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首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Isolation, characterization and growth kinetics of phenol hyper-tolerant bacteria from sewage-fed aquaculture system
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Isolation, characterization and growth kinetics of phenol hyper-tolerant bacteria from sewage-fed aquaculture system

机译:污水喂养的水产养殖系统中酚超耐受细菌的分离,表征和生长动力学

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摘要

Pollution of aquatic resources is increasing day-by-day, and phenolic compounds are common pollutants negatively impacting aquatic biodiversity and production. This study aimed at isolation of phenol hyper-tolerant bacteria from polluted aquaculture resource so that they might be useful in aquaculture systems. Four phenol hyper-tolerant bacterial strains were isolated from sewage fed East Kolkata Wetlands, a Ramsar site. By 16S rDNA sequence, cell morphology and biochemical characteristics the strains PDB2, PDB13, PDB16, and PDB26 were identified as Acinetobacter sp., Acinetobacter junii, Pseudomonas citronellolis, and Bacillus cereus, respectively. Pseudomonas citronellolis strain PDB16, described in this study, is possibly the first report of phenol hyper-tolerant strain in this species. All the four strains degraded 600 mg L-1 phenol within 5 days and expressed catechol 1,2-dioxygenase but lacked catechol 2,3-dioxygenase enzyme suggesting that the bacteria used the ortho-cleavage pathway for phenol degradation. In growth kinetic study Edwards and Aiba model, rather than the most popular Haldane model, gave the best fit indicating behavioral divergence of these strains with those from petroleum contaminated environments. The phenol degrading bacteria isolated from a polluted sewage fed aquaculture system might be useful in degradation and remediation of polluted aquaculture resources as well as inland open waters.
机译:水生资源的污染日益增加,酚类化合物是对水生生物多样性和生产产生不利影响的常见污染物。这项研究旨在从污染的水产养殖资源中分离酚超耐受细菌,以便它们可能在水产养殖系统中有用。从拉姆萨尔(Ramsar)站点东加尔各答湿地饲喂的污水中分离出4种苯酚超耐受细菌菌株。通过16S rDNA序列,细胞形态和生化特性,菌株PDB2,PDB13,PDB16和PDB26分别被鉴定为不动杆菌属,不动杆菌,柠檬酸假单胞菌和蜡状芽孢杆菌。这项研究中描述的香茅假单胞菌菌株PDB16可能是该物种中酚超耐受菌株的首次报道。这四个菌株均在5天内降解了600 mg L-1苯酚并表达了儿茶酚1,2-二加氧酶,但缺乏儿茶酚2,3-二加氧酶,表明该细菌使用了邻位裂解途径降解苯酚。在生长动力学研究中,Edwards和Aiba模型(而不是最流行的Haldane模型)提供了最佳拟合,表明这些菌株与石油污染环境中的菌株在行为上存在差异。从受污染的污水养殖系统中分离出的降解苯酚的细菌可能有助于降解和修复受污染的水产养殖资源以及内陆开放水域。

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