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恶臭假单胞菌对活性艳红的微生物降解。

Microbial degradation of Procion Red by Pseudomonas stutzeri.

机构信息

Department of Biosciences, Veer Narmad South Gujarat University, Surat, Gujarat, India.

出版信息

Sci Rep. 2021 Feb 4;11(1):3075. doi: 10.1038/s41598-021-82494-9.

Abstract

The bacterium Pseudomonas stutzeri SPM-1, obtained from textile wastewater dumping sites of Surat, Gujarat was studied for the degradation of the textile azo dye Procion Red-H3B. The optimization was carried on the phenanthrene enrichment medium followed by exposing it to variable environmental factors and nutritional sources. The complete decolorization of dye (50 mg/L) happened within 20 h of incubation at pH 8 and temperature 32 ± 0.2 °C under microaerophilic conditions. Decolourization was monitored with the shifting of absorbance peak in UV-Vis spectrophotometry and HPLC analysis. The physicochemical studies of effluent before and after the treatment revealed 85%, 90%, and 65% decline in BOD, COD, and TOC levels. The strain showed significant activities of azoreductase (95%), laccase (76%), and NADH-DCIP reductase (88%) at 12 h, 10 h, and 8 h of growth respectively indicating evidence for reductive cleavage of the dye. The changes in the functional groups were confirmed by the presence of new peaks in FT-IR data. GC-MS analysis helped in recognizing the degraded dye compounds thus elucidating the proposed pathway for degradation of Procion Red-H3B. The potential of the bioremediation process was concluded by a phytotoxicity test using two plants, Vigna radiata and Cicer arietinum. Our study demonstrates that the strain Pseudomonas stutzeri SPM-1 has rapid decolorization efficiency and holds a noteworthy perspective in industrial application for textile wastewater treatment.

摘要

从古吉拉特邦苏拉特的纺织废水倾倒场获得的假单胞菌 Pseudomonas stutzeri SPM-1 被研究用于降解纺织偶氮染料 Procion Red-H3B。在对菲恩坦恩富集培养基进行优化后,研究了它对各种环境因素和营养源的适应能力。在微需氧条件下,pH 值为 8,温度为 32±0.2°C,孵育 20 小时后,染料(50mg/L)完全脱色。通过紫外可见分光光度法和 HPLC 分析监测染料的脱色情况,观察到吸光度峰的移动。处理前后废水的物理化学研究表明,BOD、COD 和 TOC 水平分别下降了 85%、90%和 65%。该菌株在 12 小时、10 小时和 8 小时的生长过程中表现出显著的偶氮还原酶(95%)、漆酶(76%)和 NADH-DCIP 还原酶(88%)活性,表明染料发生了还原裂解。傅里叶变换红外(FT-IR)数据分析中存在新峰,证实了功能基团的变化。GC-MS 分析有助于识别降解染料化合物,从而阐明了 Procion Red-H3B 降解的提议途径。通过使用两种植物,菜豆(Vigna radiata)和鹰嘴豆(Cicer arietinum)进行的植物毒性试验,评估了生物修复过程的潜力。我们的研究表明,假单胞菌 Pseudomonas stutzeri SPM-1 具有快速脱色效率,在工业应用于纺织废水处理方面具有重要前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c60/7862368/d38119267ebf/41598_2021_82494_Fig1_HTML.jpg

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