Transcriptome profiling reveals upregulation of benzoate degradation and related genes in Pseudomonas aeruginosa D6 during textile dye degradation

转录组 细菌 微生物学 生物修复 生物降解 流出物 化学 降级(电信) 铜绿假单胞菌 活性污泥 生物化学 代谢途径 生物 食品科学 基因表达 基因 污水处理 环境工程 有机化学 电信 遗传学 计算机科学 工程类
作者
Sandhya Nanjani,Zarna Patel,Shruti Sharma,Priti Raj Pandita,Ramesh Pandit,Madhvi Joshi,Amrutlal K. Patel,Chaitanya G. Joshi
出处
期刊:Environmental Research [Elsevier BV]
卷期号:212: 113288-113288 被引量:10
标识
DOI:10.1016/j.envres.2022.113288
摘要

An upsurge in textile dye pollution has demanded immediate efforts to develop an optimum technology for their bioremediation. However, the molecular mechanism underpinning aerobic decolorization of dyes is still in its infancy. Thus, in the current work, the intricacies of aerobic remediation of textile dyes by Pseudomonas aeruginosa D6 were understood via a transcriptomic approach. The bacterium isolated from the sludge sample of a common effluent treatment plant was able to decolorize 54.42, 57.66, 50.84 and 65.86% of 100 mg L-1 of four different dyes i.e., TD01, TD04, TD05, and TD06, respectively. The maximum decolorization was achieved within six days and thus, the first and sixth day of incubation were selected for transcriptome analysis at the early and late phase of the decolorization, respectively. The expression profiles of all samples were compared to gain insight into the dye-specific response of bacterium and it was found that it behaved most uniquely in the presence of the dye TD01. Several genes critical to core metabolic processes like the TCA cycle, glycolysis, pentose phosphate pathway, translation, cell motility etc. Were found to be overexpressed in the presence of dyes. Interestingly, in response to dyes, the benzoate degradation pathway was significantly upregulated in the bacterium as compared to control (i.e., bacterium without dye). Thus, seven genes contributing to the induction of the same were further studied by RT-qPCR analysis. Overall, the involvement of the benzoate pathway implies the appearance of aromatic intermediates during decolorization, which in turn infers dye degradation.
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