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Biosorption of heavy metals by Pseudomonas species isolated from sugar industry

机译:从制糖业分离出的假单胞菌对重金属的生物吸附

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摘要

Heavy metal-resistant bacteria can be efficient bioremediators of metals and may provide an alternative or additional method to conventional methods of metal removal. In this study, 10 bacterial isolates were isolated from soil samples of a sugar industry, located at Peshawar, Pakistan. Morphological, physiological, and biochemical characteristics of these isolates were observed. Sequence analysis (16S ribosomal RNA) revealed that isolated strains were closely related to the species belonging to the genera Pseudomonas, Arthrobacter, Exiguobacterium, Citrobacter, and Enterobacter. Bacterial isolates were resistant with a minimum inhibitory concentration (500-900 ppm) to lead ion (Pb2+), (500-600 ppm) nickel ion (Ni2+), (500-800 ppm) copper ion (Cu2+), and (600-800 ppm) chromium ion (Cr3+) in solid media. Furthermore, biosorption of metals proved considerable removal of heavy metals by isolated metal-resistant strains. Pseudomonas sp. reduced 37% (Pb2+), 32% (Ni2+), 29% (Cu2+), and 32% (Cr3+) and was thus found to be most effective, whereas Enterobacter sp. reduced 19% (Pb2+), 7% (Ni2+), 14% (Cu2+), and 21% (Cr3+) and was found to be least effective. While average reduction of Pb2+, Ni2+, Cu2+, and Cr3+ by Citrobacter sp. was found to be 24%, 18%, 23%, and 27%, respectively, among recognized species. This study revealed that Pseudomonas sp. may provide a new microbial community that can be used for enhanced remediation of contaminated environment.
机译:耐重金属的细菌可以是有效的金属生物修复剂,并且可以提供常规金属去除方法的替代方法或其他方法。在这项研究中,从位于巴基斯坦白沙瓦的制糖业的土壤样品中分离出10种细菌。观察到这些分离物的形态,生理和生化特征。序列分析(16S核糖体RNA)显示,分离出的菌株与假单胞菌属,节杆菌属,Exiguo细菌属,柠檬酸杆菌属和肠杆菌属的物种密切相关。细菌分离物对铅离子(Pb2 +),(500-600 ppm)镍离子(Ni2 +),(500-800 ppm)铜离子(Cu2 +)和(600-固态介质中的800 ppm)铬离子(Cr3 +)。此外,金属的生物吸附证明了通过隔离的抗金属菌株可大量去除重金属。假单胞菌降低了37%(Pb2 +),32%(Ni2 +),29%(Cu2 +)和32%(Cr3 +)的含量,因此被发现是最有效的,而肠杆菌sp。还原19%(Pb2 +),7%(Ni2 +),14%(Cu2 +)和21%(Cr3 +)的效果最差。而柠檬酸杆菌可平均还原Pb2 +,Ni2 +,Cu2 +和Cr3 +。在公认的物种中,被发现的比例分别为24%,18%,23%和27%。这项研究表明,假单胞菌属。可能会提供一个新的微生物群落,可用于加强对污染环境的修复。

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