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新分离菌株WCO-9对石油的生物降解及其比较泛基因组分析

Biodegradation of Oil by a Newly Isolated Strain WCO-9 and Its Comparative Pan-Genome Analysis.

作者信息

Jiang Shijie, Fan Qingfeng, Zhang Zeying, Deng Yunfeng, Wang Lihong, Dai Qilin, Wang Jin, Lin Min, Zhou Jian, Long Zhijian, He Guiqiang, Zhou Zhengfu

机构信息

School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China.

Engineering Research Center of Biomass Materials, Ministry of Education, Southwest University of Science and Technology, Mianyang 621010, China.

出版信息

Microorganisms. 2023 Feb 6;11(2):407. doi: 10.3390/microorganisms11020407.

Abstract

Waste oil pollution and the treatment of oily waste present a challenge, and the exploitation of microbial resources is a safe and efficient method to resolve these problems. Lipase-producing microorganisms can directly degrade waste oil and promote the degradation of oily waste and, therefore, have very significant research and application value. The isolation of efficient oil-degrading strains is of great practical significance in research into microbial remediation in oil-contaminated environments and for the enrichment of the microbial lipase resource library. In this study, WCO-9, an efficient oil-degrading bacterium, was isolated from an oil-contaminated soil using olive oil as the sole carbon source, and its enzyme activity of ρ-nitrophenyl decanoate (ρ-NPD) decomposition was 3000 U/L. The WCO-9 strain could degrade a variety of edible oils, and its degradation capability was significantly better than that of the control strain, ATCC 17908. Comparative pan-genome and lipid degradation pathway analyses indicated that isolated from the same environment shared a similar set of core genes and that the species accumulated more specific genes that facilitated resistance to environmental stresses under different environmental conditions. WCO-9 has accumulated a complete set of oil metabolism genes under a long-term oil-contamination environment, and the compact arrangement of abundant lipase and lipase chaperones has further strengthened the ability of the strain to survive in such environments. This is the main reason why WCO-9 is able to degrade oil significantly more effectively than ATCC 17908. In addition, WCO-9 possesses a specific lipase that is not found in homologous strains. In summary, WCO-9, with a complete triglyceride degradation pathway and the specific lipase gene, has great potential in environmental remediation and lipase for industry.

摘要

废油污染及含油废物的处理是一项挑战,而微生物资源的开发是解决这些问题的一种安全高效的方法。产脂肪酶微生物能够直接降解废油并促进含油废物的降解,因此具有十分重要的研究和应用价值。高效油降解菌株的分离对于油污染环境中微生物修复的研究以及丰富微生物脂肪酶资源库具有重要的现实意义。在本研究中,以橄榄油作为唯一碳源,从油污染土壤中分离出了一种高效油降解细菌WCO-9,其对癸酸对硝基苯酯(ρ-NPD)的分解酶活性为3000 U/L。WCO-9菌株能够降解多种食用油,其降解能力明显优于对照菌株ATCC 17908。比较泛基因组和脂质降解途径分析表明,从同一环境中分离出的菌株共享一组相似的核心基因,并且该物种积累了更多有助于在不同环境条件下抵抗环境压力的特异性基因。WCO-9在长期油污染环境下积累了一整套油脂代谢基因,丰富的脂肪酶和脂肪酶伴侣蛋白的紧密排列进一步增强了该菌株在这种环境中的生存能力。这就是WCO-9比ATCC 17908更能有效降解油脂的主要原因。此外,WCO-9拥有一种在同源菌株中未发现的特异性脂肪酶。综上所述,具有完整甘油三酯降解途径和特异性脂肪酶基因的WCO-9在环境修复和工业脂肪酶方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0285/9967506/70218a9e5e9c/microorganisms-11-00407-g001.jpg

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