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Screening isolation and molecular identification of biodegrading mycobacteria from Iranian ecosystems and analysis of their biodegradation activity

机译:伊朗生态系统中可生物降解的分枝杆菌的筛选分离和分子鉴定及其生物降解活性的分析

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摘要

Anthropogenic origin pollutants including pesticides, heavy metals, pharmaceuticals and industry chemicals impose many risks to human health and environment and bioremediation has been considered the strategy of choice to reduce the risk of hazardous chemicals. In the current study, we aimed to screen and characterize mycobacteria from the diverse range of Iranian aquatic and terrestrial ecosystems with harsh and unfavorable environmental conditions that can be utilized for biodegradation of target pollutants. Mycobacteria were isolated from a collection of 90 environmental samples and identified to the species level using conventional microbiological and molecular methods including the PCR amplification of hsp65 and sequence analysis of, 16S rRNA genetic markers. The growth rate of the isolates in presence of pollutants, chromatography, Gibbs and turbidometric methods were used to assess their biodegradation activity. A total of 39 mycobacterial isolates (43.3%) were recovered from 90 samples that belonged to 21 various species consisting of M. fortuitum; 6 isolates, M. flavescens and M. paragordonae; 4 isolates each, M. monacense, M. fredriksbergense and M. aurum; 2 isolates each, 7 single isolates of M. conceptionense, M. porcinum, M. simiae, M. celeriflavum, M. novocastrense, M. neoaurum, M. obuense and 12 isolates that belonged to 8 unknown potentially novel mycobacterial species. The isolates were categorized in three groups based on their bioremediation activity, i.e., 5 (12.8%) organisms without biodegradation activity, 20 (51.2%) organisms with previously reported biodegradation activity, and 14 (35.9%) organisms that showed biodegradation activity but not previously reported. Our results showed that the Iranian ecosystems harbor a good reservoir of diverse mycobacterial species with biodegrading potentiality for neutralizing environmental chemical pollutants.
机译:人为来源的污染物,包括农药,重金属,药物和工业化学品,对人类健康和环境构成许多风险,生物修复已被视为降低危险化学品风险的首选策略。在当前的研究中,我们旨在从具有恶劣和不利环境条件的伊朗水生和陆地生态系统的多种范围中筛选和鉴定分枝杆菌,并将其用于目标污染物的生物降解。从90个环境样品中分离出分枝杆菌,并使用常规微生物学和分子方法将其鉴定到物种水平,包括hsp65的PCR扩增和16S rRNA遗传标记的序列分析。分离物在污染物,色谱法,吉布斯法和浊度法存在下的生长速率用于评估其生物降解活性。从90个样品中共回收到39个分枝杆菌菌株(占43.3%),这些样品属于21种不同的组成。 6个分离物,苦参分支杆菌和Paragordonae。 M. monacense,M。fredriksbergense和M. aurum各有4个分离株;分别有2个分离株,7个概念分离株,M. porcinum,M. simiae,M. celeriflavum,M. novocastrense,M. neoaurum,M. obuense和12个分离株,它们分别属于8个未知的潜在新型分枝杆菌种。根据分离物的生物修复活性将其分为三类,即5种(12.8%)无生物降解活性的生物,20种(51.2%)具有先前报道的生物降解活性的生物和14种(35.9%)表现出生物降解活性但无生物降解活性的生物。以前的报道。我们的结果表明,伊朗的生态系统拥有各种分枝杆菌物种的良好储存库,具有中和环境化学污染物的生物降解潜力。

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