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1.
Sci Rep ; 12(1): 20527, 2022 11 28.
Article in English | MEDLINE | ID: mdl-36443410

ABSTRACT

Pollution of the environment by crude oil and oil products (represented by various types of compounds, mainly aliphatic, mono- and polyaromatic hydrocarbons) poses a global problem. The strain Pseudomonas veronii 7-41 can grow on medium-chain n-alkanes (C8-C12) and polycyclic aromatic hydrocarbons such as naphthalene. We performed a genetic analysis and physiological/biochemical characterization of strain 7-41 cultivated in a mineral medium with decane, naphthalene or a mixture of the hydrocarbons. The genes responsible for the degradation of alkanes and PAHs are on the IncP-7 conjugative plasmid and are organized into the alk and nah operons typical of pseudomonads. A natural plasmid carrying functional operons for the degradation of two different classes of hydrocarbons was first described. In monosubstrate systems, 28.4% and 68.8% of decane and naphthalene, respectively, were biodegraded by the late stationary growth phase. In a bisubstrate system, these parameters were 25.4% and 20.8% by the end of the exponential growth phase. Then the biodegradation stopped, and the bacterial culture started dying due to the accumulation of salicylate (naphthalene-degradation metabolite), which is toxic in high concentrations. The activity of the salicylate oxidation enzymes was below the detection limit. These results indicate that the presence of decane and a high concentration of salicylate lead to impairment of hydrocarbon degradation by the strain.


Subject(s)
Polycyclic Aromatic Hydrocarbons , Alkanes , Naphthalenes , Biodegradation, Environmental , Salicylates
2.
World J Microbiol Biotechnol ; 34(2): 20, 2018 Jan 04.
Article in English | MEDLINE | ID: mdl-29302805

ABSTRACT

Production of trehalolipid biosurfactants by Rhodococcus erythropolis S67 depending on the growth temperature was studied. R. erythropolis S67 produced glycolipid biosurfactants such as 2,3,4-succinoyl-octanoyl-decanoyl-2'-decanoyl trehalose and 2,3,4-succinoyl-dioctanoyl-2'-decanoyl trehalose during the growth in n-hexadecane medium at 26 and 10 °C, despite the different aggregate state of the hydrophobic substrate at low temperature. The surface tension of culture medium was found being reduced from 72 to 27 and 45 mN m-1, respectively. Production of trehalolipid biosurfactants by R. erythropolis S67 at low temperature could be useful for the biodegradation of petroleum hydrocarbons at low temperatures by enhancing the bioremediation performance in cold regions.


Subject(s)
Biodegradation, Environmental , Cold Temperature , Rhodococcus/growth & development , Rhodococcus/metabolism , Surface-Active Agents/chemistry , Surface-Active Agents/metabolism , Alkanes/metabolism , Culture Media/chemistry , DNA Gyrase/genetics , Fatty Acids/analysis , Glycolipids/chemistry , Glycolipids/metabolism , Hydrocarbons/metabolism , Petroleum/metabolism , Phylogeny , Rhodococcus/classification , Rhodococcus/genetics , Surface Tension , Surface-Active Agents/isolation & purification , Trehalose/metabolism
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