File:All genes and their categories.xls
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All_genes_and_their_categories.xls (file size: 1.12 MB, MIME type: application/vnd.ms-excel)
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An Excel table with a list of all categories and sub-categories with all the genes in them.
File history
Click on a date/time to view the file as it appeared at that time.
Date/Time | Dimensions | User | Comment | |
---|---|---|---|---|
current | 12:56, 26 March 2013 | (1.12 MB) | Jstuelk (talk | contribs) | All genes and their functional categories, as of March 26, 2013 |
17:24, 13 January 2013 | (1.11 MB) | Jstuelk (talk | contribs) | A list of all genes with their functional categories as of January 2013 | |
17:35, 10 January 2013 | (1.12 MB) | Jstuelk (talk | contribs) | Functional classification of all genes as of January 10, 2013 | |
18:14, 1 November 2012 | (1.11 MB) | Jstuelk (talk | contribs) | An overview on the categories for all genes as of November 01, 2012 | |
18:15, 8 May 2012 | (1.1 MB) | Jstuelk (talk | contribs) | ||
19:07, 4 May 2012 | (1.1 MB) | Jstuelk (talk | contribs) | ||
19:03, 4 May 2012 | (1.1 MB) | Jstuelk (talk | contribs) | ||
19:11, 30 May 2011 | (1.09 MB) | Jstuelk (talk | contribs) | An Excel table with a list of all categories and sub-categories with all the genes in them. As of June 01, 2011 | |
21:25, 9 December 2010 | (1.08 MB) | Lflorez (talk | contribs) | An Excel table with a list of all categories and sub-categories with all the genes in them. |
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File usage
More than 100 pages link to this file. The following list shows the first 100 page links to this file only. A full list is available.
- ABC transporters
- ATP synthesis
- Acid stress proteins (controlled by SigO-RsoA)
- Acquisition of iron
- Biofilm formation
- Biosynthesis/ acquisition of amino acids
- Biosynthesis/ acquisition of nucleotides
- Biosynthesis of antibacterial compounds
- Biosynthesis of cell wall components
- Biosynthesis of cofactors
- Biosynthesis of lipids
- Capsule biosynthesis and degradation
- Carbon core metabolism
- Cell division
- Cell envelope stress proteins (controlled by SigM, V, W, X, Y)
- Cell shape
- Cell wall/ other
- Cell wall degradation/ turnover
- Cell wall synthesis
- Chaperones/ protein folding
- Cold stress proteins
- Coping with hyper-osmotic stress
- Coping with hypo-osmotic stress
- DEAD-box RNA helicases
- DNA condensation/ segregation
- DNA repair/ recombination
- DNA replication
- DNA restriction/ modification
- ECF transporter
- Electron transport/ other
- Essential genes
- GTP-binding proteins
- General stress proteins (controlled by SigB)
- Genetic competence
- Genetics/ other
- Germination
- Heat shock proteins
- Iron metabolism
- Lifestyles/ miscellaneous
- Lipid metabolism/ other
- Membrane dynamics
- Membrane proteins
- Metabolism of signalling nucleotides
- Metal ion homeostasis (K, Na, Ca, Mg)
- Miscellaneous metabolic pathways
- Mobile genetic elements
- Motility and chemotaxis
- NcRNA
- Nucleotide metabolism/ other
- PBSX prophage
- PH homeostasis
- Phage-related functions
- Phosphate metabolism
- Phosphoproteins
- Phosphorelay
- Phosphotransferase systems
- Poorly characterized/ putative enzymes
- Prophage 1
- Protein modification
- Protein secretion
- Proteins of unknown function
- Proteolysis
- Pseudogenes
- Putative amino acid transporter
- Quorum sensing
- RNA binding regulators
- RNA chaperones
- RNA polymerase
- RNases
- Regulators of core metabolism
- Regulators of electron transport
- Resistance against other toxic compounds (nitric oxide, phenolic acids, flavonoids, oxalate)
- Resistance against oxidative and electrophile stress
- Resistance against toxic metals
- Resistance against toxins/ antibiotics
- Respiration
- Ribosomal RNA
- SP-beta prophage
- Short peptides
- Sigma factors
- Sigma factors and their control
- Skin element
- Sporulation
- Sporulation/ other
- Sulfur metabolism
- TRNA
- Toxins, antitoxins and immunity against toxins
- Trace metal homeostasis (Cu, Zn, Ni, Mn, Mo)
- Transcription
- Transcription factors and their control
- Transition state regulators
- Translation
- Transporters/ other
- Trigger enzymes
- Universally conserved proteins
- Utilization of amino acids
- Utilization of lipids
- Utilization of nitrogen sources other than amino acids
- Utilization of nucleotides
- Utilization of specific carbon sources