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genetic and transcriptional study of glutathione metabolism in oenococcus oeni

genetic and transcriptional study of glutathione metabolism in oenococcus oeni Genome-scale modeling transcriptome analysis Leuconostoc mesenteroides unravel the redox governed metabolic states obligate heterofermentative lactic acid bacteria Multiomics reveals glutathione metabolism as

Multiomics reveals glutathione metabolism as a driver of bimodality during stem cell aging: Cell Metabolism The Glutathione System: A Journey from Cyanobacteria to Higher Eukaryotes Malolactic Fermentation: New Approaches to Old Problems PMC Frontiers Mapping the Physiological Response of Oenococcus oeni to Ethanol Stress Using an Extended Genome Scale Metabolic Model

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genetic and transcriptional study of glutathione metabolism in oenococcus oeni Genome-scale modeling transcriptome analysis Leuconostoc mesenteroides unravel the redox governed metabolic states obligate heterofermentative lactic acid bacteria Multiomics reveals glutathione metabolism as

This hypothesis aims to identify potential therapeutic targets for OCSCs

genetic and transcriptional study of glutathione metabolism in oenococcus oeni Genome-scale modeling transcriptome analysis Leuconostoc mesenteroides unravel the redox governed metabolic states obligate heterofermentative lactic acid bacteria Multiomics reveals glutathione metabolism as

Sanvee GM, Panajatovic MV, Bouitbir J, Krhenbhl S

genetic and transcriptional study of glutathione metabolism in oenococcus oeni Genome-scale modeling transcriptome analysis Leuconostoc mesenteroides unravel the redox governed metabolic states obligate heterofermentative lactic acid bacteria Multiomics reveals glutathione metabolism as

Values not sharing a common superscript (a,b,c..) differ significantly at p 0.05 (DMRT)

genetic and transcriptional study of glutathione metabolism in oenococcus oeni Genome-scale modeling transcriptome analysis Leuconostoc mesenteroides unravel the redox governed metabolic states obligate heterofermentative lactic acid bacteria Multiomics reveals glutathione metabolism as
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