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革兰氏阴性菌中的金属抗性机制及其在其他金属存在下去除汞的潜力。

Metal resistance mechanisms in Gram-negative bacteria and their potential to remove Hg in the presence of other metals.

作者信息

Giovanella Patricia, Cabral Lucélia, Costa Alexandre Pereira, de Oliveira Camargo Flávio Anastácio, Gianello Clesio, Bento Fátima Menezes

机构信息

Fuels and Biofuels Biodeterioration Laboratory (LAB-BIO), Departament of Microbiology, Immunology and Parasitology - Institute of Health Science, Federal University of Rio Grande do Sul, 500 Sarmento Leite St, 90050-170 Porto Alegre, RS, Brazil.

Research Center for Chemistry, Biology and Agriculture (CPQBA), University of Campinas (UNICAMP), 999 Alexandre Cazelatto St, Caixa Postal: 6171 Betel, 13081-970 Paulínia, SP, Brazil.

出版信息

Ecotoxicol Environ Saf. 2017 Jun;140:162-169. doi: 10.1016/j.ecoenv.2017.02.010. Epub 2017 Mar 8.

Abstract

Contamination of the environment by heavy metals has been increasing in recent years due to industrial activities. Thus research involving microorganisms capable of surviving in multi-contaminated environments is extremely important. The objectives of the present study were to evaluate the removal of mercury alone and in the presence of cadmium, nickel and lead by four mercury-resistant microorganisms; estimate the removal of Cd, Ni and Pb; understand the mechanisms involved (reduction, siderophores, biofilms, biosorption and bioaccumulation) in the metal resistance of the isolate Pseudomonas sp. B50D; and determine the capacity of Pseudomonas sp. B50D in removing Hg, Cd, Ni and Pb from an industrial effluent. It was shown that the four isolates evaluated were capable of removing from 62% to 95% of mercury from a culture medium with no addition of other metals. The isolate Pseudomonas sp. B50D showed the best performance in the removal of mercury when evaluated concomitantly with other metals. This isolate was capable of removing 75% of Hg in the presence of Cd and 91% in the presence of Ni and Pb. With respect to the other metals it removed 60%, 15% and 85% of Cd, Ni and Pb, respectively. In tests with effluent, the isolate Pseudomonas sp. B50D removed 85% of Hg but did not remove the other metals. This isolate presented reduction, biosorption, biofilm production and siderophore production as its metal resistance mechanisms. Pseudomonas sp. B50D was thus a candidate with potential for application in the bioremediation of effluents with complex metal contaminations.

摘要

近年来,由于工业活动,重金属对环境的污染一直在增加。因此,涉及能够在多重污染环境中生存的微生物的研究极为重要。本研究的目的是评估四种耐汞微生物单独去除汞以及在镉、镍和铅存在的情况下对汞的去除情况;估算镉、镍和铅的去除量;了解分离出的假单胞菌属B50D菌株在金属抗性方面所涉及的机制(还原作用、铁载体、生物膜、生物吸附和生物累积);并确定假单胞菌属B50D菌株从工业废水中去除汞、镉、镍和铅的能力。结果表明,所评估的四种分离菌株在不添加其他金属的培养基中能够去除62%至95%的汞。当与其他金属同时评估时,分离出的假单胞菌属B50D菌株在汞的去除方面表现最佳。该菌株在镉存在的情况下能够去除75%的汞,在镍和铅存在的情况下能够去除91%的汞。对于其他金属,它分别去除了60%的镉、15%的镍和85%的铅。在废水测试中,分离出的假单胞菌属B50D菌株去除了85%的汞,但未去除其他金属。该菌株呈现出还原作用、生物吸附、生物膜形成和铁载体产生作为其金属抗性机制。因此,假单胞菌属B50D菌株是一种有潜力应用于复杂金属污染废水生物修复的候选菌株。

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