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基因组测序揭示了HZ01菌株在生物修复方面的潜力。

Genome Sequencing Reveals the Potential of sp. HZ01 for Bioremediation.

作者信息

Hong Yue-Hui, Ye Cong-Cong, Zhou Qian-Zhi, Wu Xiao-Ying, Yuan Jian-Ping, Peng Juan, Deng Hailin, Wang Jiang-Hai

机构信息

Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering/South China Sea Bioresource Exploitation and Utilization Collaborative Innovation Center, School of Marine Sciences, Sun Yat-sen UniversityGuangzhou, China.

State Key Laboratory of Conservation and Utilization of Subtropical Agro-Bioresources, College of Natural Resources and Environment, South China Agricultural UniversityGuangzhou, China.

出版信息

Front Microbiol. 2017 Aug 9;8:1507. doi: 10.3389/fmicb.2017.01507. eCollection 2017.

Abstract

Petroleum pollution is a severe environmental issue. Comprehensively revealing the genetic backgrounds of hydrocarbon-degrading microorganisms contributes to developing effective methods for bioremediation of crude oil-polluted environments. Marine bacterium sp. HZ01 is capable of degrading hydrocarbons and producing biosurfactants. In this study, the draft genome (5.5 Mbp) of strain HZ01 has been obtained by Illumina sequencing, containing 5,162 predicted genes. Genome annotation shows that "amino acid metabolism" is the most abundant metabolic pathway. Strain HZ01 is not capable of using some common carbohydrates as the sole carbon sources, which is due to that it contains few genes associated with carbohydrate transport and lacks some important enzymes related to glycometabolism. It contains abundant proteins directly related to petroleum hydrocarbon degradation. AlkB hydroxylase and its homologs were not identified. It harbors a complete enzyme system of terminal oxidation pathway for -alkane degradation, which may be initiated by cytochrome P450. The enzymes involved in the catechol pathway are relatively complete for the degradation of aromatic compounds. This bacterium lacks several essential enzymes for methane oxidation, and Baeyer-Villiger monooxygenase involved in the subterminal oxidation pathway and cycloalkane degradation was not identified. These results suggest that strain HZ01 degrades -alkanes via the terminal oxidation pathway, degrades aromatic compounds primarily via the catechol pathway and cannot perform methane oxidation or cycloalkane degradation. Additionally, strain HZ01 possesses abundant genes related to the metabolism of secondary metabolites, including some genes involved in biosurfactant (such as glycolipids and lipopeptides) synthesis. The genome analysis also reveals its genetic basis for nitrogen metabolism, antibiotic resistance, regulatory responses to environmental changes, cell motility, and material transport. The obtained genome data provide us with a better understanding of hydrocarbon-degrading bacteria, which may contribute to the future design of rational strategies for bioremediation of petroleum-polluted marine environments.

摘要

石油污染是一个严峻的环境问题。全面揭示烃降解微生物的遗传背景有助于开发有效的原油污染环境生物修复方法。海洋细菌HZ01能够降解烃类并产生生物表面活性剂。在本研究中,通过Illumina测序获得了菌株HZ01的草图基因组(5.5 Mbp),包含5162个预测基因。基因组注释表明“氨基酸代谢”是最丰富的代谢途径。菌株HZ01不能利用一些常见碳水化合物作为唯一碳源,这是因为它含有很少与碳水化合物转运相关的基因,并且缺乏一些与糖代谢相关的重要酶。它含有丰富的与石油烃降解直接相关的蛋白质。未鉴定出AlkB羟化酶及其同源物。它拥有完整的正构烷烃降解末端氧化途径酶系统,该途径可能由细胞色素P450启动。参与儿茶酚途径的酶对于芳香族化合物的降解相对完整。该细菌缺乏几种甲烷氧化必需的酶,并且未鉴定出参与亚末端氧化途径和环烷烃降解的拜耳-维利格单加氧酶。这些结果表明,菌株HZ01通过末端氧化途径降解正构烷烃,主要通过儿茶酚途径降解芳香族化合物,并且不能进行甲烷氧化或环烷烃降解。此外,菌株HZ01拥有丰富的与次生代谢物代谢相关的基因,包括一些参与生物表面活性剂(如糖脂和脂肽)合成的基因。基因组分析还揭示了其在氮代谢、抗生素抗性、对环境变化的调节反应、细胞运动性和物质运输方面的遗传基础。获得的基因组数据使我们对烃降解细菌有了更好的了解,这可能有助于未来设计合理的石油污染海洋环境生物修复策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9949/5552670/0f6cde86a52d/fmicb-08-01507-g001.jpg

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