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Comparative genomics-guided loop-mediated isothermal amplification for characterization of Pseudomonas syringae pv. phaseolicola Li X, Nie J, Ward L, Madani M, Hsiang T, Zhao Y, De Boer SH Journal of Applied Microbiology, 107(3), 717, 2009 |
2 |
A model for enhanced pea seedling vigour following low pH and salicylic acid treatments McCue P, Zheng ZX, Pinkham JL, Shetty K Process Biochemistry, 35(6), 603, 2000 |
3 |
The potential of L-form bacteria in biotechnology Grichko VP, Glick BR Canadian Journal of Chemical Engineering, 77(5), 973, 1999 |
4 |
Site-directed mutagenesis of histidine residues in the ethylene-forming enzyme from Pseudomonas syringae Nagahama K, Yoshino K, Matsuoka M, Tanase S, Ogawa T, Fukuda H Journal of Fermentation and Bioengineering, 85(3), 255, 1998 |
5 |
Photosynthetic conversion of carbon dioxide to ethylene by the recombinant cyanobacterium, Synechococcus sp. PCC 7942, which harbors a gene for the ethylene-forming enzyme of Pseudomonas syringae Sakai M, Ogawa T, Matsuoka M, Fukuda H Journal of Fermentation and Bioengineering, 84(5), 434, 1997 |
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Ethylene Production Using a Broad-Host-Range Plasmid in Pseudomonas-Syringae and Pseudomonas-Putida Ishihara K, Matsuoka M, Ogawa T, Fukuda H Journal of Fermentation and Bioengineering, 82(5), 509, 1996 |
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Overexpression and in-Vitro Reconstitution of the Ethylene-Forming Enzyme from Pseudomonas-Syringae Ishihara K, Matsuoka M, Inoue Y, Tanase S, Ogawa T, Fukuda H Journal of Fermentation and Bioengineering, 79(3), 205, 1995 |
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Heterologous Expression of the Gene for the Ethylene-Forming Enzyme from Pseudomonas-Syringae in the Cyanobacterium Synechococcus Fukuda H, Sakai M, Nagahama K, Fujii T, Matsuoka M, Inoue Y, Ogawa T Biotechnology Letters, 16(1), 1, 1994 |