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Metal tolerance potential of filamentous fungi isolated from soils irrigated with untreated municipal effluent

机译:从未经处理的城市污水灌溉的土壤中分离出来的丝状真菌的金属耐受潜力

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Considering the importance of filamentous fungi for bioremediation of wastewater and contaminated soils, this study was planned to investigate the metal tolerance potential of indigenous filamentous fungi. Nineteen fungal strains were isolated from soils irrigated with untreated municipal/industrial effluent using dilution technique and 10 prominent isolates were used for metal tolerance. The isolated fungal isolates were screened for metal tolerance index (MTI) at I mM cadmium (Cd), nickel (Ni) and copper (Cu) concentrations and for minimum inhibitory concentration (MIC) and metal tolerance by growing on potato dextrose agar plates amended with varying amounts of Cd, Cu and Ni. Seven out of 10 isolated fungi belonged to the genera Aspergillus and three belonged to Curvularia, Acrimonium and Pithyum. The results revealed that the order of tolerance of isolates for metals was Cd > Cu > Ni and Aspergillus sp. were more tolerant than other fungi. Tolerance ranged from 900 – 9218 mg L-1 for Cd, followed by 381 - 1780 mg L-1 for Cu and 293-1580 mg L-1for Ni. The isolated fungi exhibiting great tolerance to metals (Cd, Cu and Ni) can be used successfully for bioremediation of metals from contaminated soil and wastewaters.
机译:考虑到丝状真菌对废水和污染土壤的生物修复的重要性,本研究计划研究原生丝状真菌的金属耐受性。使用稀释技术从未经处理的市政/工业废水灌溉的土壤中分离出19种真菌菌株,并使用10个重要的分离菌株进行金属耐受。通过在改良的马铃薯葡萄糖琼脂平板上生长,筛选分离的真菌分离物在1 mM镉(Cd),镍(Ni)和铜(Cu)浓度下的金属耐受指数(MTI),以及最低抑制浓度(MIC)和金属耐受性含有不同数量的Cd,Cu和Ni。每10个分离的真菌中有7个属于曲霉属,而3个则属于弯孢菌,A虫和Pi霉。结果表明,分离株对金属的耐受性顺序为Cd> Cu> Ni和Aspergillus sp。比其他真菌更能耐受。镉的耐受范围为900 – 9218 mg L-1,铜的耐受范围为381-1780 mg L-1,镍的公差为293-1580 mg L-1。分离出的真菌对金属(镉,铜和镍)具有很强的耐受性,可以成功地用于污染土壤和废水中金属的生物修复。

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