Babaei Parizad, Marashi Sayed-Amir, Asad Sedigheh
Department of Biotechnology, College of Science, University of Tehran, Tehran, Iran.
Mol Biosyst. 2015 Nov;11(11):3022-32. doi: 10.1039/c5mb00086f.
Pseudomonas stutzeri A1501 is an endophytic bacterium capable of nitrogen fixation. This strain has been isolated from the rice rhizosphere and provides the plant with fixed nitrogen and phytohormones. These interesting features encouraged us to study the metabolism of this microorganism at the systems-level. In this work, we present the first genome-scale metabolic model (iPB890) for P. stutzeri, involving 890 genes, 1135 reactions, and 813 metabolites. A combination of automatic and manual approaches was used in the reconstruction process. Briefly, using the metabolic networks of Pseudomonas aeruginosa and Pseudomonas putida as templates, a draft metabolic network of P. stutzeri was reconstructed. Then, the draft network was driven through an iterative and curative process of gap filling. In the next step, the model was evaluated using different experimental data such as specific growth rate, Biolog substrate utilization data and other experimental observations. In most of the evaluation cases, the model was successful in correctly predicting the cellular phenotypes. Thus, we posit that the iPB890 model serves as a suitable platform to explore the metabolism of P. stutzeri.
施氏假单胞菌A1501是一种具有固氮能力的内生细菌。该菌株从水稻根际分离得到,可为植物提供固定态氮和植物激素。这些有趣的特性促使我们在系统水平上研究这种微生物的代谢。在这项工作中,我们提出了首个针对施氏假单胞菌的基因组规模代谢模型(iPB890),该模型涉及890个基因、1135个反应和813种代谢物。在重建过程中使用了自动和手动相结合的方法。简而言之,以铜绿假单胞菌和恶臭假单胞菌的代谢网络为模板,重建了施氏假单胞菌的代谢网络草图。然后,通过迭代和修正的缺口填充过程来完善该草图网络。下一步,使用不同的实验数据(如比生长速率、Biolog底物利用数据和其他实验观察结果)对模型进行评估。在大多数评估案例中,该模型成功地正确预测了细胞表型。因此,我们认为iPB890模型是探索施氏假单胞菌代谢的合适平台。