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Complete genome sequence of Nitratireductor sp. strain OM-1: A lipid-producing bacterium with potential use in wastewater treatment

机译:Nitratireductor sp。的完整基因组序列。 OM-1菌株:产脂质细菌,可用于废水处理

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Reducing COsub2/sub emissions is necessary to alleviate rising global temperature. Renewable sources of energy are becoming an increasingly important substitute for fossil fuels. An important step in this direction is the isolation of novel, technologically relevant microorganisms. Nitratireductor sp. strain OM-1 can convert volatile short-chain fatty acids in wastewater into 2-butenoic acid and its ester and can accumulate intracellularly esterified compounds up to 50% of its dried cell weight under nitrogen-depleted conditions. It is believed that a novel fatty acid biosynthesis pathway including an esterifying enzyme is encoded in its genome. In this study, we report the whole-genome sequence (4.8 Mb) of OM-1, which comprises a chromosome (3,977,827 bp) and a megaplasmid (857,937 bp). This sequence information provides insight into the genome organization and biochemical pathways of OM-1. In addition, we identified lipid biosynthesis pathways in OM-1, paving the way to a better understanding of its biochemical characterization.
机译:减少CO 2 的排放对于缓解全球气温上升是必要的。可再生能源正逐渐成为化石燃料的重要替代品。朝这个方向迈出的重要一步是分离新型的,与技术相关的微生物。硝化还原菌sp。 OM-1菌株可以将废水中的挥发性短链脂肪酸转化为2-丁烯酸及其酯,并且可以在贫氮条件下积累高达干细胞重量50%的细胞内酯化化合物。据信在其基因组中编码了包括酯化酶的新型脂肪酸生物合成途径。在这项研究中,我们报告了OM-1的全基因组序列(4.8 Mb),它包含一条染色体(3,977,827 bp)和一个大质粒(857,937 bp)。该序列信息提供对OM-1的基因组组织和生化途径的了解。此外,我们确定了OM-1中的脂质生物合成途径,从而为更好地了解其生化特性铺平了道路。

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