首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Optimizing the Management of Cadmium Bioremediation Capacity of Metal-Resistant Pseudomonas sp. Strain Al-Dhabi-126 Isolated from the Industrial City of Saudi Arabian Environment
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Optimizing the Management of Cadmium Bioremediation Capacity of Metal-Resistant Pseudomonas sp. Strain Al-Dhabi-126 Isolated from the Industrial City of Saudi Arabian Environment

机译:优化抗金属假单胞菌对镉的生物修复能力管理。 Al-Dhabi-126菌株与沙特阿拉伯环境的工业城市隔离

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摘要

In this study, 23 bacterial strains were isolated from a Cadmium (Cd) contaminated soil in the industrial city, Riyadh of Saudi Arabia. Among these isolates six strains were found to withstand cadmium contamination and grow well. From the six isolates sp. strain Al-Dhabi-122–127 were found to resist cadmium toxicity to a higher level. The isolates were subjected to biochemical and 16S rDNA gene sequence characterization to confirm their identification. The bacterial strain Al-Dhabi-124 showed 1.5 times higher Cd-degrading activity than Al-Dhabi-122 and Al-Dhabi-123, and Al-Dhabi-126 exhibited 3.5 times higher Cd-degrading activity, higher than the other strains. An atomic absorption spectrophotometer study showed that the strain Al-Dhabi-126 absorbed Cd, and that the bacterial strain Al-Dhabi-126 was found to tolerate cadmium level up to 2100 µg/mL. The bacterial strain Al-Dhabi-126 showed a maximum Cd removal efficacy at pH between 6.0 and 8.0. The efficacy decreased sharply after an increase in pH (9.0). An optimum temperature of 50 °C and pH 6.0 were found to be effective for the Cd removal process by the isolate. The study indicated that the bacterial strain Al-Dhabi-126 can be used effectively for the bioremediation of heavy metals like cadmium, a major toxic pollutant in industrial effluents.
机译:在这项研究中,从沙特阿拉伯利雅得工业城市的镉(Cd)污染土壤中分离出23种细菌菌株。在这些分离株中,发现有6株能抵抗镉污染并生长良好。从六个分离物sp。发现Al-Dhabi-122-127菌株可抵抗较高的镉毒性。对分离物进行生化和16S rDNA基因序列表征,以确认其鉴定。细菌菌株Al-Dhabi-124的Cd降解活性比Al-Dhabi-122和Al-Dhabi-123高1.5倍,而Al-Dhabi-126的Cd降解活性则比其他菌株高3.5倍。原子吸收分光光度计的研究表明,菌株Al-Dhabi-126吸收了Cd,并且发现细菌菌株Al-Dhabi-126能够耐受高达2100 µg / mL的镉。细菌菌株Al-Dhabi-126在pH值介于6.0和8.0之间显示出最大的Cd去除效果。 pH值升高(9.0)后,功效急剧下降。发现最适温度为50°C,pH为6.0,对于分离物对Cd的去除过程有效。研究表明,细菌菌株Al-Dhabi-126可以有效地用于重金属如镉的生物修复,镉是工业废水中的一种主要有毒污染物。

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