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Characterization and modelling of interspecies electron transfer mechanisms and microbial community dynamics of a syntrophic association

机译:种间同养关系的种间电子传递机制和微生物群落动力学的表征和建模

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摘要

Syntrophic associations are central to microbial communities and thus have a fundamental role in the global carbon cycle. Despite biochemical approaches describing the physiological activity of these communities, there has been a lack of a mechanistic understanding of the relationship between complex nutritional and energetic dependencies and their functioning. Here we apply a multi-omic modelling workflow that combines genomic, transcriptomic and physiological data with genome-scale models to investigate dynamics and electron flow mechanisms in the syntrophic association of Geobacter metallireducens and Geobacter sulfurreducens. Genome-scale modelling of direct interspecies electron transfer reveals insights into the energetics of electron transfer mechanisms. While G. sulfurreducens adapts to rapid syntrophic growth by changes at the genomic and transcriptomic level, G. metallireducens responds only at the transcriptomic level. This multi-omic approach enhances our understanding of adaptive responses and factors that shape the evolution of syntrophic communities.
机译:养分协会是微生物群落的中心,因此在全球碳循环中具有重要作用。尽管有生物化学方法描述了这些群落的生理活动,但对复杂的营养和能量依赖性及其功能之间的关系缺乏机械理解。在这里,我们应用了多基因组建模工作流程,将基因组,转录组和生理学数据与基因组规模模型相结合,以研究金属还原性土壤杆菌和硫还原性土壤细菌的同养结合中的动力学和电子流机制。直接种间电子转移的基因组规模建模揭示了对电子转移机制的能量学的见解。硫还原菌通过基因组和转录组水平的变化适应快速的突触生长,而金属还原菌仅在转录组水平反应。这种多组学方法增强了我们对适应性反应和影响营养型群落进化的因素的理解。

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