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Bioremediation of Explosive TNT by Trichoderma viride

Nitroaromatic and nitroamine compounds such as 2,4,6-trinitrotoluene (TNT) are teratogenic, cytotoxic, and may cause cellular mutations in humans, animals, plants, and microorganisms. Microbial-based bioremediation technologies have been shown to offer several advantages against the cellular toxicit...

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Autores principales: Alothman, Zeid A., Bahkali, Ali H., Elgorban, Abdallah M., Al-Otaibi, Mohammed S., Ghfar, Ayman A., Gabr, Sami A., Wabaidur, Saikh M., Habila, Mohamed A., Ahmed, Ahmed Yacine Badjah Hadj
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144562/
https://www.ncbi.nlm.nih.gov/pubmed/32204366
http://dx.doi.org/10.3390/molecules25061393
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author Alothman, Zeid A.
Bahkali, Ali H.
Elgorban, Abdallah M.
Al-Otaibi, Mohammed S.
Ghfar, Ayman A.
Gabr, Sami A.
Wabaidur, Saikh M.
Habila, Mohamed A.
Ahmed, Ahmed Yacine Badjah Hadj
author_facet Alothman, Zeid A.
Bahkali, Ali H.
Elgorban, Abdallah M.
Al-Otaibi, Mohammed S.
Ghfar, Ayman A.
Gabr, Sami A.
Wabaidur, Saikh M.
Habila, Mohamed A.
Ahmed, Ahmed Yacine Badjah Hadj
author_sort Alothman, Zeid A.
collection PubMed
description Nitroaromatic and nitroamine compounds such as 2,4,6-trinitrotoluene (TNT) are teratogenic, cytotoxic, and may cause cellular mutations in humans, animals, plants, and microorganisms. Microbial-based bioremediation technologies have been shown to offer several advantages against the cellular toxicity of nitro-organic compounds. Thus, the current study was designed to evaluate the ability of Trichoderma viride to degrade nitrogenous explosives, such as TNT, by microbiological assay and Gas chromatography–mass spectrometry (GC–MS) analysis. In this study, T. viride fungus was shown to have the ability to decompose, and TNT explosives were used at doses of 50 and 100 ppm on the respective growth media as a nitrogenous source needed for normal growth. The GC/MS analysis confirmed the biodegradable efficiency of TNT, whereas the initial retention peak of the TNT compounds disappeared, and another two peaks appeared at the retention times of 9.31 and 13.14 min. Mass spectrum analysis identified 5-(hydroxymethyl)-2-furancarboxaldehyde with the molecular formula C(6)H(6)O(3) and a molecular weight of 126 g·mol(−1) as the major compound, and 4-propyl benzaldehyde with a formula of C(10)H(12)O and a molecular weight of 148 g mol(−1) as the minor compound, both resulting from the biodegradation of TNT by T. viride. In conclusion, T. viride could be used in microbial-based bioremediation technologies as a biological agent to eradicate the toxicity of the TNT explosive. In addition, future molecular-based studies should be conducted to clearly identify the enzymes and the corresponding genes that give T. viride the ability to degrade and remediate TNT explosives. This could help in the eradication of soils contaminated with explosives or other toxic biohazards.
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spelling pubmed-71445622020-04-15 Bioremediation of Explosive TNT by Trichoderma viride Alothman, Zeid A. Bahkali, Ali H. Elgorban, Abdallah M. Al-Otaibi, Mohammed S. Ghfar, Ayman A. Gabr, Sami A. Wabaidur, Saikh M. Habila, Mohamed A. Ahmed, Ahmed Yacine Badjah Hadj Molecules Article Nitroaromatic and nitroamine compounds such as 2,4,6-trinitrotoluene (TNT) are teratogenic, cytotoxic, and may cause cellular mutations in humans, animals, plants, and microorganisms. Microbial-based bioremediation technologies have been shown to offer several advantages against the cellular toxicity of nitro-organic compounds. Thus, the current study was designed to evaluate the ability of Trichoderma viride to degrade nitrogenous explosives, such as TNT, by microbiological assay and Gas chromatography–mass spectrometry (GC–MS) analysis. In this study, T. viride fungus was shown to have the ability to decompose, and TNT explosives were used at doses of 50 and 100 ppm on the respective growth media as a nitrogenous source needed for normal growth. The GC/MS analysis confirmed the biodegradable efficiency of TNT, whereas the initial retention peak of the TNT compounds disappeared, and another two peaks appeared at the retention times of 9.31 and 13.14 min. Mass spectrum analysis identified 5-(hydroxymethyl)-2-furancarboxaldehyde with the molecular formula C(6)H(6)O(3) and a molecular weight of 126 g·mol(−1) as the major compound, and 4-propyl benzaldehyde with a formula of C(10)H(12)O and a molecular weight of 148 g mol(−1) as the minor compound, both resulting from the biodegradation of TNT by T. viride. In conclusion, T. viride could be used in microbial-based bioremediation technologies as a biological agent to eradicate the toxicity of the TNT explosive. In addition, future molecular-based studies should be conducted to clearly identify the enzymes and the corresponding genes that give T. viride the ability to degrade and remediate TNT explosives. This could help in the eradication of soils contaminated with explosives or other toxic biohazards. MDPI 2020-03-19 /pmc/articles/PMC7144562/ /pubmed/32204366 http://dx.doi.org/10.3390/molecules25061393 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Alothman, Zeid A.
Bahkali, Ali H.
Elgorban, Abdallah M.
Al-Otaibi, Mohammed S.
Ghfar, Ayman A.
Gabr, Sami A.
Wabaidur, Saikh M.
Habila, Mohamed A.
Ahmed, Ahmed Yacine Badjah Hadj
Bioremediation of Explosive TNT by Trichoderma viride
title Bioremediation of Explosive TNT by Trichoderma viride
title_full Bioremediation of Explosive TNT by Trichoderma viride
title_fullStr Bioremediation of Explosive TNT by Trichoderma viride
title_full_unstemmed Bioremediation of Explosive TNT by Trichoderma viride
title_short Bioremediation of Explosive TNT by Trichoderma viride
title_sort bioremediation of explosive tnt by trichoderma viride
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144562/
https://www.ncbi.nlm.nih.gov/pubmed/32204366
http://dx.doi.org/10.3390/molecules25061393
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