首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Bioremediation of Cadmium Contaminated Effluent by Sporosarcina luteola: A Bacterium Isolated from Soil near Wazirpur Industrial Area, New Delhi, India
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Bioremediation of Cadmium Contaminated Effluent by Sporosarcina luteola: A Bacterium Isolated from Soil near Wazirpur Industrial Area, New Delhi, India

机译:Sporosarcina Luteola的镉污染的镉的生物修复:印度新德里Wazirpur工业区附近土壤中分离的细菌

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摘要

Heavy metals pollution is emerging as a threat to ecological systems causing various problems to mankind, plants and animals. Aim of the present study was to isolate and identify cadmium tolerant bacteria from the soil of Wazirpur industrial area of New Delhi (India). The study involved physico-chemical characterization of the polluted soil which was found to contain high concentration of iron, manganese and cadmium at 352,15.3 g/kg soil and 3.16 ppm, respectively. One bacterial strain was identified as Sporosarcina luteola on the basis of morphological, biochemical and phylogeny analysis. Strain Sporosarcina luteola was highly resistant to Cd up to 5mM (mM= millimolai) when cultured in solidified nutrient agar plates and 7.2 mM in nutrient broth. Sporosarcina luteola has also showed substantial growth in presence of Co, Pb, Fe and Mn upto 2.0, 2.0, 3.5 and 4.0 mM, respectively in liquid medium. Optimum growth of identified bacteria was shown at 37 °C, 7.0 pH and it tolerated up to 3 % sodium chloride (w/v). This is reported for the first time that Sporosarcina luteola (metal-tolerant bacteria) has potential of removal of cadmium from industrially contaminated soil.
机译:重金属污染是对生态系统的威胁,导致人类,植物和动物的各种问题。本研究的目的是分离和鉴定新德里(印度)Wazirpur工业区土壤中的耐受性细菌。该研究涉及污染土壤的物理化学表征,发现发现含有高浓度的铁,锰和镉,分别为352,15.3g / kg土壤和3.16ppm。基于形态学,生化和系统发育分析,将一种细菌菌株鉴定为Sporosarcina Luteola。当在固化的营养琼脂平板和7.2mm以营养肉汤中培养时,菌株SporoSarcina花氏菌落对CD高达5mm(mm =毫米摩尔)的耐高量高。 SporoSarcina Luteola还在Co,Pb,Fe和Mn的情况下显着增长,分别在液体培养基中存在于2.0,2.0,3.5和4.0mm。所识别的细菌的最佳生长在37℃,7.0 pH下显示,可耐受3%氯化钠(W / V)。据报道,这是SporoSarcina花蝶带(金属耐受性细菌)具有从工业污染的土壤中去除镉的可能性。

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