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Keyword [Pseudomonas putida]
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1. Studies On Two Different Kinds Of Cyclic Amidases From Pseudomonas Putida YZ26
2. The Molecular Mechanisms Of Salt Osmtic Stress Tolerantion Enhancement Of Pseudomonas Putida KT2440 By Betaine And Ectoine
3. The Hydroxylation Of Pyridine-related Compounds And The Relative Hydroxylase, Cloning And Functionial Expression
4. Molecular Mechanisms Of Nicotine Degradation By Pseudomonas Putida S16
5. Trehalose Synthase Produced By A Strain Of Polar Bacteria Pseudomonas Putida S1
6. Study On Functions Of Isozymes Related To PHA Synthesis Pathway By Using Mutations Of Pseudomonas Putida And Biosynthesis Of Novel Medium-Chain-Length-PHA Materials
7. Development Of Bacterial Cell Surface Display Systems Using Ice Nucleation Protein Anchor Towards Biotechnological Applications
8. Breeding Of Pseudomonas By Mutagenesis And Optimizing Of Fermentation Conditions
9. Production And Characterization Of New Medium Chain Length Polyhydroxyalkanoates
10. Cloning And Characterization Of Genes Related To Polyphosphorus Accumulation From Strain Pseudomonas Putida GM6
11. Determination Of Zn2+-resistant Function Of P-type ATPase Gene CadA1 In Pseudomonas Putida CD2
12. Cloning And Functional Analysis Of Genes Involved In Siderophores Biosynthesis In Pseudomonas Putida D15 And E19
13. Primary Study Of The Tow-Component System ColR-ColS In Pseudomonas Putida CD2
14. Studies On Expression And Conditions Of Trehalose Synthase Genes From Pseudomonas Putida S1 In E.coli
15. Construction Of Vectors For Protein Expression In Pseudomonas Sp. And Cell Surface Display Of Metallothionein
16. Functional Analysis Of A Hydroxyquinol 1,2-Dioxgenase Gene Involved In Catabolism Of P-Nitrophenol By Pseudomonas Putida Strain DLL-E4
17. Organic Solvent Tolerance Mechanisms Of Pseudomonas Putida Idaho
18. The Effect Of Glutamine Synthetase For Biofilm Formation In Escherichia Coli And Pseudomonas Putida
19. Study Of Mechanism Of Bacterial Ozonation By Fluorescent Proteins As Visible Markers
20. Structural And Functional Studies Of Imidase From Pseudomonas Putida YZ-26
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