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耐盐及苯乙酸、甲基对硫磷降解基因工程菌的构建

Construction of Genetic Engineering Microogranism of Salt Tolerant Degrading Strain

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【作者】 刘智洪青徐剑宏张国顺李顺鹏

【Author】 Liu Zhi Hong Qing Xu Jianhong Zhang Guoshun Li Shunpeng* (Key Lab of Microbiological Engineering of Agricultural Environment of Ministry of Agriculture, Life Science College, Nanjing Agricultural University, Nanjing 210095, China)

【机构】 南京农业大学生命科学学院农业部农业环境微生物工程重点开放实验室南京农业大学生命科学学院农业部农业环境微生物工程重点开放实验室 南京210095南京210095南京210095

【摘要】 H1 (Halomonassp.)是一株耐高盐浓度 (1 8%NaCl,W V)和降解苯乙酸的菌株 ,pDT3质粒为pUC1 9插入甲基对硫磷水解酶基因 (mpd基因 )构建而成。采用HindⅢ酶切 ,获得含有完整mpd基因片段 ,克隆到广宿主质粒pKT2 3 0和pBBR1 MCS2上 ,构建成质粒pKT MP和pBBR MP。通过三亲杂交 ,在辅助质粒pRK2 0 1 3的帮助下 ,将质粒pKT MP和pBBR MP转移到H1中 ,得到的工程菌H pKT MP和H pBBR MP具有耐盐、降解苯乙酸和水解甲基对硫磷的功能 ,其中H pBBR MP水解酶活性与亲本菌株甲基对硫磷降解菌 (Pseudomonasputida)DLL E4相当 ,而H pKT MP水解酶活性要提高 1倍左右。经过传代试验 ,证明了工程菌的稳定性

【Abstract】 H1(Halomonas sp.)was a strain of salt tolerance(18% NaCl,W/V) and degr ading phenylacetic acid, plasmid pDT3 was a derivation of pUC19 inserted mpd gene(methyl parathion degrading gene), which is obtained from methyl parathion (MP) degrading strain DLL-E4(Pseudomonas putida). Recombinant plasmids pKT -MP and pBBR-MP were constructed by inserting HindⅢ fragment(which includ e whole mpd gene) of pDT3 into broad host vector pKT230 and pBBR1-MCS2 Wi th the aid of help-plasmid pRK2013, pKT-MP and pBBR-MP were transferred into H1(called tri-parent conjugation) and multi-functioned GEMs H-pKT-MP and H- pBBR-MP were constructed, which were salt tolerant, phenylacetic acid-degradin g and MP-degrading. The activity of MP hydrolase of H-pBBR-MP and H-pKT-MP was 1× and 2× the one of DLL-E4. The MP hydrolase activity of two GEMs were c onstant.

【基金】 国家“8 63计划” (2 0 0 1AA2 14 12 12 0 0 2AA2 460 81);农业科技跨越计划 (M2 0 0 0 11);国家“十五”攻关(2 0 0 2BA5 16A0 1)~~
  • 【文献出处】 微生物学报 ,Acta Microbiologica Sinica , 编辑部邮箱 ,2003年05期
  • 【分类号】Q78
  • 【被引频次】30
  • 【下载频次】542
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