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Reconstruction of the Fatty Acid Biosynthetic Pathway of Exiguobacterium antarcticum B7 Based on Genomic and Bibliomic Data

机译:基于基因组学和文献学数据的南极Exiguobacterium B7脂肪酸生物合成途径的重建

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摘要

Exiguobacterium antarcticum B7 is extremophile Gram-positive bacteria able to survive in cold environments. A key factor to understanding cold adaptation processes is related to the modification of fatty acids composing the cell membranes of psychrotrophic bacteria. In our study we show the in silico reconstruction of the fatty acid biosynthesis pathway of E. antarcticum B7. To build the stoichiometric model, a semiautomatic procedure was applied, which integrates genome information using KEGG and RAST/SEED. Constraint-based methods, namely, Flux Balance Analysis (FBA) and elementary modes (EM), were applied. FBA was implemented in the sense of hexadecenoic acid production maximization. To evaluate the influence of the gene expression in the fluxome analysis, FBA was also calculated using the log2⁡FC values obtained in the transcriptome analysis at 0°C and 37°C. The fatty acid biosynthesis pathway showed a total of 13 elementary flux modes, four of which showed routes for the production of hexadecenoic acid. The reconstructed pathway demonstrated the capacity of E. antarcticum B7 to de novo produce fatty acid molecules. Under the influence of the transcriptome, the fluxome was altered, promoting the production of short-chain fatty acids. The calculated models contribute to better understanding of the bacterial adaptation at cold environments.
机译:南极州杆菌(Exiguobacterium antarcticum)B7是能在寒冷环境中生存的极端嗜热性革兰氏阳性细菌。理解冷适应过程的关键因素与构成精神营养细菌细胞膜的脂肪酸的修饰有关。在我们的研究中,我们显示了南极E. B7脂肪酸生物合成途径的计算机重建。为了建立化学计量模型,应用了半自动程序,该程序使用KEGG和RAST / SEED整合了基因组信息。应用了基于约束的方法,即通量平衡分析(FBA)和基本模式(EM)。 FBA是从十六碳烯酸产量最大化的意义上实施的。为了评估基因表达在通量分析中的影响,还使用了转录组分析在0°C和37°C下获得的log2⁡FC值来计算FBA。脂肪酸的生物合成途径显示出总共13种基本通量模式,其中4种显示了产生十六碳烯酸的途径。重建的途径证明了南极大肠杆菌B7从头产生脂肪酸分子的能力。在转录组的影响下,通量组发生了变化,从而促进了短链脂肪酸的产生。计算模型有助于更好地了解寒冷环境下的细菌适应性。

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