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Microorganisms can function as anode catalysts to achieve biological nitrogen fixation while simultaneously generating bioelectricity. To date, only a limited number of microorganisms are capable of performing both outward and inward extracellular electron transfer (EET) concurrently. However, the v...
ORGANISM(S): Klebsiella Variicola Uci 18 
2025-12-01 | PXD071420 |
Photosynthetic linear electron transfer (LET) comprises a solar energy driven pathway tha directs electrons to the production of NADPH, via ferredoxin-NADP+ reductase (FNR), while generating a proton motive force (pmf) to drive ATP synthesis. Both NADPH and ATP are consumed for carbon fixation. Howe...
ORGANISM(S): Chlamydomonas reinhardtii 
2025-05-07 | PXD052753 | Pride
Geobacter sulfurreducens has a complex metabolism that adapts to use electron acceptors at a wide range of redox potentials. In this study, we used RNA-seq to identify genes associated with electron transfer pathways at different redox potentials. By correlating the RNA-seq data with cyclic voltamme...
ORGANISM(S): Geobacter sulfurreducens PCA 
2022-05-20 | GSE200066 | GEO
The light reactions of photosynthesis couple electron and proton transfers across the thylakoid membrane, generating NADPH for carbon fixation and a proton motive force (dominated by ΔpH in chloroplasts) to drive ATP production by the ATP synthase complex. Regulation of NADPH and ATP levels to meet ...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2023-03-06 | PXD033007 | Pride
Differential expression of genes in Geobacter sulfurreducens PCA under different electron acceptor and donor conditions
Whole-genome DNA microarray analysis of Geobacter sulfurreducens cells grown on Fe(III)-oxide or Mn(IV)-oxide versus cells grown on soluble Fe(III) citrate indicated that there were significant differences in transcription patterns during growth on the insoluble metal oxides compared to growth on so...
ORGANISM(S): Geobacter sulfurreducens 
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