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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >The Native Plasmid pML21 Plays a Role in Stress Tolerance in Enterococcus faecalis ML21, as Analyzed by Plasmid Curing Using Plasmid Incompatibility
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The Native Plasmid pML21 Plays a Role in Stress Tolerance in Enterococcus faecalis ML21, as Analyzed by Plasmid Curing Using Plasmid Incompatibility

机译:天然质粒pML21在粪肠球菌ML21的抗逆性中发挥作用,如通过使用质粒不相容性的质粒固化分析

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To investigate the role of the native plasmid pML21 in Enterococcus faecalis ML21's response to abiotic stresses, the plasmid pML21 was cured based on the principle of plasmid incompatibility and segregational instability, generating E. faecalis mutant strain ML0. The mutant and the wild strains were exposed to abiotic stresses: bile salts, low pH, H2O2, ethanol, heat, and NaCl, and their survival rate was measured. We found that curing of pML21 lead to reduced tolerance to stress in E. faecalis ML0, especially oxidative and osmotic stress. Complementation analysis suggested that the genes from pML21 played different role in stress tolerance. The result indicated that pML21 plays a role in E. faecalis ML21's response to abiotic stresses.
机译:为了研究天然质粒pML21在粪肠球菌ML21对非生物胁迫的响应中的作用,基于质粒不相容和分离不稳定性的原理将质粒pML21进行了固化,产生了粪肠球菌突变株ML0。突变体和野生菌株暴露于非生物胁迫:胆盐,低pH,H2O2,乙醇,热和NaCl,并测定了它们的存活率。我们发现,pML21的固化导致粪肠球菌ML0对压力的耐受性降低,尤其是氧化和渗透胁迫。互补分析表明,来自pML21的基因在胁迫耐受性中发挥不同的作用。结果表明pML21在粪肠球菌ML21对非生物胁迫的应答中起作用。

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