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Conditional suicide system of Escherichia coli released into soil that uses the Bacillus subtilis sacB gene.

机译:使用枯草芽孢杆菌sacB基因释放到土壤中的大肠杆菌的条件自杀系统。

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摘要

The sacB gene from Bacillus subtilis confers sucrose sensitivity upon gram-negative bacteria. The gene was investigated for use as a potential conditional suicide system for Escherichia coli released into soil. To ensure against the loss of the cell death function encoded under nonselective conditions, the nptI-sacR-B suicide cassette was inserted into the E. coli chromosome by using a circular nonreplicative integration vector. Stability studies yielded no loss of the suicide cassette in the integrated E. coli EL1026 strain. sacB induction in the absence of a selective pressure resulted in a lysis efficiency of up to 99.9%. The microcosm experiments confirmed the ability of the suicide cassette to limit the growth and reduce the survival of E. coli strains released into soil. Sucrose addition to sterile soil resulted in a 10(-3)-fold reduction of the final E. coli population density. sacB induction prevented the proliferation and triggered the rapid disappearance of E. coli from natural soil. Mutation to sucrose tolerance occurred at a frequency of 10(-5), making E. coli EL1026 a potential counterselectable donor strain for gene transfer studies. Specificity and potential adaptability to a wide range of gram-negative bacteria are additional conveniences of this conditional suicide system for the containment and counterselection of engineered microorganisms.
机译:枯草芽孢杆菌的sacB基因赋予革兰氏阴性细菌蔗糖敏感性。研究该基因用作释放到土壤中的大肠杆菌的潜在条件性自杀系统。为了确保避免在非选择性条件下编码的细胞死亡功能的丧失,通过使用环形非复制整合载体将nptI-sacR-B自杀盒插入大肠杆菌染色体。稳定性研究表明在整合的大肠杆菌EL1026菌株中没有自杀盒丢失。在没有选择压力的情况下,sacB诱导的裂解效率高达99.9%。缩影实验证实了自杀盒能够限制细菌生长并降低释放到土壤中的大肠杆菌菌株的存活。将蔗糖添加到无菌土壤中会导致最终大肠杆菌种群密度降低10(-3)倍。 sacB诱导阻止了增殖并引发了大肠杆菌从天然土壤中的快速消失。蔗糖耐性的突变发生在10(-5)的频率,使大肠杆菌EL1026成为潜在的可逆选择的供体菌株,用于基因转移研究。对多种革兰氏阴性细菌的特异性和潜在适应性是该条件自杀系统用于遏制和反选工程微生物的附加便利。

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