Wang Liping, Liu Yihui, Shao Zongze
Key Laboratory of Marine Biogenetic Resources, The Third Institute of Oceanography, State Oceanic Administration, Xiamen 361005, China.
Wei Sheng Wu Xue Bao. 2009 Dec;49(12):1634-42.
The aim of this study is to isolate novel and efficient hydrocarbon-degrading bacteria (HDBs) from pelagic ocean.
The surface water sample from Atlantic Ocean was enriched in NH medium with crude oil:diesel oil (in a ratio of 1:1) as the sole carbon source. HDBs were isolated and their degradation ability was tested in MMC medium, and further subjected to genotypic and phenotypic analysis. Polymerase chain reaction with degenerate primers was performed to detect the genes encoding integral-membrane non-heme iron monooxygenase (AlkB) and cytochrome P450 CYP153 family. Meanwhile, the production of biosurfactant was examined by surface tension measurement, then extracted and purified for component characterization.
A hydrocarbon-degrading bacterium named S14-10 was obtained,which can utilize C10 - C36 as the sole carbon source. Analysis of 16S rRNA sequence showed that it belonged to Gordonia genus showing the highest similarity (99.86%) with type strain of Gordonia terraeT, while secA1 sequence showed a low identity only 93.69%. Furthermore, two genes alkB and CYP153 P450 were obtained with PCR, which had highest similarities 88.76% and 99.61% to that of Gordonia sp. TF6, respectively. In addition, strain S14-10 was found to produce glycolipid biosurfactant,which lowered the surface tension of water to 31.6 mN/m.
Strain S14-10 is possibly a novel species of Gordonia, and the first hydrocarbon-degrading bacterium isolated from open sea. It has potential in bioremediation of oil contaminated environment.
本研究旨在从远洋海洋中分离新型高效的烃降解细菌(HDBs)。
以原油:柴油(1:1比例)作为唯一碳源,在NH培养基中富集来自大西洋的表层水样。分离HDBs并在MMC培养基中测试其降解能力,然后进行基因型和表型分析。使用简并引物进行聚合酶链反应,以检测编码整合膜非血红素铁单加氧酶(AlkB)和细胞色素P450 CYP153家族的基因。同时,通过表面张力测量检测生物表面活性剂的产生,然后提取并纯化以进行成分表征。
获得了一种名为S14-10的烃降解细菌,其可以利用C10 - C36作为唯一碳源。16S rRNA序列分析表明它属于戈登氏菌属,与陆地戈登氏菌T的模式菌株显示出最高相似性(99.86%),而secA1序列显示出低同一性,仅为93.69%。此外,通过PCR获得了两个基因alkB和CYP153 P450,它们与戈登氏菌属TF6的相似性分别最高为88.76%和99.61%。此外,发现菌株S14-10产生糖脂生物表面活性剂,可将水的表面张力降低至31.6 mN/m。
菌株S14-10可能是戈登氏菌属的一个新物种,是从公海分离出的第一株烃降解细菌。它在石油污染环境的生物修复方面具有潜力。