Department of Biological Engineering, Kyonggi University, Suwon-si, Korea.
Department of Life Science, Kyonggi University, Suwon-si, Korea.
Microbiologyopen. 2019 Jun;8(6):e00754. doi: 10.1002/mbo3.754. Epub 2018 Oct 19.
Crude oil is a major pollutant of marine and coastal ecosystems, and it causes environmental problems more seriously. It is believed ultimate and complete degradation is accomplished mainly by microorganisms. In this study, we aim to search out for bacterial strains with high ability in degrading crude oil. From sediments contaminated by the petroleum spilled in 2007, an accident in Taean, South Korea, we isolated thirty-one bacterial strains in total with potential application in crude oil contamination remediation. In terms of removal percentage after 7 days, one of the strains, Co17, showed the highest removal efficiency with 84.2% of crude oil in Bushnell-Haas media. The Co17 strain even exhibited outstanding ability removing crude oil at a high salt concentration. Through the whole genome sequencing annotation results, many genes related with n-alkane degradation in the genome of Gordonia sp. Co17, revealed alkane-1-monooxygenase, alcohol dehydrogenase, and Baeyer-Villiger monooxygenase. Specially, for confirmation of gene-level, alkB gene encoding alkane hydroxylase (alkane-1-monooxygenase) was found in the strain Co17. The expression of alkB upregulated 125-fold after 18 hr accompany with the removal of n-alkanes of 48.9%. We therefore propose the strain Gordonia iterans Co17, isolated from crude oil-contaminated marine sediment, could be used to offer a new strategy for bioremediation with high efficiency.
原油是海洋和沿海生态系统的主要污染物,它会造成更严重的环境问题。人们认为,原油的最终和完全降解主要是由微生物完成的。在这项研究中,我们旨在寻找具有高降解原油能力的细菌菌株。从韩国泰安 2007 年石油泄漏污染的沉积物中,我们总共分离出了 31 株具有原油污染修复应用潜力的细菌菌株。就 7 天后的去除率而言,其中一株菌株 Co17 在 Bushnell-Haas 培养基中表现出最高的去除效率,达到 84.2%的原油去除率。该菌株 Co17 甚至在高盐浓度下也表现出了出色的去除原油的能力。通过全基因组测序注释结果,在 Gordonia sp. Co17 的基因组中发现了许多与正烷烃降解相关的基因,包括烷烃 1-单加氧酶、醇脱氢酶和 Baeyer-Villiger 单加氧酶。特别是,为了确认基因水平,发现了编码烷烃羟化酶(烷烃 1-单加氧酶)的 alkB 基因。在去除 48.9%的正烷烃的同时,alkB 基因的表达水平上调了 125 倍。因此,我们提出从原油污染海洋沉积物中分离得到的戈登氏菌(Gordonia iterans)Co17 菌株可用于提供高效的生物修复新策略。