Search Results - "Puntus, I. F."
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Development of Microbial Consortium for Bioremediation of Oil-Contaminated Soils in the Middle Ob Region
Published in Eurasian soil science (01-05-2022)“…Hydrocarbon-decomposing microorganisms identified as representatives of the genera Pseudomonas, Rhodococcus, Acinetobacter, Kocuria, Raoultella, and Candida…”
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Biosynthesis of isocitric acid by the yeast Yarrowia lipolytica and its regulation
Published in Applied biochemistry and microbiology (01-03-2015)“…We studied the biosynthesis of isocitric acid from rapeseed (canola) oil by the yeast Yarrowia lipolytica and its regulation. We determined a fundamental…”
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3
role of mineral phosphorus compounds in naphthalene biodegradation by Pseudomonas putida
Published in Applied biochemistry and microbiology (01-03-2015)“…The effect of phosphate concentration in the culture medium on the growth and naphthalene degradation by Pseudomonas putida BS 3701 was studied. The limiting…”
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Properties of non-homologous salicylate hydroxylases of pseudomonus bacteria
Published in Applied biochemistry and microbiology (01-03-2015)“…The non-homologous salicylate hydroxylases NahG and NahU of the strains Pseudomonas fluorescens 142 NF and P. putida BS3701 were extracted and purified by…”
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5
Mycobacterium sp. mutant strain producing 9α-hydroxyandrostenedione from sitosterol
Published in Applied microbiology and biotechnology (01-06-2005)“…Mycobacterium sp. VKM Ac-1815D and its derivatives with altered resistance to antibacterial agents were able to produce androst-4-ene-3,17-dione (AD) as a…”
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6
Horizontal transfer of catabolic plasmids and naphthalene biodegradation in open soil
Published in Microbiology (New York) (01-04-2010)“…The horizontal transfer of naphthalene biodegradation plasmids and the parallel process of its microbial degradation were studied for the first time. The…”
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enhanced biodegradation of crude oil by Psedomonas plasmid-bearing strains in model soil systems
Published in Applied biochemistry and microbiology (01-12-2010)“…Oil biodegradation in sterile and nonsterile model soil systems has been studied. A comparison of process efficiency using indigenous microorganisms,…”
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8
Surface activity and metabolism of hydrocarbon-degrading microorganisms growing on hexadecane and naphthalene
Published in Process biochemistry (1991) (01-07-2005)“…Screening of 45 hydrocarbon-degrading bacteria demonstrated that 75% of strains growing on hexadecane were able to produce surfactants. The studied strains…”
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Naphthalene degradation by Pseudomonas putida strains in soil model systems with arsenite
Published in Process biochemistry (1991) (30-06-2004)“…The effect of arsenite on the degradation of naphthalene, a polycyclic aromatic hydrocarbon (PAH), by P. putida strains BS202 (NPL-1) and BS238 (pBS2; pBS3031)…”
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10
The Construction and Monitoring of Genetically Tagged, Plasmid-Containing, Naphthalene-Degrading Strains in Soil
Published in Microbiology (New York) (01-07-2005)“…A genetically tagged, plasmid-containing, naphthalene-degrading strain, Pseudomonas putida KT2442(pNF142::TnMod-OTc), has been constructed. The presence of the…”
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scpA, a new salicylate hydroxylase gene localized in salicylate/caprolactam degradation plasmids
Published in Molecular biology (New York) (2013)“…Both caprolactams and salicylate biodegradation by Pseudomonas salicylate/caprolactam degraders are controlled by large conjugative plasmids (SAL/CAP). Some of…”
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Effects of Naphthalene Degradative Plasmids on the Physiological Characteristics of Rhizosphere Bacteria of the Genus Pseudomonas
Published in Applied biochemistry and microbiology (01-09-2005)“…We studied the specific growth rate, duration of the lag phase, stability of plasmids, and activities of the key enzymes involved in naphthalene biodegradation…”
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13
Phenanthrene degradation by bacteria of the genera Pseudomonas and Burkholderia in model soil systems
Published in Microbiology (New York) (01-01-2008)“…Degradation of phenanthrene by strains Pseudomona, Moscow, KMK, 2004simova, I.A. and Chernov, I.s putida BS3701 (pBS1141, pBS1142), Pseudomonas putida BS3745…”
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14
Phenanthrene degradation by bacteria of the genera Pseudomonas and Burkholderia in model soil systems
Published in Microbiology (New York) (01-02-2008)“…Degradation of phenanthrene by strains Pseudomona, Moscow, KMK, 2004simova, I.A. and Chernov, I.s putida BS3701 (pBS1141, pBS1142), Pseudomonas putida BS3745…”
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Mutant Yarrowia lipolytica strains producing citric acid from glucose
Published in Applied biochemistry and microbiology (01-03-2008)“…The possibility of obtaining mutant yeasts Yarrowia lipolytica VKM Y-2373 with increased ability to synthesize citric acid from glucose by using UV irradiation…”
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16
Mutant Yarrowia lipolytica strains producing citric acid from glucose
Published in Applied biochemistry and microbiology (01-03-2008)“…The possibility of obtaining mutant yeasts Yarrowia lipolytica VKM Y-2373 with increased ability to synthesize citric acid from glucose by using UV irradiation…”
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17
Horizontal transfer of catabolic plasmids in the process of naphthalene biodegradation in model soil systems
Published in Microbiology (New York) (01-02-2008)“…The process of naphthalene degradation by indigenous, introduced, and transconjugant strains was studied in laboratory soil microcosms. Conjugation transfer of…”
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18
Horizontal transfer of catabolic plasmids in the process of naphthalene biodegradation in model soil systems
Published in Microbiology (New York) (01-01-2008)“…The process of naphthalene degradation by indigenous, introduced, and transconjugant strains was studied in laboratory soil microcosms. Conjugation transfer of…”
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19
Production of androstenedione using mutants of Mycobacterium sp
Published in Journal of chemical technology and biotechnology (1986) (01-02-2002)“…Mycobacterium sp VKM Ac‐1815D strain was able to cleave sterol side chain giving androstenedione (AD) as a major product with a molar yield of 63–68%. Clones…”
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20
Selection and characterization of active psychrotrophic microbial oil-degrading microorganisms
Published in Applied biochemistry and microbiology (01-05-2006)“…The ability of 96 microbial strains degrading oil and 32 strains degrading polycyclic aromatic hydrocarbons (PAHs) to consume diesel fuel and oil at 4-6 and…”
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