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为具有利用芳烃能力的新型固氮细菌组装基因组。

Assembling a genome for novel nitrogen-fixing bacteria with capabilities for utilization of aromatic hydrocarbons.

机构信息

Environmental Biotechnology and Genomics Division, CSIR-National Environmental Engineering Research Institute, Nehru Marg, Nagpur 440020, India.

Environmental Biotechnology and Genomics Division, CSIR-National Environmental Engineering Research Institute, Nehru Marg, Nagpur 440020, India.

出版信息

Genomics. 2019 Dec;111(6):1824-1830. doi: 10.1016/j.ygeno.2018.12.005. Epub 2018 Dec 13.

Abstract

Metagenome from refinery wastewater treatment plant running under nitrogen stress was analyzed for mining of novel aromatic hydrocarbon-degrading bacteria. The sequence data were assembled using metaspade followed by binning using the Metabat tool to assemble genome; where coverage and depth were calculated using bowtie and samtools. The analysis picked a novel genome belonging to family Bradyrhizobiaceae, identified based on 16S rDNA gene which was supported by CheckM and Kraken analysis. Using RAST, the assembled genome showed the capabilities for nitrogen fixation with the utilization of multiple hydrocarbon substrates with 14 different types of oxygenases as mapped by Minpath. An additional genetic feature like genes for stress and resistance towards heavy metals and antibiotic suggested that the genome has gone through the rigorous process of adaptation. If such bacteria could be cultivated then it will open the broad window of bioremediation strategies under nitrogen stress environment.

摘要

对在氮胁迫下运行的炼油废水处理厂的宏基因组进行了分析,以挖掘新型芳香烃降解菌。使用 metaspade 对序列数据进行组装,然后使用 Metabat 工具进行分箱,以组装基因组; 使用 bowtie 和 samtools 计算覆盖率和深度。该分析选择了一个属于 Bradyrhizobiaceae 家族的新型基因组,该基因组是基于 16S rDNA 基因鉴定的,该基因得到了 CheckM 和 Kraken 分析的支持。使用 RAST,组装的基因组显示了固氮能力,并利用多种烃类底物,通过 Minpath 映射了 14 种不同类型的加氧酶。另一个遗传特征是,该基因组具有针对重金属和抗生素的应激和抗性基因,表明该基因组已经经历了严格的适应过程。如果可以培养这些细菌,那么将为在氮胁迫环境下的生物修复策略开辟广阔的窗口。

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