Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability

The presence of both heavy metals and organic xenobiotic pollutants in a contaminated site justifies the application of either a multitude of microbial degraders or microorganisms having the capacity to detoxify a number of pollutants at the same time. Molybdenum is an essential heavy metal that is...

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Main Authors: Yakasai, Mohd Hafeez, Abdul Rahman, Mohd Fadhil, Abdul Rahim, Mohd Badrin Hanizam, Khayat, Mohd Ezuan, Shamaan, Nor Aripin, Abd. Shukor, Mohd. Yunus
Format: Article
Language:English
Published: Hibiscus Publisher 2017
Online Access:http://psasir.upm.edu.my/id/eprint/64011/1/Isolation%20and%20characterization%20of%20a%20metal-reducing%20Pseudomonas%20sp.%20strain%20135%20with%20amide-degrading%20capability.pdf
http://psasir.upm.edu.my/id/eprint/64011/
https://journal.hibiscuspublisher.com/index.php/BSTR/article/view/361
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spelling my.upm.eprints.640112018-06-08T00:52:12Z http://psasir.upm.edu.my/id/eprint/64011/ Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability Yakasai, Mohd Hafeez Abdul Rahman, Mohd Fadhil Abdul Rahim, Mohd Badrin Hanizam Khayat, Mohd Ezuan Shamaan, Nor Aripin Abd. Shukor, Mohd. Yunus The presence of both heavy metals and organic xenobiotic pollutants in a contaminated site justifies the application of either a multitude of microbial degraders or microorganisms having the capacity to detoxify a number of pollutants at the same time. Molybdenum is an essential heavy metal that is toxic to ruminants at a high level. Ruminants such as cow and goats experience severe hypocuprosis leading to scouring and death at a concentration as low as several parts per million. In this study, a molybdenum-reducing bacterium with amide-degrading capacity has been isolated from contaminated soils. The bacterium, using glucose as the best electron donor reduces molybdenum in the form of sodium molybdate to molybdenum blue. The maximal pH reduction occurs between 6.0 and 6.3, and the bacterium showed an excellent reduction in temperatures between 25 and 40 oC. The reduction was maximal at molybdate concentrations of between 15 and 25 mM. Molybdenum reduction incidentally was inhibited by several toxic heavy metals. Other carbon sources including toxic xenobiotics such as amides were screened for their ability to support molybdate reduction. Of all the amides, only acrylamide can support molybdenum reduction. The other amides; such as acetamide and propionamide can support growth. Analysis using phylogenetic analysis resulted in a tentative identification of the bacterium as Pseudomonas sp. strain 135. This bacterium is essential in remediating sites contaminated with molybdenum, especially in agricultural soil co-contaminated with acrylamide, a known soil stabilizer. Hibiscus Publisher 2017 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/64011/1/Isolation%20and%20characterization%20of%20a%20metal-reducing%20Pseudomonas%20sp.%20strain%20135%20with%20amide-degrading%20capability.pdf Yakasai, Mohd Hafeez and Abdul Rahman, Mohd Fadhil and Abdul Rahim, Mohd Badrin Hanizam and Khayat, Mohd Ezuan and Shamaan, Nor Aripin and Abd. Shukor, Mohd. Yunus (2017) Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability. Bioremediation Science and Technology Research, 5 (2). pp. 32-38. ISSN 2289-5892 https://journal.hibiscuspublisher.com/index.php/BSTR/article/view/361
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description The presence of both heavy metals and organic xenobiotic pollutants in a contaminated site justifies the application of either a multitude of microbial degraders or microorganisms having the capacity to detoxify a number of pollutants at the same time. Molybdenum is an essential heavy metal that is toxic to ruminants at a high level. Ruminants such as cow and goats experience severe hypocuprosis leading to scouring and death at a concentration as low as several parts per million. In this study, a molybdenum-reducing bacterium with amide-degrading capacity has been isolated from contaminated soils. The bacterium, using glucose as the best electron donor reduces molybdenum in the form of sodium molybdate to molybdenum blue. The maximal pH reduction occurs between 6.0 and 6.3, and the bacterium showed an excellent reduction in temperatures between 25 and 40 oC. The reduction was maximal at molybdate concentrations of between 15 and 25 mM. Molybdenum reduction incidentally was inhibited by several toxic heavy metals. Other carbon sources including toxic xenobiotics such as amides were screened for their ability to support molybdate reduction. Of all the amides, only acrylamide can support molybdenum reduction. The other amides; such as acetamide and propionamide can support growth. Analysis using phylogenetic analysis resulted in a tentative identification of the bacterium as Pseudomonas sp. strain 135. This bacterium is essential in remediating sites contaminated with molybdenum, especially in agricultural soil co-contaminated with acrylamide, a known soil stabilizer.
format Article
author Yakasai, Mohd Hafeez
Abdul Rahman, Mohd Fadhil
Abdul Rahim, Mohd Badrin Hanizam
Khayat, Mohd Ezuan
Shamaan, Nor Aripin
Abd. Shukor, Mohd. Yunus
spellingShingle Yakasai, Mohd Hafeez
Abdul Rahman, Mohd Fadhil
Abdul Rahim, Mohd Badrin Hanizam
Khayat, Mohd Ezuan
Shamaan, Nor Aripin
Abd. Shukor, Mohd. Yunus
Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability
author_facet Yakasai, Mohd Hafeez
Abdul Rahman, Mohd Fadhil
Abdul Rahim, Mohd Badrin Hanizam
Khayat, Mohd Ezuan
Shamaan, Nor Aripin
Abd. Shukor, Mohd. Yunus
author_sort Yakasai, Mohd Hafeez
title Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability
title_short Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability
title_full Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability
title_fullStr Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability
title_full_unstemmed Isolation and characterization of a metal-reducing Pseudomonas sp. strain 135 with amide-degrading capability
title_sort isolation and characterization of a metal-reducing pseudomonas sp. strain 135 with amide-degrading capability
publisher Hibiscus Publisher
publishDate 2017
url http://psasir.upm.edu.my/id/eprint/64011/1/Isolation%20and%20characterization%20of%20a%20metal-reducing%20Pseudomonas%20sp.%20strain%20135%20with%20amide-degrading%20capability.pdf
http://psasir.upm.edu.my/id/eprint/64011/
https://journal.hibiscuspublisher.com/index.php/BSTR/article/view/361
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score 13.211869