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Isolation and screening of heavy metal resistant bacteria from wastewater: A study of heavy metal co-resistance and antibiotics resistance

机译:废水中重金属抗性细菌的分离与筛选:重金属共抗性和抗生素抗性的研究

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The uncontrolled discharges of wastes containing a large quantity of heavy metal create huge economical and healthcare burdens particularly for people living near that area. However, the bioremediation of metal pollutants from wastewater using metal-resistant bacteria is a very important aspect of environmental biotechnology. In this study, 13 heavy metal resistant bacteria were isolated from the wastewater of wadi El Harrach in the east of Algiers and characterized. These include zinc-, lead-, chromium- and cadmium-resistant bacteria. The metal-resistant isolates characterized include both Gram-negative(77%)and Gram-positive(23%)bacteria. The Minimum Inhibitory Concentration(MIC)of wastewater isolates against the four heavy metals was determined in solid media and ranged from 100 to 1, 500 μg/ml. All the isolates showed co-resistance to other heavy metals and antibiotic resistance of which 15% were resistant to one antibiotic and 85% were multi- and bi-antibiotics resistant. The zinc-resistant species Micrococcus luteus was the much more heavy metal resistant. The results of toxicity tests on Vibrio fischeri showed that the DI _(50)(5 min)as low as 0.1 carried away luminescence inhibition greater than 50%.
机译:含有大量重金属的废物的无节制排放会给经济和医疗保健带来巨大负担,特别是对于居住在该地区附近的人们而言。然而,使用抗金属细菌对废水中的金属污染物进行生物修复是环境生物技术的一个非常重要的方面。在这项研究中,从阿尔及尔东部瓦迪·埃尔·哈拉赫(Wadi El Harrach)的废水中分离出13种抗重金属细菌并进行了表征。这些细菌包括耐锌,铅,铬和镉的细菌。表征的金属抗性分离株包括革兰氏阴性菌(77%)和革兰氏阳性菌(23%)。在固体培养基中测定的废水分离物对四种重金属的最低抑制浓度(MIC)为100至1,500μg/ ml。所有分离株均显示出对其他重金属的共耐药性,对抗生素的耐药性为15%,对一种抗生素有耐药性,对多种抗生素和对双抗生素为85%。耐锌物种微球菌对重金属的抵抗力要强得多。对费氏弧菌的毒性试验结果表明,低至0.1的DI _(50)(5 min)对发光的抑制作用大于50%。

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