Institute of Integrative Biology, ETH Zurich, Zurich, Switzerland.
Department of Physics, University of California at San Diego, La Jolla, California, USA.
mSystems. 2023 Apr 27;8(2):e0037722. doi: 10.1128/msystems.00377-22. Epub 2023 Feb 28.
While Vibrio splendidus is best known as an opportunistic pathogen in oysters, Vibrio splendidus strain 1A01 was first identified as an early colonizer of synthetic chitin particles incubated in seawater. To gain a better understanding of its metabolism, a genome-scale metabolic model (GSMM) of V. splendidus 1A01 was reconstructed. GSMMs enable us to simulate all metabolic reactions in a bacterial cell using flux balance analysis. A draft model was built using an automated pipeline from BioCyc. Manual curation was then performed based on experimental data, in part by gap-filling metabolic pathways and tailoring the model's biomass reaction to V. splendidus 1A01. The challenges of building a metabolic model for a marine microorganism like V. splendidus 1A01 are described. A genome-scale metabolic model of V. splendidus 1A01 was reconstructed in this work. We offer solutions to the technical problems associated with model reconstruction for a marine bacterial strain like V. splendidus 1A01, which arise largely from the high salt concentration found in both seawater and culture media that simulate seawater.
虽然灿烂弧菌通常被认为是牡蛎中的机会性病原体,但灿烂弧菌 1A01 株最初被确定为在海水中孵育的合成几丁质颗粒的早期定植者。为了更好地了解其代谢,我们构建了灿烂弧菌 1A01 的基因组规模代谢模型 (GSMM)。GSMM 使我们能够使用通量平衡分析模拟细菌细胞中的所有代谢反应。使用 BioCyc 中的自动化管道构建了一个草案模型。然后根据实验数据进行了手动编辑,部分通过填补代谢途径的空白和调整模型的生物质反应来适应 1A01。描述了为像灿烂弧菌 1A01 这样的海洋微生物构建代谢模型所面临的挑战。在这项工作中,我们构建了灿烂弧菌 1A01 的基因组规模代谢模型。我们为像 1A01 这样的海洋细菌菌株的模型重建提供了解决方案,这些方案主要源于海水和模拟海水的培养基中发现的高盐浓度。