不同微生物菌株对重金属的抗性及积累研究进展

Madhuri Girdhar, Zeba Tabassum, K. Singh, Aarthi R. Mohan
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引用次数: 4

摘要

重金属在地壳中积聚,造成严重污染。环境中高浓度重金属的积累可引起各种危害健康的人类疾病和严重的生态问题。汞、砷、铅、银、镉、铬等是一些重金属,即使浓度很低也对生物体有害。由于工业化、城市化、采矿、火山喷发、岩石风化等原因,重金属污染日益严重。不同的微生物菌株已经发展出非常有效和独特的机制,以生态友好的技术在污染场地耐受重金属。重金属是指密度大于5克/立方厘米的一组金属。微生物普遍存在于重金属污染场所,它们发展出依赖或独立代谢的新策略来应对重金属的不利影响。细菌,藻类,真菌,蓝藻用于生物修复技术,并作为生物吸附剂。利用微生物菌株从污染场地去除重金属是一种更便宜的选择。参与生物修复的主要物种包括肠杆菌和假单胞菌,以及细菌中的一些芽孢杆菌。曲霉和盘尼西林种用于真菌对重金属的抗性。各种褐藻和蓝藻在藻类中表现出抗性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review on the Resistance and Accumulation of Heavy Metals by Different Microbial Strains
Heavy metals accumulated the earth crust and causes extreme pollution. Accumulation of rich concentrations of heavy metals in environments can cause various human diseases which risks health and high ecological issues. Mercury, arsenic, lead, silver, cadmium, chromium, etc. are some heavy metals harmful to organisms at even very low concentration. Heavy metal pollution is increasing day by day due to industrialization, urbanization, mining, volcanic eruptions, weathering of rocks, etc. Different microbial strains have developed very efficient and unique mechanisms for tolerating heavy metals in polluted sites with eco-friendly techniques. Heavy metals are group of metals with density more than 5 g/cm3. Microorganisms are generally present in contaminated sites of heavy metals and they develop new strategies which are metabolism dependent or independent to tackle with the adverse effects of heavy metals. Bacteria, Algae, Fungi, Cyanobacteria uses in bioremediation technique and acts a biosorbent. Removal of heavy metal from contaminated sites using microbial strains is cheaper alternative. Mostly species involved in bioremediation include Enterobacter and Pseudomonas species and some of bacillus species too in bacteria. Aspergillus and Penicillin species used in heavy metal resistance in fungi. Various species of the brown algae and Cyanobacteria shows resistance in algae.
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