Characterization of a novel Pseudomonas sp. that mineralizes high concentrations of pentachlorophenol

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Abstract

A pentachlorophenol (PCP)-mineralizing bacterium was isolated from polluted soil and identified as Pseudomonas sp. strain RA2. In batch cultures, Pseudomonas sp. strain RA2 used PCP as its sole source of carbon and energy and was capable of completely degrading this compound as indicated by radiotracer studies, stoichiometric release of chloride, and biomass formation. Pseudomonas sp. strain RA2 was able to mineralize a higher concentration of PCP (160 mg liter-1) than any previously reported PCP- degrading pseudomonad. At a PCP concentration of 200 mg liter-1, cell growth was completely inhibited and PCP was not degraded, although an active population of Pseudomonas sp. RA2 was still present in these cultures after 2 weeks. The inhibitory effect of PCP was partially attributable to its effect on the growth rate of Pseudomonas sp. strain RA2. The highest specific growth rate (μ = 0.09 h-1) was reached at a PCP concentration of 40 mg liter-1 but decreased at higher or lower PCP concentrations, with the lowest μ (0.05 h-1) occurring at 150 mg liter-1. Despite this reduction in growth rate, total biomass production was proportional to PCP concentration at all PCP concentrations degraded by Pseudomonas sp. RA2. In contrast, final cell density was reduced to below expected values at PCP concentrations greater than 100 mg liter-1. These results indicate that, in addition to its effect as an uncoupler of oxidative phosphorylation, PCP may also inhibit cell division in Pseudomonas sp. strain RA2. PCP and glucose were simultaneously mineralized by Pseudomonas sp. strain RA2, but glucose had no effect on the rate of PCP mineralization. PCP, on the other hand, significantly enhanced the metabolism of glucose by Pseudomonas sp. strain RA2.

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Radehaus, P. M., & Schmidt, S. K. (1992). Characterization of a novel Pseudomonas sp. that mineralizes high concentrations of pentachlorophenol. Applied and Environmental Microbiology, 58(9), 2879–2885. https://doi.org/10.1128/aem.58.9.2879-2885.1992

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