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Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH
The aim of this study was to elucidate the role, the space distribution and the relationships of the bacteria from the genus Pseudomonas in a biofilm community during semi-continuous Amaranth decolourization process in model sand biofilters. The examined parameters of the process were as follows: te...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Taylor & Francis
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4433951/ https://www.ncbi.nlm.nih.gov/pubmed/26019551 http://dx.doi.org/10.1080/13102818.2014.947725 |
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author | Belouhova, Mihaela Schneider, Irina Chakarov, Stoyan Ivanova, Iliana Topalova, Yana |
author_facet | Belouhova, Mihaela Schneider, Irina Chakarov, Stoyan Ivanova, Iliana Topalova, Yana |
author_sort | Belouhova, Mihaela |
collection | PubMed |
description | The aim of this study was to elucidate the role, the space distribution and the relationships of the bacteria from the genus Pseudomonas in a biofilm community during semi-continuous Amaranth decolourization process in model sand biofilters. The examined parameters of the process were as follows: technological parameters; key enzyme activities (azoreductase, succinate dehydrogenase, catechol-1,2-dioxygenase, catechol-2,3-dioxygenase); the number of azo-degrading bacteria and the bacteria from genus Pseudomonas (plate count technique); the amount and the location of Pseudomonas sp. using fluorescent in situ hybridization (FISH). The results showed that the increase of the Amaranth removal rate with 120% was accompanied with increase of the enzyme activities of the biofilm (azoreductase activity – with 25.90% and succinate dehydrogenase – with 10.61%). The enzyme assays showed absence of activity for сatechol-1,2-dioxygenase and catechol-2,3-dioxygenase at the early phase and high activities of the same oxygenases at the late phase (2.76 and 1.74 μmol/min mg protein, respectively). In the beginning of the process (0–191 h), the number of the culturable microorganisms from genus Pseudomonas was increased with 48.76% but at the late phase (191–455 h) they were decreased with 15.25% while the quantity of the non-culturable bacteria from this genus with synergetic relationships was increased with 23.26%. The dominant microbial factors were identified in the structure of the biofilm during the azo-degradation process by using FISH analysis. Furthermore, the inner mechanisms for increase of the rate and the range of the detoxification were revealed during the complex wastewater treatment processes. |
format | Online Article Text |
id | pubmed-4433951 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Taylor & Francis |
record_format | MEDLINE/PubMed |
spelling | pubmed-44339512015-05-25 Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH Belouhova, Mihaela Schneider, Irina Chakarov, Stoyan Ivanova, Iliana Topalova, Yana Biotechnol Biotechnol Equip Article; Agriculture and Environmental Biotechnology The aim of this study was to elucidate the role, the space distribution and the relationships of the bacteria from the genus Pseudomonas in a biofilm community during semi-continuous Amaranth decolourization process in model sand biofilters. The examined parameters of the process were as follows: technological parameters; key enzyme activities (azoreductase, succinate dehydrogenase, catechol-1,2-dioxygenase, catechol-2,3-dioxygenase); the number of azo-degrading bacteria and the bacteria from genus Pseudomonas (plate count technique); the amount and the location of Pseudomonas sp. using fluorescent in situ hybridization (FISH). The results showed that the increase of the Amaranth removal rate with 120% was accompanied with increase of the enzyme activities of the biofilm (azoreductase activity – with 25.90% and succinate dehydrogenase – with 10.61%). The enzyme assays showed absence of activity for сatechol-1,2-dioxygenase and catechol-2,3-dioxygenase at the early phase and high activities of the same oxygenases at the late phase (2.76 and 1.74 μmol/min mg protein, respectively). In the beginning of the process (0–191 h), the number of the culturable microorganisms from genus Pseudomonas was increased with 48.76% but at the late phase (191–455 h) they were decreased with 15.25% while the quantity of the non-culturable bacteria from this genus with synergetic relationships was increased with 23.26%. The dominant microbial factors were identified in the structure of the biofilm during the azo-degradation process by using FISH analysis. Furthermore, the inner mechanisms for increase of the rate and the range of the detoxification were revealed during the complex wastewater treatment processes. Taylor & Francis 2014-07-04 2014-10-21 /pmc/articles/PMC4433951/ /pubmed/26019551 http://dx.doi.org/10.1080/13102818.2014.947725 Text en © 2014 The Author(s). Published by Taylor & Francis. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/3.0/, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted. |
spellingShingle | Article; Agriculture and Environmental Biotechnology Belouhova, Mihaela Schneider, Irina Chakarov, Stoyan Ivanova, Iliana Topalova, Yana Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH |
title | Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH |
title_full | Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH |
title_fullStr | Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH |
title_full_unstemmed | Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH |
title_short | Microbial community development of biofilm in Amaranth decolourization technology analysed by FISH |
title_sort | microbial community development of biofilm in amaranth decolourization technology analysed by fish |
topic | Article; Agriculture and Environmental Biotechnology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4433951/ https://www.ncbi.nlm.nih.gov/pubmed/26019551 http://dx.doi.org/10.1080/13102818.2014.947725 |
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