期刊文献+

Development of pyrF-based gene knockout systems for genome-wide manipulation of the archaea Haloferax mediterranei and Haloarcula hispanica 被引量:14

Development of pyrF-based gene knockout systems for genome-wide manipulation of the archaea Haloferax mediterranei and Haloarcula hispanica
原文传递
导出
摘要 The haloarchaea Haloferax mediterranei and Haloarcula hispanica are both polyhydroxyalkanoate producers in the domain Archaea, and they are becoming increasingly attractive for research and biotechnology due to their unique genetic and metabolic features. To accelerate their genome-level genetic and metabolic analyses, we have developed specific and highly efficient gene knockout systems for these two haloarchaea. These gene knockout systems consist of a suicide plasmid vector with the pyrF gene as the selection marker and a uracil auxotrophic haloarchaeon (apyrF) as the host. For in-frame deletion of a target gene, the suicide plasmid carrying the flanking region of the target gene was transferred into the corresponding apyrF host. After positive selection of the single-crossover integration recombinants (pop-in) on AS-168SY medium without uracil and counterselection of the double-crossover pyrF-excised recombinants (pop-out) with 5-fluoroorotic acid (5-FOA), the target gene knockout mutants were confirmed by PCR and Southern blot analysis. We have demonstrated the effectiveness of these systems by knocking out the crtB gene which encodes a phytoene synthase in these haloarchaea. In conclusion, these well-developed knockout systems would greatly accelerate the functional genomic research of these halophilic archaea. The haloarchaea Haloferax mediterranei and Haloarcula hispanica are both polyhydroxyalkanoate producers in the domain Archaea, and they are becoming increasingly attractive for research and biotechnology due to their unique genetic and metabolic features. To accelerate their genome-level genetic and metabolic analyses, we have developed specific and highly efficient gene knockout systems for these two haloarchaea. These gene knockout systems consist of a suicide plasmid vector with the pyrF gene as the selection marker and a uracil auxotrophic haloarchaeon (apyrF) as the host. For in-frame deletion of a target gene, the suicide plasmid carrying the flanking region of the target gene was transferred into the corresponding apyrF host. After positive selection of the single-crossover integration recombinants (pop-in) on AS-168SY medium without uracil and counterselection of the double-crossover pyrF-excised recombinants (pop-out) with 5-fluoroorotic acid (5-FOA), the target gene knockout mutants were confirmed by PCR and Southern blot analysis. We have demonstrated the effectiveness of these systems by knocking out the crtB gene which encodes a phytoene synthase in these haloarchaea. In conclusion, these well-developed knockout systems would greatly accelerate the functional genomic research of these halophilic archaea.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2011年第6期261-269,共9页 遗传学报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.30830004,30925001) the National 863 Program of China(No.2009AA09Z401) the Chinese Academy of Sciences(No.KSCX2-EW-G-2)
关键词 Knockout system pyrF Pop-in/pop-out method HALOARCHAEA Knockout system pyrF Pop-in/pop-out method Haloarchaea
  • 相关文献

参考文献27

  • 1Angelov, A., Liebl, W., 2006. Insights into extreme thermoacidophily based on genome analysis of Picrophilus torridus and other thermoacidophilic archaea. J. Biotechnol. 126, 3-10.
  • 2Bell, S.D., Jackson, S.E, 1998. Transcription and translation in Archaea: a mosaic of eukaryal and bacterial features. Trends Microbiol. 6, 222-228.
  • 3Bitan-Banin, G., Ortenberg, R., Mevarech, M., 2003. Development of a gene knockout system for the halophilic archaeon Haloferax volcanii by use of the pyrE gene. J. Bacteriol. 185, 772-778.
  • 4Boeke, J.D., LaCroute, E, Fink, G.R., 1984. A positive selection for mutants lacking orotidine-5'-phosphate decarboxylase activity in yeast: 5-fluoro- orotic acid resistance. Mol. Gen. Genet. 197, 345-346.
  • 5Burland, T.G., 2000. DNASTAR's Lasergene sequence analysis software. Methods Mol. Biol. 132, 71-91.
  • 6Cardenas, J.E, Valdes, J., Quatrini, R., Duarte, E, Holmes, D.S., 2010. Lessons from the genomes of extremely acidophilic bacteria and archaea with special emphasis on bioleaching microorganisms. Appl. Microbiol. Biotechnol. 88, 605-620.
  • 7Cline, S.W., Lam, W.L., Charlebois, R.L., Schalkwyk, L.C., Doolittle, W.F., 1989. Transformation methods for halophilic archaebacteria. Can. J. Microbiol. 35, 148-152.
  • 8DasSarma, S., Fleischmann, E.M., 1995. Halophiles. Cold Spring Harbor Laboratory Press, Plainview, N.Y.
  • 9Falb, M., Muller, K., Konigsmaier, L., Oberwinkler, T., Horn, E, von Gronau, S., Gonzalez, O., Pfeiffer, E, Bornberg-Bauer, E., Oesterhelt, D., 2008. Metabolism of halophilic archaea. Extremophiles 12, 177-196.
  • 10Hammelmann, M., Soppa, J., 2008. Optimized generation of vectors for the construction of Haloferax volcanii deletion mutants. J. Microbiol. Methods 75, 201-204.

同被引文献52

  • 1Li, R Chen, Q Wang, PG Qi, QS.A novel-designed Escherichia coli for the production of various polyhydroxyalkanoates from inexpensive substrate mixture[J].中国生物学文摘,2007,21(10):4-4. 被引量:13
  • 2Jing Hou,Bo Feng,Jing Han,Hailong Liu,Dahe Zhao,Jian Zhou,Hua Xiang.Haloarchaeal-Type β-Ketothiolases Involved in Poly(3-Hydroxybutyrate-co-3-Hydroxyvalerate) Synthesis in Haloferax mediterranei[J].Applied and Environmental Microbiology.2013(17)
  • 3Dahe Zhao,Lei Cai,Jinhua Wu,Ming Li,Hailong Liu,Jing Han,Jian Zhou,Hua Xiang.Improving polyhydroxyalkanoate production by knocking out the genes involved in exopolysaccharide biosynthesis in Haloferax mediterranei[J].Applied Microbiology and Biotechnology.2013(7)
  • 4Han Jing,Zhang Fan,Hou Jing,Liu Xiaoqing,Li Ming,Liu Hailong,Cai Lei,Zhang Bing,Chen Yaping,Zhou Jian,Hu Songnian,Xiang Hua.Complete genome sequence of the metabolically versatile halophilic archaeon Haloferax mediterranei, a poly(3-hydroxybutyrate-co-3-hydroxyvalerate) producer[].Journal of Bacteriology.2012
  • 5Han, Jing,Lu, Qiuhe,Zhou, Ligang,Zhou, Jian,Xiang, Hua.Molecular characterization of the phaEC Hm genes, required for biosynthesis of poly(3-hydroxybutyrate) in the extremely halophilic archaeon Haloarcula marismortui[].Applied and Environmental Microbiology.2007
  • 6Han, Jing,Hou, Jing,Liu, Hailong,Cai, Shuangfeng,Feng, Bo,Zhou, Jian,Xiang, Hua.Wide distribution among halophilic archaea of a novel polyhydroxyalkanoate synthase subtype with homology to bacterial type III synthases[].Applied and Environmental Microbiology.2010
  • 7Han Jing,Li Ming,Hou Jing,Wu Linping,Zhou Jian,Xiang Hua.Comparison of four phaC genes from Haloferax mediterranei and their function in different PHBV copolymer biosyntheses in Haloarcula hispanica[].Saline systems.2010
  • 8Cai Shuangfeng,Cai Lei,Liu Hailong,Liu Xiaoqing,Han Jing,Zhou Jian,Xiang Hua.Identification of the haloarchaeal phasin (PhaP) that functions in polyhydroxyalkanoate accumulation and granule formation in Haloferax mediterranei[].Applied and Environmental Microbiology.2012
  • 9Liu Hailong,Wu Zhenfang,Li Ming,Zhang Fan,Zheng Huajun,Han Jing,Liu Jingfang,Zhou Jian,Wang Shengyue,Xiang Hua.Complete Genome Sequence of Haloarcula hispanica, a Model Haloarchaeon for Studying Genetics, Metabolism, and Virus-Host Interaction[].Journal of Bacteriology.2011
  • 10Qiuhe Lu,Jing Han,Ligang Zhou,Jian Zhou,Hua Xiang.Genetic and Biochemical Characterization of the Poly(3-Hydroxybutyrate-co-3-Hydroxyvalerate) Synthase in Haloferax mediterranei[].Journal of Bacteriology.2008

引证文献14

二级引证文献46

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部