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Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel
Immobilized bacterial cells are presently widely used in the development of bacterial preparations for the bioremediation of contaminated environmental objects. Oil hydrocarbons are among the most abundant pollutants. We have previously described a new biocomposite material containing hydrocarbon-ox...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10220949/ https://www.ncbi.nlm.nih.gov/pubmed/37317107 http://dx.doi.org/10.3390/microorganisms11051133 |
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author | Nikolaev, Yury A. Demkina, Elena V. Ilicheva, Ekaterina A. Kanapatskiy, Timur A. Borzenkov, Igor A. Ivanova, Anna E. Tikhonova, Ekaterina N. Sokolova, Diyana S. Ruzhitsky, Alexander O. El-Registan, Galina I. |
author_facet | Nikolaev, Yury A. Demkina, Elena V. Ilicheva, Ekaterina A. Kanapatskiy, Timur A. Borzenkov, Igor A. Ivanova, Anna E. Tikhonova, Ekaterina N. Sokolova, Diyana S. Ruzhitsky, Alexander O. El-Registan, Galina I. |
author_sort | Nikolaev, Yury A. |
collection | PubMed |
description | Immobilized bacterial cells are presently widely used in the development of bacterial preparations for the bioremediation of contaminated environmental objects. Oil hydrocarbons are among the most abundant pollutants. We have previously described a new biocomposite material containing hydrocarbon-oxidizing bacteria (HOB) embedded in silanol-humate gels (SHG) based on humates and aminopropyltriethoxysilane (APTES); high viable cell titer was maintained in this material for at least 12 months. The goal of the work was to describe the ways of long-term HOB survival in SHG and the relevant morphotypes using the techniques of microbiology, instrumental analytical chemistry and biochemistry, and electron microscopy. Bacteria surviving in SHG were characterized by: (1) capacity for rapid reactivation (growth and hydrocarbon oxidation) in fresh medium; (2) ability to synthesize surface-active compounds, which was not observed in the cultures stored without SHG); (3) elevated stress resistance (ability to grow at high Cu(2+) and NaCl concentrations); (4) physiological heterogeneity of the populations, which contained the stationary hypometabolic cells, cystlike anabiotic dormant forms (DF), and ultrasmall cells; (5) occurrence of piles in many cells, which were probably used to exchange genetic material; (6) modification of the phase variants spectrum in the population growing after long-term storage in SHG; and (7) oxidation of ethanol and acetate by HOB populations stored in SHG. The combination of the physiological and cytomorphological properties of the cells surviving in SHG for long periods may indicate a new type of long-term bacterial survival, i.e., in a hypometabolic state. |
format | Online Article Text |
id | pubmed-10220949 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-102209492023-05-28 Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel Nikolaev, Yury A. Demkina, Elena V. Ilicheva, Ekaterina A. Kanapatskiy, Timur A. Borzenkov, Igor A. Ivanova, Anna E. Tikhonova, Ekaterina N. Sokolova, Diyana S. Ruzhitsky, Alexander O. El-Registan, Galina I. Microorganisms Article Immobilized bacterial cells are presently widely used in the development of bacterial preparations for the bioremediation of contaminated environmental objects. Oil hydrocarbons are among the most abundant pollutants. We have previously described a new biocomposite material containing hydrocarbon-oxidizing bacteria (HOB) embedded in silanol-humate gels (SHG) based on humates and aminopropyltriethoxysilane (APTES); high viable cell titer was maintained in this material for at least 12 months. The goal of the work was to describe the ways of long-term HOB survival in SHG and the relevant morphotypes using the techniques of microbiology, instrumental analytical chemistry and biochemistry, and electron microscopy. Bacteria surviving in SHG were characterized by: (1) capacity for rapid reactivation (growth and hydrocarbon oxidation) in fresh medium; (2) ability to synthesize surface-active compounds, which was not observed in the cultures stored without SHG); (3) elevated stress resistance (ability to grow at high Cu(2+) and NaCl concentrations); (4) physiological heterogeneity of the populations, which contained the stationary hypometabolic cells, cystlike anabiotic dormant forms (DF), and ultrasmall cells; (5) occurrence of piles in many cells, which were probably used to exchange genetic material; (6) modification of the phase variants spectrum in the population growing after long-term storage in SHG; and (7) oxidation of ethanol and acetate by HOB populations stored in SHG. The combination of the physiological and cytomorphological properties of the cells surviving in SHG for long periods may indicate a new type of long-term bacterial survival, i.e., in a hypometabolic state. MDPI 2023-04-27 /pmc/articles/PMC10220949/ /pubmed/37317107 http://dx.doi.org/10.3390/microorganisms11051133 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Nikolaev, Yury A. Demkina, Elena V. Ilicheva, Ekaterina A. Kanapatskiy, Timur A. Borzenkov, Igor A. Ivanova, Anna E. Tikhonova, Ekaterina N. Sokolova, Diyana S. Ruzhitsky, Alexander O. El-Registan, Galina I. Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel |
title | Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel |
title_full | Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel |
title_fullStr | Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel |
title_full_unstemmed | Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel |
title_short | Ways of Long-Term Survival of Hydrocarbon-Oxidizing Bacteria in a New Biocomposite Material—Silanol-Humate Gel |
title_sort | ways of long-term survival of hydrocarbon-oxidizing bacteria in a new biocomposite material—silanol-humate gel |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10220949/ https://www.ncbi.nlm.nih.gov/pubmed/37317107 http://dx.doi.org/10.3390/microorganisms11051133 |
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