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This study was conducted to probe the natural occurrence of a novel CO2-fixation pathway in Desulfovibrio G11.
ORGANISM(S): Desulfovibrio sp. G11 
2020-08-17 | PXD013114 | Pride
Replacing the Calvin cycle with the reductive glycine pathway in Cupriavidus necator
One-carbon (C1) feedstocks like formate could be energetically efficient substrates for sustainable microbial production of food, fuels and chemicals. Here, we replace the native energy-inefficient Calvin-Benson-Bassham (CBB) cycle in Cupriavidus necator with the more energy-efficient reductive glyc...
ORGANISM(S): Cupriavidus necator (strain ATCC 17699 / H16 / DSM 428 / Stanier 337) (Ralstonia eutropha) 
2025-02-15 | PXD059545 | Pride
This SuperSeries is composed of the following subset Series: GSE26195: Comparative physiology and transcriptional networks underlying the heat shock response in Populus trichocarpa, Arabidopsis thaliana and Glycine max [Populus] GSE26197: Comparative physiology and transcriptional networks underlyin...
ORGANISM(S): Glycine max 
These data belong to a metabolic engineering project that introduces the reductive glycine pathway for formate assimilation in Cupriavidus necator. As part of this project we performed short-term evolution of the bacterium Cupriavidus necator H16 to grow on glycine as sole carbon and energy source. ...
ORGANISM(S): Cupriavidus necator 
2020-06-06 | GSE151887 | GEO
Genomics
Reductive Glycine pathway in P. putida (evolved genomes)
The heat shock response continues to be layered with additional complexity as interactions and cross-talk among heat shock proteins, the reactive oxygen network and hormonal signaling are discovered. However, comparative analyses exploring variation in each of these processes among species remains r...
ORGANISM(S): Arabidopsis thaliana 
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