In middle Gangetic plain, high arsenic concentration is present in water, which causes a significant health risk. Total 48 morphologically distinct arsenite resistant bacteria were isolated from middle Gangetic plain. The minimum inhibitory concentration (MIC) values of arsenite varied widely in the range 1–15 mM of the isolates. On the basis of their MIC, two isolates, AK1 (KY569423) and AK9 (KY569424) were selected. The analysis of the 16S rRNA gene sequence of selected isolates revealed that they are belong to the genus Pseudomonas. The AgNO3 test based microplate method revealed that isolates, AK1 and AK9, have potential in transformation of arsenic species. Further, the presence of aoxR, aoxB and aoxC genes in the both isolated strain ...
Aims: To analyse the arsenic-resistant bacterial communities of two agricultural soils of Banglade...
The present study proposed the isolation of arsenic resistant bacteria from wastewater. Only three b...
Abstract Background Microorganisms specifically bacteria play a crucial role in arsenic mobilization...
Heavy metals are responsible to create toxicity in environment and these causes serious challenge wo...
The arsenic (As) comprehensiveness in nature has aggravated the expansion of arsenic fortification a...
AbstractGround water arsenic contamination is a widespread problem in many developing countries incl...
251-261Arsenic contamination in drinking ground water has reached an alarming situation in parts of ...
Ground water arsenic contamination is a widespread problem in many developing countries including Ba...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
The present study proposed the isolation of arsenic resistant bacteria from wastewater. Only three b...
The soil and groundwater of the Bhagobangola I block of Murshidabad district, West Bengal, India is ...
The disposal of toxic heavy metals such as arsenic posed high risk to the environment. Arsenite [As(...
Aims: To analyse the arsenic-resistant bacterial communities of two agricultural soils of Banglade...
The present study proposed the isolation of arsenic resistant bacteria from wastewater. Only three b...
Abstract Background Microorganisms specifically bacteria play a crucial role in arsenic mobilization...
Heavy metals are responsible to create toxicity in environment and these causes serious challenge wo...
The arsenic (As) comprehensiveness in nature has aggravated the expansion of arsenic fortification a...
AbstractGround water arsenic contamination is a widespread problem in many developing countries incl...
251-261Arsenic contamination in drinking ground water has reached an alarming situation in parts of ...
Ground water arsenic contamination is a widespread problem in many developing countries including Ba...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
Arsenic is a toxic metalloid existing everywhere in the nature. It is toxic to most organisms and co...
The present study proposed the isolation of arsenic resistant bacteria from wastewater. Only three b...
The soil and groundwater of the Bhagobangola I block of Murshidabad district, West Bengal, India is ...
The disposal of toxic heavy metals such as arsenic posed high risk to the environment. Arsenite [As(...
Aims: To analyse the arsenic-resistant bacterial communities of two agricultural soils of Banglade...
The present study proposed the isolation of arsenic resistant bacteria from wastewater. Only three b...
Abstract Background Microorganisms specifically bacteria play a crucial role in arsenic mobilization...