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Investigation of the role of chromium reductase for Cr (VI) reduction by Pseudomonas species isolated from Cr (VI) contaminated effluent

机译:研究铬还原酶对从污染了六价铬的废水中分离出来的假单胞菌物种还原六价铬的作用

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This study observed the role of pH, chromium (VI) concentrations, temperatures and chromium reductases for of Cr (VI) reduction. Bacteria isolated from effluent were identified as Pseudomonas sp. by molecular analysis. Bacterial strain MAI4 showed significant reduction at pH 7 (84%), 100?μg?Cr (VI)/ml (86%) and 35?°C (86%). Increase in time of incubation increased Cr (VI) reduction by P. entomophila MAI4 significantly and 120?h of incubation showed maximum reduction of Cr (VI). P. entomophila MAI4 also showed significant reduction of Cr (VI) (80%) in industrial waste water. Bacterial strain MAI4 reduced Cr (VI) into Cr (III) after 120?h which was detected as 70?±?3?μg/ml in cell pellet and 30?±?2?μg/ml in supernatant, respectively. Chromium reductase found in cell free extracts (CFE) reduced almost all Cr (VI) to Cr (III) compared to cell debris. Based on reduction under in vitro and in vivo conditions, Pseudomonas sp. MAI4 could be used as a bioremediator of Cr (VI) in contaminated effluents.
机译:这项研究观察了pH,铬(VI)浓度,温度和铬还原酶对Cr(VI)还原的作用。从污水中分离出的细菌被鉴定为假单胞菌。通过分子分析。细菌菌株MAI4在pH 7(84%),100?μg?Cr(VI)/ ml(86%)和35?C(86%)时显着降低。保温时间的增加显着增加了食虫假单胞菌MAI4对Cr(VI)的还原,保温120?h显示Cr(VI)的最大还原。嗜蝇假单胞菌MAI4还显示出工业废水中的Cr(VI)显着减少(80%)。细菌菌株MAI4在120?h后将Cr(VI)还原为Cr(III),这在细胞沉淀中被检测为70?±?3?μg/ ml,在上清液中被检测为30?±?2?μg/ ml。与细胞碎片相比,无细胞提取物(CFE)中发现的铬还原酶几乎将所有Cr(VI)还原为Cr(III)。基于在体外和体内条件下的还原,假单胞菌属物种。 MAI4可用作污染废水中六价铬的生物修复剂。

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