未经处理的工业废水灌溉土壤中分离细菌的耐镉性和生物修复潜力。

R. Ahmad, Muhammad A.U. Hassan, M. Yasin, Vishandas Suthor
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引用次数: 0

摘要

本研究旨在研究从城市污水灌溉土壤中分离的细菌对镉的耐受性。分离了30株细菌,并在不同Cd+浓度的营养琼脂板上生长,对其Cd+耐受性进行了筛选。其中4种细菌(GS2、GS5、GS10和GS20)具有高Cd耐受性(600 ppm Cd)。Cd+的最小抑制浓度为200 ppm。菌株在30℃、pH 7.5 ~ 8.5条件下生长最佳。生长曲线研究对不同浓度的Cd (0 - 600 ppm)透露,GS2是更加宽容所选菌株只显示增长64%相比减少33% GS10和GS20 GS5和77%的600 ppm Cd。与Cd宽容的细菌接种玉米种子根伸长了增加到1.7折根伸长(没有Cd)和1.5折(50 ppm Cd)的存在而un-inoculated植物。研究结果表明,该菌株具有较强的耐Cd性和促生长活性,可作为金属污染土壤和废水生物修复的潜在候选菌株。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cadmium tolerance and bioremediation potential of bacteria isolated from soils irrigated with untreated industrial effluent.
The present study was aimed to investigate the Cd tolerance of bacteria isolated from municipal effluent irrigated soils. Thirty bacterial strains were isolated and screened for their Cd+ tolerance by growing on nutrient agar plates amended with varying amount of Cd+. Out of them four bacteria (GS2, GS5, GS10 and GS20) were found highly Cd tolerant (600 ppm Cd). The minimum inhibitory concentration of Cd+ was found 200 ppm. The isolates showed optimum growth at 30 °C and pH 7.5-8.5. Growth curve study against different concentrations of Cd (0-600 ppm) revealed that GS2 was more tolerant among selected strains showing only 33% reduction in growth compared to 64% by GS5 and 77% by both GS10 and GS20 at 600 ppm Cd. Inoculation of maize seeds with Cd tolerant bacteria for root elongation demonstrated up to 1.7 fold increase in root elongation (in the absence of Cd) and up to 1.5 fold (in the presence of 50 ppm Cd) compared to the un-inoculated plants. The results of the study revealed that the bacterial isolates exhibiting great Cd tolerance and growth promoting activity can be potential candidates for bioremediation of metal contaminated soils and wastewaters.
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