Cytochrome c Oxidation by the Electron Transport Fraction of Azotobacter vinelandii [PDF]
Peter Jurtshuk, Lynn Old
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Azotobacter vinelandii as a Nitrogen-Negative Chassis for Bio-Oil and Bio-Wax Production of Heterologous and Native Lipids. [PDF]
Barney BM +4 more
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RIBONUCLEIC ACID POLYMERASE OF AZOTOBACTER VINELANDII, II. FORMATION OF DNA-RNA HYBRIDS WITH SINGLE-STRANDED DNA AS PRIMER [PDF]
Robert C. Warner +3 more
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Enhanced Urea Production in the Diazotroph Azotobacter vinelandii as a Means of Stable Nitrogen Biofertiliser Production. [PDF]
Barney BM, Dietz BR.
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Tailoring 3HV Fraction in Poly(3-hydroxybutyrate-<i>co</i>-3-hydroxyvalerate) by <i>Azotobacter vinelandii</i> Through Oxygen and Carbon Limitation in Continuous Cultures. [PDF]
Pérez A +4 more
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Effect of Nitrogen Gas, Irradiated with a Beta-Ray Source, on Nitrogen Fixation in Continuous Cultures of Azotobacter vinelandii. [PDF]
Bengt Zacharias +4 more
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Advances in alginate biosynthesis: regulation and production in <i>Azotobacter vinelandii</i>. [PDF]
Ponce B +4 more
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Occurrence ofAzotobacterin some soils of South Island, New Zealand [PDF]
MA Line, Margaret W. Loutit
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Insights into the genome of Azotobacter sp. strain CWF10, isolated from an agricultural field in Central India. [PDF]
Roy A +5 more
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The nitrogenase system from Azotobacter: two-enzyme requirement for N2 reduction, ATP-dependent H2 evolution, and ATP hydrolysis. [PDF]
William A. Bulen, Jack R. LeComte
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