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Updated: Jul 3, 2025

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Genetic Modification of Cyanobacteria by Conjugation Using the CyanoGate Modular Cloning Toolkit
Published on: October 31, 2019
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CyanoCyc cyanobacterial web portal
Lisa R Moore1, Ron Caspi1, Douglas A Campbell2
1SRI International, Menlo Park, CA, United States.
Frontiers in Microbiology
|February 15, 2024
Summary
CyanoCyc is a comprehensive web portal for cyanobacterial genomics, offering integrated databases and bioinformatics tools. This resource accelerates research by providing curated data and advanced analytical capabilities for the scientific community.
Area of Science:
- Microbiology
- Bioinformatics
- Genomics
Background:
- Cyanobacteria are crucial microorganisms with diverse applications in research and biotechnology.
- Existing resources for cyanobacterial genomic data and analysis tools are fragmented.
- There is a need for an integrated platform to support cyanobacterial research.
Purpose of the Study:
- To develop CyanoCyc, a web portal integrating cyanobacterial genome data with bioinformatics tools.
- To provide a centralized resource for researchers and biotechnologists working with cyanobacteria.
- To enhance the accessibility and usability of cyanobacterial genomic information.
Main Methods:
- Integration of 277 annotated cyanobacterial genomes.
- Inclusion of computational inferences (metabolic pathways, operons, protein complexes, orthologs).
- Importation of external data (protein features, Gene Ontology terms from UniProt).
- Manual curation of five genome databases with expert input and literature review.
- Development of bioinformatics tools for genome, pathway, and regulatory informatics, omics analysis, and comparative genomics.
Main Results:
- CyanoCyc provides a rich database of 277 cyanobacterial genomes with extensive annotations and computational inferences.
- The portal incorporates manually curated data from over 1,765 publications, ensuring high quality and accuracy.
- A suite of bioinformatics tools facilitates genome analysis, metabolic pathway exploration, regulatory informatics, omics data analysis, and comparative genomics.
- Interactive visualizations and expert mini-reviews enhance information discovery and gene function understanding.
Conclusions:
- CyanoCyc serves as a high-quality, reliable knowledgebase for cyanobacterial research.
- The integrated platform accelerates scientific discovery by enabling efficient information retrieval and analysis.
- CyanoCyc supports better decision-making for both fundamental and applied research in cyanobacterial biotechnology and science.
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