Role of regulatory pathways and multi-omics approaches for carbon capture and mitigation in cyanobacteria

N Kumar, S Kar, P Shukla - Bioresource Technology, 2022 - Elsevier
Cyanobacteria are known for their metabolic potential and carbon capture and sequestration
capabilities. These cyanobacteria are not only an effective source for carbon minimization …

Role of regulatory pathways and multi-omics approaches for carbon capture and mitigation in cyanobacteria

N Kumar, S Kar, P Shukla - Bioresource Technology, 2022 - ui.adsabs.harvard.edu
Cyanobacteria are known for their metabolic potential and carbon capture and sequestration
capabilities. These cyanobacteria are not only an effective source for carbon minimization …

Role of regulatory pathways and multi-omics approaches for carbon capture and mitigation in cyanobacteria

N Kumar, S Kar, P Shukla - Bioresource technology, 2022 - pubmed.ncbi.nlm.nih.gov
Cyanobacteria are known for their metabolic potential and carbon capture and sequestration
capabilities. These cyanobacteria are not only an effective source for carbon minimization …

Role of regulatory pathways and multi-omics approaches for carbon capture and mitigation in Cyanobacteria.

N Kumar, S Kar, P Shukla - 2022 - cabidigitallibrary.org
Cyanobacteria are known for their metabolic potential and carbon capture and sequestration
capabilities. These cyanobacteria are not only an effective source for carbon minimization …

Role of regulatory pathways and multi-omics approaches for carbon capture and mitigation in Cyanobacteria.

N Kumar, S Kar, P Shukla - Bioresource Technology, 2022 - europepmc.org
Cyanobacteria are known for their metabolic potential and carbon capture and sequestration
capabilities. These cyanobacteria are not only an effective source for carbon minimization …