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- W3018331907 endingPage "138956" @default.
- W3018331907 startingPage "138956" @default.
- W3018331907 abstract "To handle the impact of habitat transformations, the microbial cells developed mechanisms aimed at adjustment of their biological processes in response to signals indicating environmental changes. One of the first changes in their properties is observed on their surface, which has direct contact with the dynamically varying surroundings. In this study, we present results of changes in the cell surface properties which may have a decisive impact on the xenobiotics' bioavailability and microbial cell survival. These changes influence their ability to remove xenobiotics by accelerating and empowering this process. Moreover, the application of microorganisms exposed for long-term to hydrocarbons in bioremediation processes might have positive impact on biodegradation of the latter in the natural environment as well as natural microbial community diversity. This study demonstrates a variety of microbial cell mechanisms of adaptation to long-term exposure to hydrocarbons and their potential as the bioremediation tools." @default.
- W3018331907 created "2020-05-01" @default.
- W3018331907 creator A5037861801 @default.
- W3018331907 creator A5054430318 @default.
- W3018331907 creator A5056004521 @default.
- W3018331907 date "2020-08-01" @default.
- W3018331907 modified "2023-09-27" @default.
- W3018331907 title "Multilevel changes in bacterial properties on long-term exposure to hydrocarbons and impact of these cells on fresh-water communities" @default.
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- W3018331907 doi "https://doi.org/10.1016/j.scitotenv.2020.138956" @default.
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