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首页> 外文期刊>Applied and Environmental Microbiology >Transformation of Heat-Treated Clostridium acetobutylicum Protoplasts with pUB110 Plasmid DNA
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Transformation of Heat-Treated Clostridium acetobutylicum Protoplasts with pUB110 Plasmid DNA

机译:用pUB110质粒DNA转化热处理的丙酮丁醇梭菌原生质体

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摘要

Heat treatment of Clostridium acetobutylicum SA-1 protoplasts at 55°C for 15 min before transformation resulted in expression in this microorganism of the kanamycin resistance determinant associated with plasmid pUB110. No heat treatment, or heat treatment at 65 or 44°C for various time intervals, resulted in no kanamycin resistance transformants being recovered on selective kanamycin-containing regeneration medium. DNase plate assay indicated that treatment at 55°C for 15 min completely inactivated the DNase activity associated with SA-1 protoplasts. Treatment of protoplasts at 65 or 55°C for various periods under simulated transformation conditions had an inhibitory effect, although prolonged treatment at 55 or 44°C appeared to stimulate DNase activity. Inactivation of protoplast-associated DNase activity by heat treatment at 55°C for 15 min correlated with successful expression of kanamycin resistance and suggests that an extremely active, heatsensitive, protoplast-associated DNase may be a factor in the polyethylene glycol-induced transformation of C. acetobutylicum SA-1 protoplasts. Plasmid pUB110 DNA was isolated from C. acetobutylicum SA-1 kanamycin-resistant (Kmr) transformant cultures by a modification of the procedure used for C. perfringens plasmids. Detection of pUB110 DNA was possible only when diethyl pyrocarbonate was incorporated into isolation protocols to inactivate DNase activity. Restriction studies further verified the presence of pUB110 DNA in C. acetobutylicum SA-1 Kmr transformants.
机译:转化前在55°C下加热丙酮丁酸梭菌SA-1原生质体15分钟,从而在该微生物中表达与质粒pUB110相关的卡那霉素抗性决定簇。没有进行热处理,或者在65或44°C下进行了不同时间间隔的热处理,结果没有在含有卡那霉素的选择性再生培养基上回收到卡那霉素抗性转化子。 DNase平板检测表明,在55°C下处理15分钟可完全灭活与SA-1原生质体相关的DNase活性。尽管在55或44°C下长时间处理似乎会刺激DNase活性,但是在模拟转化条件下于65或55°C下处理原生质体具有不同的抑制作用。通过在55°C热处理15分钟使原生质体相关的DNase活性失活与卡那霉素抗性的成功表达有关,并表明极活跃,热敏,原生质体相关的DNase可能是聚乙二醇诱导的C转化的一个因素乙酰丁酸SA-1原生质体。通过修改产气荚膜梭菌质粒的程序,从丙酮丁醇梭菌SA-1卡那霉素抗性(Kmr)转化体培养物中分离质粒pUB110 DNA。仅当将焦碳酸二乙酯加入到分离方案中以灭活DNase活性时,才可能检测到pUB110 DNA。限制性酶切研究进一步证实了丙酮丁醇梭菌SA-1 Kmr转化子中pUB110 DNA的存在。

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