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Bacterial Diversity and Bioremediation Potential of the Highly Contaminated Marine Sediments at El-Max District (Egypt Mediterranean Sea)

机译:El-Max区(埃及地中海)高度污染的海洋沉积物的细菌多样性和生物修复潜力

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摘要

Coastal environments worldwide are threatened by the effects of pollution, a risk particularly high in semienclosed basins like the Mediterranean Sea that is poorly studied from bioremediation potential perspective especially in the Southern coast. Here, we investigated the physical, chemical, and microbiological features of hydrocarbon and heavy metals contaminated sediments collected at El-Max bay (Egypt). Molecular and statistical approaches assessing the structure of the sediment-dwelling bacterial communities showed correlations between the composition of bacterial assemblages and the associated environmental parameters. Fifty strains were isolated on mineral media supplemented by 1% crude oil and identified as a diverse range of hydrocarbon-degrading bacteria involved in different successional stages of biodegradation. We screened the collection for biotechnological potential studying biosurfactant production, biofilm formation, and the capability to utilize different hydrocarbons. Some strains were able to grow on multiple hydrocarbons as unique carbon source and presented biosurfactant-like activities and/or capacity to form biofilm and owned genes involved in different detoxification/degradation processes. El-Max sediments represent a promising reservoir of novel bacterial strains adapted to high hydrocarbon contamination loads. The potential of the strains for exploitation for in situ intervention to combat pollution in coastal areas is discussed.
机译:全世界的沿海环境都受到污染的威胁,在像地中海这样的半封闭盆地中,这种风险特别高,而从生物修复潜力的角度出发,尤其是在南部海岸,人们对此研究甚少。在这里,我们调查了在El-Max海湾(埃及)收集的碳氢化合物和重金属污染的沉积物的物理,化学和微生物学特征。评估沉积物居住细菌群落结构的分子和统计方法表明,细菌组合的组成与相关的环境参数之间存在相关性。在添加了1%原油的矿物培养基上分离了50株菌株,并将其鉴定为涉及生物降解不同连续阶段的多种碳氢化合物降解细菌。我们筛选了具有生物技术潜力的集合,以研究生物表面活性剂的生产,生物膜的形成以及利用不同碳氢化合物的能力。一些菌株能够在多种碳氢化合物上作为独特的碳源生长,并表现出类似生物表面活性剂的活性和/或形成生物膜的能力和参与不同解毒/降解过程的自有基因的能力。 El-Max沉积物代表了有前途的新型细菌菌株库,可适应高碳氢化合物污染负荷。讨论了利用菌株进行原位干预以对抗沿海地区污染的潜力。

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