Mycoremediation of reactive red HE7B dye by Aspergillus salinarus isolated from textile effluents

流出物 染色 纺织工业 废水 内转录区 活性染料 食品科学 制浆造纸工业 化学
作者
Md. Moinuddin Sheam,Sudhangshu Kumar Biswas,Kazi Rejvee Ahmed,Shifath Bin Syed,Md. Shamim Hossain,Md. Shakil Ahmed Khan,Md. Rockybul Hasan,Fatema Tuj Zohra,Md. Mizanur Rahman
出处
期刊:Current research in microbial sciences [Elsevier]
卷期号:2: 100056-100056 被引量:1
标识
DOI:10.1016/j.crmicr.2021.100056
摘要

Reactive dyes are widely utilized in the textile industry due to their advantageous properties of vivid color, water-fastness, and simple application procedures with minimal energy usage. The toxicity of most azo dyes is a significant environmental concern, as effluents from dye processing and manufacturing sectors are known to be carcinogenic and mutagenic to numerous species. These issues are more grievous in Bangladesh, one of the largest exporters of apparel. This study aimed to isolate and identify potential fungal strains from textile effluent that are capable of degrading Reactive Red HE7B dye (a sulphonated reactive azo dye), a widely used dye in local thread dyeing industries. Dye degradation assay was performed in potato dextrose broth supplemented with 50 mg/l Reactive Red HE7B and the degradation rate was measured by a UV spectrophotometer. DNA extraction, quantification, PCR, internal transcribed spacer (ITS) sequencing, and phylogenetic analysis were performed to identify the selected fungi. Among the isolates, the three best performing strains TEF -3, TEF -4, and TEF -5 showed 97.41%, 93.12%, and 82.89% dye degrading efficacy after 96 h of incubation, respectively. All three strains, TEF-3, TEF-4, and TEF-5 showed similarity with Aspergillus salinarus (accession no. NR_157473.1) and the similarity percentages were 97.02, 96.95, and 95.28 respectively. Interestingly, this study probably the very first indication of textile dye degradation by Aspergillus salinarus strains. Thus, these fungal strains possess the prospectiveness to be utilized in the textile wastewater treatment plants, since the isolates demonstrated the substantial capacity (>80%) to degrade Reactive Red dye after 96 h of incubation.
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