Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran

Background and Objectives: Accumulation of toxic oxyanion of potassium tellurite, which has increased in the environment due to industrial activities, can cause complications in human, such as skin irritation, dermatitis, anorexia, tremor, nausea, vomiting, nervous system stimulation, convulsion, an...

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Published in:Majallah-i Dānishgāh-i ̒Ulūm-i Pizishkī-i Qum
Main Authors: Mohammad-Reza Zolfaghari, Mahboubeh Soleimani Sasani
Format: Article
Language:Persian
Published: Qom University of Medical Sciences 2013-04-01
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Online Access:http://journal.muq.ac.ir/article-1-132-en.html
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author Mohammad-Reza Zolfaghari
Mahboubeh Soleimani Sasani
author_facet Mohammad-Reza Zolfaghari
Mahboubeh Soleimani Sasani
author_sort Mohammad-Reza Zolfaghari
collection DOAJ
container_title Majallah-i Dānishgāh-i ̒Ulūm-i Pizishkī-i Qum
description Background and Objectives: Accumulation of toxic oxyanion of potassium tellurite, which has increased in the environment due to industrial activities, can cause complications in human, such as skin irritation, dermatitis, anorexia, tremor, nausea, vomiting, nervous system stimulation, convulsion, and respiratory arrest. The purpose of this research was to isolate tellurite-resistant bacteria, determine the minimum inhibitory concentration (MIC), and evaluate bioreduction of tellurite in strains.   Methods: MIC was measured by agar dilution method in 84 resistant strains isolated from wastewater. QWTm 6 strain with tolerance of tellurite concentration of 6684μg/ml was selected as superior strain. Toleration of this level of tellurite has not been reported yet.   Results: According to biochemical, phenotypic, and physiological characteristics, QWTm 6 was initially classified into Staphylococcus genus. Using the spectrophotometric technique and DDTC reagent (A 340nm & sodium diethyldithiocarbamate trihydrate), maximum elimination was seen in 0.4mM concentration of potassium tellurite in 24 hours. The strain showed high ability in the elimination of toxic oxyanion of potassium tellurite under a wide range of factors such as pH=(5-11), temperature (15-50 ◦ C), blender speed (50, 100, 150, and 200rpm), various oxyanion concentrations (0.04-1mM), and different percentages of NaCl (0-20%). This strain was also resistant to penicillin, cefixime, tetracycline, chloramphenicol, streptomycin, neomycin, erythromycin, gentamicin, kanamycin, norfloxacin, and ciprofloxacin.   Conclusion: The results of this study showed that QWTm 6 could be introduced in the international societies as an acceptable candidate for bioremediation, because of its high ability in removal and reduction of potassium tellurite.
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spelling doaj-art-e6c4046be4c24cb397e56047d1eaf6722025-08-19T19:36:48ZfasQom University of Medical SciencesMajallah-i Dānishgāh-i ̒Ulūm-i Pizishkī-i Qum1735-77992008-13752013-04-01711117Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, IranMohammad-Reza Zolfaghari0Mahboubeh Soleimani Sasani1 Islamic Azad University, Qom Branch Islamic Azad University, Qom Branch Background and Objectives: Accumulation of toxic oxyanion of potassium tellurite, which has increased in the environment due to industrial activities, can cause complications in human, such as skin irritation, dermatitis, anorexia, tremor, nausea, vomiting, nervous system stimulation, convulsion, and respiratory arrest. The purpose of this research was to isolate tellurite-resistant bacteria, determine the minimum inhibitory concentration (MIC), and evaluate bioreduction of tellurite in strains.   Methods: MIC was measured by agar dilution method in 84 resistant strains isolated from wastewater. QWTm 6 strain with tolerance of tellurite concentration of 6684μg/ml was selected as superior strain. Toleration of this level of tellurite has not been reported yet.   Results: According to biochemical, phenotypic, and physiological characteristics, QWTm 6 was initially classified into Staphylococcus genus. Using the spectrophotometric technique and DDTC reagent (A 340nm & sodium diethyldithiocarbamate trihydrate), maximum elimination was seen in 0.4mM concentration of potassium tellurite in 24 hours. The strain showed high ability in the elimination of toxic oxyanion of potassium tellurite under a wide range of factors such as pH=(5-11), temperature (15-50 ◦ C), blender speed (50, 100, 150, and 200rpm), various oxyanion concentrations (0.04-1mM), and different percentages of NaCl (0-20%). This strain was also resistant to penicillin, cefixime, tetracycline, chloramphenicol, streptomycin, neomycin, erythromycin, gentamicin, kanamycin, norfloxacin, and ciprofloxacin.   Conclusion: The results of this study showed that QWTm 6 could be introduced in the international societies as an acceptable candidate for bioremediation, because of its high ability in removal and reduction of potassium tellurite.http://journal.muq.ac.ir/article-1-132-en.htmloxianiontellurous acidebiodegradationenvironmental.
spellingShingle Mohammad-Reza Zolfaghari
Mahboubeh Soleimani Sasani
Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran
oxianion
tellurous acide
biodegradation
environmental.
title Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran
title_full Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran
title_fullStr Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran
title_full_unstemmed Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran
title_short Determination of Abundance of Tellurite-Resistant Bacteria and the Ability of Remove of them from Qom Province Industrial Wastewater, Qom, Iran
title_sort determination of abundance of tellurite resistant bacteria and the ability of remove of them from qom province industrial wastewater qom iran
topic oxianion
tellurous acide
biodegradation
environmental.
url http://journal.muq.ac.ir/article-1-132-en.html
work_keys_str_mv AT mohammadrezazolfaghari determinationofabundanceoftelluriteresistantbacteriaandtheabilityofremoveofthemfromqomprovinceindustrialwastewaterqomiran
AT mahboubehsoleimanisasani determinationofabundanceoftelluriteresistantbacteriaandtheabilityofremoveofthemfromqomprovinceindustrialwastewaterqomiran