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Modeling of nitrogen fixation and polymer production in the heterotrophic diazotroph Azotobacter vinelandii DJ

机译:杂养二位斑氮杆菌氮素固定和聚合物生产的建模vinelandii dj

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Nitrogen fixation is an important metabolic process carried out by microorganisms, which converts molecular nitrogen into inorganic nitrogenous compounds such as ammonia (NHsub3/sub). These nitrogenous compounds are crucial for biogeochemical cycles and for the synthesis of essential biomolecules, i.e. nucleic acids, amino acids and proteins. Azotobacter vinelandii is a bacterial non-photosynthetic model organism to study aerobic nitrogen fixation (diazotrophy) and hydrogen production. Moreover, the diazotroph can produce biopolymers like alginate and polyhydroxybutyrate (PHB) that have important industrial applications. However, many metabolic processes such as partitioning of carbon and nitrogen metabolism in A.?vinelandii remain unknown to date. Genome-scale metabolic models (M-models) represent reliable tools to unravel and optimize metabolic functions at genome-scale. M-models are mathematical representations that contain information about genes, reactions, metabolites and their associations. M-models can simulate optimal reaction fluxes under a wide variety of conditions using experimentally determined constraints. Here we report on the development of a M-model of the wild type bacterium A.?vinelandii DJ ( i DT1278) which consists of 2,003 metabolites, 2,469 reactions, and 1,278 genes. We validated the model using high-throughput phenotypic and physiological data, testing 180 carbon sources and 95 nitrogen sources. i DT1278 was able to achieve an accuracy of 89% and 91% for growth with carbon sources and nitrogen source, respectively. This comprehensive M-model will help to comprehend metabolic processes associated with nitrogen fixation, ammonium assimilation, and production of organic nitrogen in an environmentally important microorganism.
机译:氮固定是通过微生物进行的重要代谢过程,其将分子氮转化为无机含氮化合物如氨(NH 3 )。这些含氮化合物对生物地球化学循环至关重要,并且用于合成必需的生物分子,即核酸,氨基酸和蛋白质。 Azotobacter vinelandii是一种细菌非光合模型生物,用于研究有氧氮固定(重氮萎缩)和氢气产生。此外,二位发异性可以产生具有重要工业应用的藻酸盐和聚羟基丁酸盐(PHB)的生物聚合物。然而,许多代谢过程如A.?Vinelandii中的碳和氮代谢的分配仍然不为人知。基因组级代谢模型(M型号)代表可靠的工具,以在基因组规模下解开和优化代谢功能。 M型号是含有关于基因,反应,代谢物及其协会的信息的数学表示。使用实验确定的约束,M型号可以在各种条件下模拟最佳反应通量。在这里,我们报告了由2,003代谢物,2,469个反应和1,278个基因组成的野生型细菌A.?Vinelandii DJ(I DT1278)的M模型的开发。我们使用高通量表型和生理数据,测试180个碳源和95个氮源的模型进行了验证。 I DT1278能够达到89%和91%的准确性,分别用碳源和氮源生长。这种全面的M模型将有助于理解与氮固定,铵同化和在环保微生物中有机氮的产生的代谢过程。

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