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首页> 外文期刊>PLoS Computational Biology >Elucidation of trophic interactions in an unusual single-cell nitrogen-fixing symbiosis using metabolic modeling
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Elucidation of trophic interactions in an unusual single-cell nitrogen-fixing symbiosis using metabolic modeling

机译:使用代谢造型阐明一种不寻常的单细胞氮素固定共生中的营养相互作用

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Marine nitrogen-fixing microorganisms are an important source of fixed nitrogen in oceanic ecosystems. The colonial cyanobacterium Trichodesmium and diatom symbionts were thought to be the primary contributors to oceanic N2 fixation until the discovery of the unusual uncultivated symbiotic cyanobacterium UCYN-A (Candidatus Atelocyanobacterium thalassa). UCYN-A has atypical metabolic characteristics lacking the oxygen-evolving photosystem II, the tricarboxylic acid cycle, the carbon-fixation enzyme RuBisCo and de novo biosynthetic pathways for a number of amino acids and nucleotides. Therefore, it is obligately symbiotic with its single-celled haptophyte algal host. UCYN-A receives fixed carbon from its host and returns fixed nitrogen, but further insights into this symbiosis are precluded by both UCYN-A and its host being uncultured. In order to investigate how this syntrophy is coordinated, we reconstructed bottom-up genome-scale metabolic models of UCYN-A and its algal partner to explore possible trophic scenarios, focusing on nitrogen fixation and biomass synthesis. Since both partners are uncultivated and only the genome sequence of UCYN-A is available, we used the phylogenetically related Chrysochromulina tobin as a proxy for the host. Through the use of flux balance analysis (FBA), we determined the minimal set of metabolites and biochemical functions that must be shared between the two organisms to ensure viability and growth. We quantitatively investigated the metabolic characteristics that facilitate daytime N2 fixation in UCYN-A and possible oxygen-scavenging mechanisms needed to create an anaerobic environment to allow nitrogenase to function. This is the first application of an FBA framework to examine the tight metabolic coupling between uncultivated microbes in marine symbiotic communities and provides a roadmap for future efforts focusing on such specialized systems.
机译:海洋固氮微生物固定氮的海洋生态系统的重要来源。殖民蓝藻红海束毛和硅藻共生体被认为是主要贡献者海洋固氮直到异常未开垦共生蓝藻UCYN-A(暂定Atelocyanobacterium海,湖)的发现。 UCYN-A具有缺乏放氧光合体系II,三羧酸循环,碳 - 固定的酶RUBISCO和从头生物合成途径的一些氨基酸和核苷酸的非典型的代谢特征。因此,它与它的单细胞藻类定鞭藻门专宿主共生。 UCYN-A接收来自其宿主的固定碳和返回固定氮,但进一步深入了解此共生被两个UCYN-A和其宿主是未培养的排除。为了研究这个syntrophy是如何协调,我们重建UCYN-A和藻类伙伴的自下而上的基因组规模代谢模型来探索可能的营养的情况,重点固氮和生物质合成。由于双方都是荒地,只有UCYN-A的基因组序列是可用的,我们用相关Chrysochromulina的系统发育托宾作为主机的代理。通过使用通量平衡分析(FBA)的,我们确定的最小集的代谢物和生化功能,必须在两种生物之间共享,以确保生存力和生长。我们定量研究有助于在UCYN-A,并创造一个厌氧环境,使固氮酶发挥作用可能需要氧清除机制白天固氮的代谢特点。这是一个FBA框架的第一个应用程序检查海洋共生社区未开垦的微生物之间的紧密代谢偶联,并提供了今后的努力重点放在这类专门系统的路线图。

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