,并具有越来越重要的意义。在快速生长的细胞中,对生长速率没有可测量的影响。当将含有包含遏制系统的质粒的大肠杆菌培养物作为静止细胞悬浮在没有营养的悬浮液中时,与对照细胞相比,存活力在几天内呈指数下降,而对照细胞则在同一时期内几乎不受影响时间。在其中将杀伤盒插入染色体中的菌株获得了相似的结果。在生长过程中与不包含细胞的竞争中,包含的细胞总是竞争激烈的。目前,通过fim-gef融合获得的随机杀伤仅作为大肠杆菌的一种遏制方法,但可以通过使用物种特异性随机表达系统在其他生物中模拟该模型。

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