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通过转座诱变筛选甲基营养菌吡咯喹啉醌合成缺陷突变株
引用本文:韩月梅,葛欣,王鹤,熊向华,汪建华,刘党生,张惟材.通过转座诱变筛选甲基营养菌吡咯喹啉醌合成缺陷突变株[J].生物技术通讯,2014,25(5):628-631.
作者姓名:韩月梅  葛欣  王鹤  熊向华  汪建华  刘党生  张惟材
作者单位:1. 军事医学科学院生物工程研究所,北京100071;沈阳药科大学,辽宁沈阳110016
2. 军事医学科学院生物工程研究所,北京,100071
3. 沈阳药科大学,辽宁沈阳,110016
基金项目:国家自然科学基金,中国博士后科学基金
摘    要:目的:对电转化等Tn5转座诱变条件进行优化,获得大量甲基营养菌MP688突变株,筛选吡咯喹啉醌(PQQ)合成缺陷突变株,并对失活基因进行鉴定。方法:通过电击方法对MP688株进行Tn5转座诱变;通过检测PQQ产量,选择不产或几乎不产PQQ的突变株,用质粒拯救的方法鉴定突变基因。结果和结论:确定了MP688株电击转化的最优条件,优化了质粒拯救法鉴定突变基因的实验方案,得到了1株PQQ合成明显降低的突变株RM16,并确定了转座子在染色体上的插入位点。

关 键 词:甲基营养菌  吡咯喹啉醌  Tn5转座  电击转化  突变

Screening of PQQ-Deficient Mutants by Transposition Mutagenesis
HAN Yue-Mei,GE Xin,WANG He,XIONG Xiang-Hua,WANG Jian-Hua,LIU Dang-Sheng,ZHANG Wei-Cai.Screening of PQQ-Deficient Mutants by Transposition Mutagenesis[J].Letters in Biotechnology,2014,25(5):628-631.
Authors:HAN Yue-Mei  GE Xin  WANG He  XIONG Xiang-Hua  WANG Jian-Hua  LIU Dang-Sheng  ZHANG Wei-Cai
Institution:HAN Yue-Mei, GE Xin, WANG He, XIONG Xiang-Hua, WANG Jian-Hua, LIU Dang-Sheng, ZHANG Wei-Cai( 1. Beijng Institute of Biotechnology, Beijing 100071; 2. Shenyang Pharmaceutical University, Shenyang 110016; China)
Abstract:Objective: To obtain a considerable amount of Tn5 transposition mutants of Methylovorus sp. MP688 and screen pyrroloquinoline quinine (PQQ) -deficient strains and identify the mutation genes, the electroporation and other conditions involved in Tn5 transposition mutagenesis were optimized. Methods: Tn5 transposition mutagenesis for MP688 were carried out by electroporation. The PQQ-deficient and the PQQ-declined mutants were chosen by measuring the fermentation broth's PQQ content, The mutation genes were identified by plasmid rescue. Results & Conclusion: The electroporation transformation procedure was optimized and the mutation genes were identified when using plasmid rescue. And then a mutant with an obvious decline in PQQ secretion were named RM16 and the insertion site in the chromosome was successfully identified.
Keywords:methylotrophic bacteria  pyrroloquinoline quinine  Tn5 transposition  electroporation transfprmation  mutation
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