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Isolation and molecular characterization of bacteria to heavy metals isolated from soil samples in Bokaro Coal Mines, India

机译:印度博卡罗煤矿从土壤样品中分离出的重金属中细菌的分离和分子表征

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In recent years, environmental pollution by coal mining is a long-established human activity affecting all levels of life with various environmental impacts by generating heavy metals. The presence of heavy metals even in trace amount is toxic and detrimental to all living organisms. The coal mine area in Bokaro is one of the “Toxic Hotspot” in India. Bacteria have evolved uptake and efflux mechanisms to adapt in heavy metals contaminated environments and thus represent a potential source for bioremediation processes. In the present study, we isolated and characterized eight heavy metal resistant bacteria (NK-1 to 8) from soil sample in Bokaro coal mines, India. Isolates were selected based on high level of heavy metal resistance and its biochemical characterization. The following bacteria were identified based on 16S rRNA gene sequencing Enterobacter ludwigii (KM029957; NK-1), Klebsiella pneumonia (KM029958; NK-2), Enterobacter ludwigii (KM029959; NK-3), Enterobacter ludwigii (KM029960; NK-4), Klebsiella oxytoca (KM029961; NK-5), Enterobacter cloacae (KM029962; NK-6), Acinetobacter gyllenbergii (KM029963; NK-7), Enterobacter cloacae (KM029964; NK-8). A high degree of metal resistance associated with multiple antibiotic resistances was also detected in the selected isolate which was confirmed by the presence of plasmid. These isolates can further be used for bioremediation of heavy metals from contaminated site.
机译:近年来,煤矿开采对环境的污染是一项长期存在的人类活动,它通过产生重金属来影响所有生活水平,并产生各种环境影响。重金属的存在甚至对微量都有害,并且对所有活生物体都是有害的。博卡罗的煤矿区是印度的“有毒热点”之一。细菌已经发展了吸收和外排机制,以适应重金属污染的环境,因此代表了生物修复过程的潜在来源。在本研究中,我们从印度Bokaro煤矿的土壤样品中分离并鉴定了8种抗重金属细菌(NK-1至8)。根据高水平的重金属抗性及其生化特征选择分离株。根据16S rRNA基因测序鉴定出以下细菌:路德维氏肠杆菌(KM029957; NK-1),肺炎克雷伯菌(KM029958; NK-2),路德维氏肠杆菌(KM029959; NK-3),路德维氏肠杆菌(KM029960; NK-4) ,产酸克雷伯菌(KM029961; NK-5),阴沟肠杆菌(KM029962; NK-6),吉氏不动杆菌(KM029963; NK-7),阴沟肠杆菌(KM029964; NK-8)。在所选分离物中还检测到与多种抗生素抗性相关的高度金属抗性,这通过质粒的存在得以证实。这些分离株可进一步用于污染部位重金属的生物修复。

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