Cytophaga hutchinsonii D465 is an aerobe, Gram-negative, motile bacterium of the family Cytophagaceae.
Gram-negative motile aerobe genome sequence 16S sequence Bacteria| @ref 20215 |
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| Domain Bacteria |
| Phylum Bacteroidota |
| Class Cytophagia |
| Order Cytophagales |
| Family Cytophagaceae |
| Genus Cytophaga |
| Species Cytophaga hutchinsonii |
| Full scientific name Cytophaga hutchinsonii Winogradsky 1929 (Approved Lists 1980) |
| @ref | Name | Growth | Medium link | Composition | |
|---|---|---|---|---|---|
| 649 | CYTOPHAGA HUTCHINSONII MEDIUM (DSMZ Medium 160) | Medium recipe at MediaDive | Name: CYTOPHAGA HUTCHINSONII MEDIUM (DSMZ Medium 160) Composition: Agar 15.0 g/l Cellobiose 5.0 g/l Casitone 3.0 g/l CaCl2 x 2 H2O 1.36 g/l Yeast extract 1.0 g/l Distilled water | ||
| 40914 | MEDIUM 102 - for Cytophaga hutchinsonii | Distilled water make up to (1000.000 ml);Potassium chloride (0.500 g);Iron (II) sulphate heptahydrate (10.000 mg);Sodium nitrate (0.500 g);Magnesium sulphate heptahydrate (0.500 g);Agar (15.000 g);Di Potassium monohydrogenophosphate (1.000 g) | |||
| 119991 | CIP Medium 102 | Medium recipe at CIP |
| @ref | Spore formation | Confidence | |
|---|---|---|---|
| 125439 | 99.056 |
| 43399 | Observationrequires direct contact with cellulose for ef?cient digestion |
| @ref | Chebi-ID | Metabolite | Utilization activity | Kind of utilization tested | |
|---|---|---|---|---|---|
| 43399 | 22599 ChEBI | arabinose | - | assimilation | |
| 43399 | 17057 ChEBI | cellobiose | + | assimilation | |
| 43399 | 62968 ChEBI | cellulose | + | assimilation | |
| 43399 | 62968 ChEBI | cellulose | + | carbon source | |
| 43399 | 62968 ChEBI | cellulose | + | energy source | |
| 119991 | 4853 ChEBI | esculin | + | hydrolysis | |
| 43399 | 17234 ChEBI | glucose | + | assimilation | |
| 43399 | 17234 ChEBI | glucose | + | respiration | |
| 43399 | 17234 ChEBI | glucose | + | carbon source | |
| 43399 | 17234 ChEBI | glucose | + | energy source | |
| 119991 | 17632 ChEBI | nitrate | + | reduction | |
| 119991 | 16301 ChEBI | nitrite | - | reduction | |
| 43399 | 17309 ChEBI | pectin | - | assimilation | |
| 119991 | 132112 ChEBI | sodium thiosulfate | - | builds gas from | |
| 43399 | 37166 ChEBI | xylan | - | carbon source | |
| 43399 | 37166 ChEBI | xylan | - | energy source | |
| 43399 | 18222 ChEBI | xylose | - | assimilation |
| @ref | pathway | enzyme coverage | annotated reactions | external links | |
|---|---|---|---|---|---|
| 66794 | cellulose degradation | 100 | 5 of 5 | ||
| 66794 | sulfopterin metabolism | 100 | 4 of 4 | ||
| 66794 | coenzyme A metabolism | 100 | 4 of 4 | ||
| 66794 | formaldehyde oxidation | 100 | 3 of 3 | ||
| 66794 | vitamin K metabolism | 100 | 5 of 5 | ||
| 66794 | methylglyoxal degradation | 100 | 5 of 5 | ||
| 66794 | biotin biosynthesis | 100 | 4 of 4 | ||
| 66794 | glycogen metabolism | 100 | 5 of 5 | ||
| 66794 | ppGpp biosynthesis | 100 | 4 of 4 | ||
| 66794 | acetate fermentation | 100 | 4 of 4 | ||
| 66794 | denitrification | 100 | 2 of 2 | ||
| 66794 | CDP-diacylglycerol biosynthesis | 100 | 2 of 2 | ||
| 66794 | anapleurotic synthesis of oxalacetate | 100 | 1 of 1 | ||
| 66794 | folate polyglutamylation | 100 | 1 of 1 | ||
| 66794 | adipate degradation | 100 | 2 of 2 | ||
| 66794 | aerobactin biosynthesis | 100 | 1 of 1 | ||
| 66794 | ceramide biosynthesis | 100 | 1 of 1 | ||
| 66794 | suberin monomers biosynthesis | 100 | 2 of 2 | ||
| 66794 | UDP-GlcNAc biosynthesis | 100 | 3 of 3 | ||
| 66794 | palmitate biosynthesis | 95.45 | 21 of 22 | ||
| 66794 | starch degradation | 90 | 9 of 10 | ||
| 66794 | NAD metabolism | 88.89 | 16 of 18 | ||
| 66794 | d-mannose degradation | 88.89 | 8 of 9 | ||
| 66794 | chorismate metabolism | 88.89 | 8 of 9 | ||
| 66794 | lipid A biosynthesis | 88.89 | 8 of 9 | ||
| 66794 | isoleucine metabolism | 87.5 | 7 of 8 | ||
| 66794 | tetrahydrofolate metabolism | 85.71 | 12 of 14 | ||
| 66794 | threonine metabolism | 80 | 8 of 10 | ||
| 66794 | glycine betaine biosynthesis | 80 | 4 of 5 | ||
| 66794 | peptidoglycan biosynthesis | 80 | 12 of 15 | ||
| 66794 | heme metabolism | 78.57 | 11 of 14 | ||
| 66794 | photosynthesis | 78.57 | 11 of 14 | ||
| 66794 | serine metabolism | 77.78 | 7 of 9 | ||
| 66794 | valine metabolism | 77.78 | 7 of 9 | ||
| 66794 | molybdenum cofactor biosynthesis | 77.78 | 7 of 9 | ||
| 66794 | aspartate and asparagine metabolism | 77.78 | 7 of 9 | ||
| 66794 | lipid metabolism | 77.42 | 24 of 31 | ||
| 66794 | vitamin B1 metabolism | 76.92 | 10 of 13 | ||
| 66794 | leucine metabolism | 76.92 | 10 of 13 | ||
| 66794 | phenylalanine metabolism | 76.92 | 10 of 13 | ||
| 66794 | glycogen biosynthesis | 75 | 3 of 4 | ||
| 66794 | C4 and CAM-carbon fixation | 75 | 6 of 8 | ||
| 66794 | 6-hydroxymethyl-dihydropterin diphosphate biosynthesis | 75 | 6 of 8 | ||
| 66794 | CMP-KDO biosynthesis | 75 | 3 of 4 | ||
| 66794 | flavin biosynthesis | 73.33 | 11 of 15 | ||
| 66794 | pentose phosphate pathway | 72.73 | 8 of 11 | ||
| 66794 | reductive acetyl coenzyme A pathway | 71.43 | 5 of 7 | ||
| 66794 | cardiolipin biosynthesis | 71.43 | 5 of 7 | ||
| 66794 | glutamate and glutamine metabolism | 71.43 | 20 of 28 | ||
| 66794 | glycolysis | 70.59 | 12 of 17 | ||
| 66794 | Entner Doudoroff pathway | 70 | 7 of 10 | ||
| 66794 | urea cycle | 69.23 | 9 of 13 | ||
| 66794 | pyrimidine metabolism | 68.89 | 31 of 45 | ||
| 66794 | tryptophan metabolism | 68.42 | 26 of 38 | ||
| 66794 | acetoin degradation | 66.67 | 2 of 3 | ||
| 66794 | octane oxidation | 66.67 | 2 of 3 | ||
| 66794 | lysine metabolism | 66.67 | 28 of 42 | ||
| 66794 | L-lactaldehyde degradation | 66.67 | 2 of 3 | ||
| 66794 | acetyl CoA biosynthesis | 66.67 | 2 of 3 | ||
| 66794 | CO2 fixation in Crenarchaeota | 66.67 | 6 of 9 | ||
| 66794 | alanine metabolism | 65.52 | 19 of 29 | ||
| 66794 | isoprenoid biosynthesis | 65.38 | 17 of 26 | ||
| 66794 | purine metabolism | 64.89 | 61 of 94 | ||
| 66794 | vitamin B6 metabolism | 63.64 | 7 of 11 | ||
| 66794 | ketogluconate metabolism | 62.5 | 5 of 8 | ||
| 66794 | gluconeogenesis | 62.5 | 5 of 8 | ||
| 66794 | dTDPLrhamnose biosynthesis | 62.5 | 5 of 8 | ||
| 66794 | methionine metabolism | 61.54 | 16 of 26 | ||
| 66794 | non-pathway related | 60.53 | 23 of 38 | ||
| 66794 | 3-chlorocatechol degradation | 60 | 3 of 5 | ||
| 66794 | coenzyme M biosynthesis | 60 | 6 of 10 | ||
| 66794 | metabolism of amino sugars and derivatives | 60 | 3 of 5 | ||
| 66794 | histidine metabolism | 58.62 | 17 of 29 | ||
| 66794 | citric acid cycle | 57.14 | 8 of 14 | ||
| 66794 | ubiquinone biosynthesis | 57.14 | 4 of 7 | ||
| 66794 | propanol degradation | 57.14 | 4 of 7 | ||
| 66794 | cysteine metabolism | 55.56 | 10 of 18 | ||
| 66794 | metabolism of disaccharids | 54.55 | 6 of 11 | ||
| 66794 | d-xylose degradation | 54.55 | 6 of 11 | ||
| 66794 | arginine metabolism | 54.17 | 13 of 24 | ||
| 66794 | sulfate reduction | 53.85 | 7 of 13 | ||
| 66794 | phenylpropanoid biosynthesis | 53.85 | 7 of 13 | ||
| 66794 | polyamine pathway | 52.17 | 12 of 23 | ||
| 66794 | oxidative phosphorylation | 51.65 | 47 of 91 | ||
| 66794 | ethanol fermentation | 50 | 1 of 2 | ||
| 66794 | pantothenate biosynthesis | 50 | 3 of 6 | ||
| 66794 | kanosamine biosynthesis II | 50 | 1 of 2 | ||
| 66794 | selenocysteine biosynthesis | 50 | 3 of 6 | ||
| 66794 | cis-vaccenate biosynthesis | 50 | 1 of 2 | ||
| 66794 | degradation of aromatic, nitrogen containing compounds | 50 | 6 of 12 | ||
| 66794 | quinate degradation | 50 | 1 of 2 | ||
| 66794 | vitamin E metabolism | 50 | 2 of 4 | ||
| 66794 | proline metabolism | 45.45 | 5 of 11 | ||
| 66794 | nitrate assimilation | 44.44 | 4 of 9 | ||
| 66794 | glutathione metabolism | 42.86 | 6 of 14 | ||
| 66794 | ascorbate metabolism | 40.91 | 9 of 22 | ||
| 66794 | propionate fermentation | 40 | 4 of 10 | ||
| 66794 | glycine metabolism | 40 | 4 of 10 | ||
| 66794 | lipoate biosynthesis | 40 | 2 of 5 | ||
| 66794 | degradation of pentoses | 39.29 | 11 of 28 | ||
| 66794 | tyrosine metabolism | 35.71 | 5 of 14 | ||
| 66794 | cyanate degradation | 33.33 | 1 of 3 | ||
| 66794 | glycolate and glyoxylate degradation | 33.33 | 2 of 6 | ||
| 66794 | (5R)-carbapenem carboxylate biosynthesis | 33.33 | 1 of 3 | ||
| 66794 | sphingosine metabolism | 33.33 | 2 of 6 | ||
| 66794 | enterobactin biosynthesis | 33.33 | 1 of 3 | ||
| 66794 | IAA biosynthesis | 33.33 | 1 of 3 | ||
| 66794 | carotenoid biosynthesis | 31.82 | 7 of 22 | ||
| 66794 | myo-inositol biosynthesis | 30 | 3 of 10 | ||
| 66794 | degradation of hexoses | 27.78 | 5 of 18 | ||
| 66794 | arachidonic acid metabolism | 27.78 | 5 of 18 | ||
| 66794 | cholesterol biosynthesis | 27.27 | 3 of 11 | ||
| 66794 | dolichyl-diphosphooligosaccharide biosynthesis | 27.27 | 3 of 11 | ||
| 66794 | 3-phenylpropionate degradation | 26.67 | 4 of 15 | ||
| 66794 | phenol degradation | 25 | 5 of 20 | ||
| 66794 | toluene degradation | 25 | 1 of 4 | ||
| 66794 | lactate fermentation | 25 | 1 of 4 | ||
| 66794 | androgen and estrogen metabolism | 25 | 4 of 16 | ||
| 66794 | butanoate fermentation | 25 | 1 of 4 | ||
| 66794 | carnitine metabolism | 25 | 2 of 8 | ||
| 66794 | degradation of sugar alcohols | 25 | 4 of 16 | ||
| 66794 | cyclohexanol degradation | 25 | 1 of 4 | ||
| 66794 | allantoin degradation | 22.22 | 2 of 9 |
Global distribution of 16S sequence NR_102866 (>99% sequence identity) for Cytophaga hutchinsonii subclade from Microbeatlas ![]()
| @ref | Description | Assembly level | INSDC accession | BV-BRC accession | IMG accession | NCBI tax ID | Score | |
|---|---|---|---|---|---|---|---|---|
| 66792 | ASM1414v1 assembly for Cytophaga hutchinsonii ATCC 33406 | complete | 269798 | 99 | ||||
| 67770 | IMG-taxon 2616644809 annotated assembly for Cytophaga hutchinsonii ATCC 33406 DSM 1761 | scaffold | 269798 | 70.6 |
| @ref | Description | Accession | Length | Database | NCBI tax ID | |
|---|---|---|---|---|---|---|
| 20218 | Cytophaga hutchinsonii 16S ribosomal RNA | M58768 | 1473 | 985 | ||
| 20218 | Cytophaga hutchinsonii gene for 16S ribosomal RNA, partial sequence | D12663 | 1258 | 269798 | ||
| 20218 | Cytophaga hutchinsonii gene for 16S ribosomal RNA, partial sequence, strain: NBRC 15051 | AB517710 | 1446 | 985 | ||
| 649 | Cytophaga hutchinsonii ATCC 33406 16S ribosomal RNA, partial sequence | NR_102866 | 1509 | 269798 |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125439 | oxygen_tolerance | BacteriaNetⓘ | obligate aerobe | 95.52 | no |
| 125439 | gram_stain | BacteriaNetⓘ | negative | 96.74 | no |
| 125439 | motility | BacteriaNetⓘ | no | 75.02 | no |
| 125439 | spore_formation | BacteriaNetⓘ | no | 99.06 | no |
| @ref | Trait | Model | Prediction | Confidence in % | In training data |
|---|---|---|---|---|---|
| 125438 | gram-positive | gram-positiveⓘ | no | 95.23 | no |
| 125438 | anaerobic | anaerobicⓘ | no | 94.38 | yes |
| 125438 | aerobic | aerobicⓘ | yes | 84.66 | yes |
| 125438 | spore-forming | spore-formingⓘ | no | 84.78 | no |
| 125438 | thermophilic | thermophileⓘ | no | 94.46 | no |
| 125438 | flagellated | motile2+ⓘ | no | 86.00 | no |
| Topic | Title | Authors | Journal | DOI | Year | |
|---|---|---|---|---|---|---|
| Enzymology | Ugd Is Involved in the Synthesis of Glycans of Glycoprotein and LPS and Is Important for Cellulose Degradation in Cytophaga hutchinsonii. | Song W, Geng S, Qi Q, Lu X. | Microorganisms | 10.3390/microorganisms13020395 | 2025 | |
| SGBP-B-like bimodular cellulose-binding protein CHU_1279 is essential for cellulose utilization by Cytophaga hutchinsonii. | Zhang W, Li L, Li T, Li X, Wang X, Yao Q, Lu X, Chen G, Liu W. | Appl Environ Microbiol | 10.1128/aem.02471-24 | 2025 | ||
| Glycosyltransferase-Related Protein GtrA Is Essential for Localization of Type IX Secretion System Cargo Protein Cellulase Cel9A and Affects Cellulose Degradation in Cytophaga hutchinsonii. | Xie S, Huang Q, Tan R, Zhang W, Qi Q, Lu X. | Appl Environ Microbiol | 10.1128/aem.01076-22 | 2022 | ||
| Identification and characterization of two AA9 lytic polysaccharide monooxygenases isolated from the enzymatic arsenal in Phanerochaete chrysosporium. | Xu X, Chu CE, Li N, Sun XB, Han J, Xu Z, Liu Y, Wang JK, Zhang TT, Wang Q. | Bioresour Bioprocess | 10.1186/s40643-025-00950-0 | 2025 | ||
| A Type IX Secretion System Substrate Involved in Crystalline Cellulose Degradation by Affecting Crucial Cellulose Binding Proteins in Cytophaga hutchinsonii. | Gao L, Su Y, Song W, Zhang W, Qi Q, Lu X. | Appl Environ Microbiol | 10.1128/aem.01837-21 | 2022 | ||
| N-Glycosylation of a Cargo Protein C-Terminal Domain Recognized by the Type IX Secretion System in Cytophaga hutchinsonii Affects Protein Secretion and Localization. | Xie S, Tan Y, Song W, Zhang W, Qi Q, Lu X. | Appl Environ Microbiol | 10.1128/aem.01606-21 | 2022 | ||
| Identification of the Type IX Secretion System Component, PorV (CHU_3238), Involved in Secretion and Localization of Proteins in Cytophaga hutchinsonii. | Zhao D, Song W, Wang S, Zhang W, Zhao Y, Lu X. | Front Microbiol | 10.3389/fmicb.2021.742673 | 2021 | ||
| Synthetic Biology Pathway to Nucleoside Triphosphates for Expanded Genetic Alphabets. | Li Y, Abraham C, Suslov O, Yaren O, Shaw RW, Kim MJ, Wan S, Marliere P, Benner SA. | ACS Synth Biol | 10.1021/acssynbio.3c00060 | 2023 | ||
| Metabolism | A Disulfide Oxidoreductase (CHU_1165) Is Essential for Cellulose Degradation by Affecting Outer Membrane Proteins in Cytophaga hutchinsonii. | Zhao D, Wang Y, Wang S, Zhang W, Qi Q, Lu X. | Appl Environ Microbiol | 10.1128/aem.02789-19 | 2020 | |
| Cytophaga hutchinsonii SprA and SprT Are Essential Components of the Type IX Secretion System Required for Ca2+ Acquisition, Cellulose Degradation, and Cell Motility. | Gao L, Tan Y, Zhang W, Qi Q, Lu X. | Front Microbiol | 10.3389/fmicb.2021.628555 | 2021 | ||
| Metabolism | Cytophaga hutchinsonii gldN, Encoding a Core Component of the Type IX Secretion System, Is Essential for Ion Assimilation, Cellulose Degradation, and Cell Motility. | Gao L, Guan Z, Gao P, Zhang W, Qi Q, Lu X. | Appl Environ Microbiol | 10.1128/aem.00242-20 | 2020 | |
| LolA and LolB are conserved in Bacteroidota and are crucial for gliding motility and Type IX secretion. | De Smet T, Baland E, Giovannercole F, Mignon J, Lizen L, Dugauquier R, Lauber F, Dieu M, Lima-Mendez G, Michaux C, Devos D, Renzi F. | Commun Biol | 10.1038/s42003-025-07817-2 | 2025 | ||
| Phylogeny | Bamboo lignocellulose degradation by gut symbiotic microbiota of the bamboo snout beetle Cyrtotrachelus buqueti. | Luo C, Li Y, Chen Y, Fu C, Long W, Xiao X, Liao H, Yang Y. | Biotechnol Biofuels | 10.1186/s13068-019-1411-1 | 2019 | |
| Deletion of a Gene Encoding a Putative Peptidoglycan-Associated Lipoprotein Prevents Degradation of the Crystalline Region of Cellulose in Cytophaga hutchinsonii. | Wang X, Wang Z, Bai X, Zhao Y, Zhang W, Lu X. | Front Microbiol | 10.3389/fmicb.2018.00632 | 2018 | ||
| Metabolism | An Extracytoplasmic Function Sigma Factor Controls Cellulose Utilization by Regulating the Expression of an Outer Membrane Protein in Cytophaga hutchinsonii. | Wang X, Zhang W, Zhou H, Chen G, Liu W. | Appl Environ Microbiol | 10.1128/aem.02606-18 | 2019 | |
| Functional Studies of beta-Glucosidases of Cytophaga hutchinsonii and Their Effects on Cellulose Degradation. | Bai X, Wang X, Wang S, Ji X, Guan Z, Zhang W, Lu X. | Front Microbiol | 10.3389/fmicb.2017.00140 | 2017 | ||
| Metabolism | Identification and Characterization of a Large Protein Essential for Degradation of the Crystalline Region of Cellulose by Cytophaga hutchinsonii. | Wang S, Zhao D, Bai X, Zhang W, Lu X. | Appl Environ Microbiol | 10.1128/aem.02270-16 | 2017 | |
| Draft Genome Sequence of Cellulose-Digesting Bacterium Sporocytophaga myxococcoides PG-01. | Liu L, Gao P, Chen G, Wang L. | Genome Announc | 10.1128/genomea.01154-14 | 2014 | ||
| A Putative Type II Secretion System Is Involved in Cellulose Utilization in Cytophaga hutchisonii. | Wang X, Han Q, Chen G, Zhang W, Liu W. | Front Microbiol | 10.3389/fmicb.2017.01482 | 2017 | ||
| Draft Genome Sequence of Cesiribacter andamanensis Strain AMV16T, Isolated from a Soil Sample from a Mud Volcano in the Andaman Islands, India. | Shivaji S, Ara S, Begum Z, Srinivas TN, Singh A, Kumar Pinnaka A. | Genome Announc | 10.1128/genomea.00240-13 | 2013 | ||
| Metabolism | Novel outer membrane protein involved in cellulose and cellooligosaccharide degradation by Cytophaga hutchinsonii. | Ji X, Wang Y, Zhang C, Bai X, Zhang W, Lu X. | Appl Environ Microbiol | 10.1128/aem.00687-14 | 2014 | |
| Bioinformatics analysis of bacterial annexins--putative ancestral relatives of eukaryotic annexins. | Kodavali PK, Dudkiewicz M, Pikula S, Pawlowski K. | PLoS One | 10.1371/journal.pone.0085428 | 2014 | ||
| Genetics | FLP-FRT-based method to obtain unmarked deletions of CHU_3237 (porU) and large genomic fragments of Cytophaga hutchinsonii. | Wang Y, Wang Z, Cao J, Guan Z, Lu X. | Appl Environ Microbiol | 10.1128/aem.01785-14 | 2014 | |
| Transcriptome | Genome sequence of the alkaliphilic bacterium Nitritalea halalkaliphila type strain LW7, isolated from Lonar Lake, India. | Jangir PK, Singh A, Shivaji S, Sharma R. | J Bacteriol | 10.1128/jb.01302-12 | 2012 | |
| Phylogeny | Automatic identification of optimal marker genes for phenotypic and taxonomic groups of microorganisms. | Segev E, Pasternak Z, Ben Sasson T, Jurkevitch E, Gonen M. | PLoS One | 10.1371/journal.pone.0195537 | 2018 | |
| Metabolism | Periplasmic Cytophaga hutchinsonii Endoglucanases Are Required for Use of Crystalline Cellulose as the Sole Source of Carbon and Energy. | Zhu Y, Han L, Hefferon KL, Silvaggi NR, Wilson DB, McBride MJ. | Appl Environ Microbiol | 10.1128/aem.01298-16 | 2016 | |
| Metabolism | An Outer Membrane Protein Involved in the Uptake of Glucose Is Essential for Cytophaga hutchinsonii Cellulose Utilization. | Zhou H, Wang X, Yang T, Zhang W, Chen G, Liu W. | Appl Environ Microbiol | 10.1128/aem.03939-15 | 2016 | |
| Carotenoid Cocktail Produced by An Antarctic Soil Flavobacterium with Biotechnological Potential. | Pradel P, Calisto N, Navarro L, Barriga A, Vera N, Aranda C, Simpfendorfer R, Valdes N, Corsini G, Tello M, Gonzalez AR. | Microorganisms | 10.3390/microorganisms9122419 | 2021 | ||
| Genetics | DoriC 5.0: an updated database of oriC regions in both bacterial and archaeal genomes. | Gao F, Luo H, Zhang CT. | Nucleic Acids Res | 10.1093/nar/gks990 | 2013 | |
| Genetics | Metagenomic analysis of soybean endosphere microbiome to reveal signatures of microbes for health and disease. | Chouhan U, Gamad U, Choudhari JK. | J Genet Eng Biotechnol | 10.1186/s43141-023-00535-4 | 2023 | |
| Isolation and Biochemical Characterization of Six Anaerobic Fungal Strains from Zoo Animal Feces. | Stabel M, Schweitzer T, Haack K, Gorenflo P, Aliyu H, Ochsenreither K. | Microorganisms | 10.3390/microorganisms9081655 | 2021 | ||
| Metabolism | Presence of a Haloarchaeal Halorhodopsin-Like Cl- Pump in Marine Bacteria. | Nakajima Y, Tsukamoto T, Kumagai Y, Ogura Y, Hayashi T, Song J, Kikukawa T, Demura M, Kogure K, Sudo Y, Yoshizawa S. | Microbes Environ | 10.1264/jsme2.me17197 | 2018 | |
| Genetics | Genomic arrangement of bacterial operons is constrained by biological pathways encoded in the genome. | Yin Y, Zhang H, Olman V, Xu Y. | Proc Natl Acad Sci U S A | 10.1073/pnas.0911237107 | 2010 | |
| Metabolism | Diverse C-Terminal Sequences Involved in Flavobacterium johnsoniae Protein Secretion. | Kulkarni SS, Zhu Y, Brendel CJ, McBride MJ. | J Bacteriol | 10.1128/jb.00884-16 | 2017 | |
| In silico characterization of pectate lyase protein sequences from different source organisms. | Dubey AK, Yadav S, Kumar M, Singh VK, Sarangi BK, Yadav D. | Enzyme Res | 10.4061/2010/950230 | 2010 | ||
| Solar-panel and parasol strategies shape the proteorhodopsin distribution pattern in marine Flavobacteriia. | Kumagai Y, Yoshizawa S, Nakajima Y, Watanabe M, Fukunaga T, Ogura Y, Hayashi T, Oshima K, Hattori M, Ikeuchi M, Kogure K, DeLong EF, Iwasaki W. | ISME J | 10.1038/s41396-018-0058-4 | 2018 | ||
| Genetics | Metagenome reveals potential microbial degradation of hydrocarbon coupled with sulfate reduction in an oil-immersed chimney from Guaymas Basin. | He Y, Xiao X, Wang F. | Front Microbiol | 10.3389/fmicb.2013.00148 | 2013 | |
| Metabolism | Distribution of glucan-branching enzymes among prokaryotes. | Suzuki E, Suzuki R. | Cell Mol Life Sci | 10.1007/s00018-016-2243-9 | 2016 | |
| Genetics | Metagenomic sequencing of marine periphyton: taxonomic and functional insights into biofilm communities. | Sanli K, Bengtsson-Palme J, Nilsson RH, Kristiansson E, Alm Rosenblad M, Blanck H, Eriksson KM. | Front Microbiol | 10.3389/fmicb.2015.01192 | 2015 | |
| Metabolism | Ethanolamine utilization in Vibrio alginolyticus. | Khatri N, Khatri I, Subramanian S, Raychaudhuri S. | Biol Direct | 10.1186/1745-6150-7-45 | 2012 | |
| Crystallization and preliminary X-ray crystallographic analysis of an ice-binding protein (FfIBP) from Flavobacterium frigoris PS1. | Do H, Lee JH, Lee SG, Kim HJ. | Acta Crystallogr Sect F Struct Biol Cryst Commun | 10.1107/s1744309112020465 | 2012 | ||
| Metabolism | Two new xylanases with different substrate specificities from the human gut bacterium Bacteroides intestinalis DSM 17393. | Hong PY, Iakiviak M, Dodd D, Zhang M, Mackie RI, Cann I. | Appl Environ Microbiol | 10.1128/aem.03176-13 | 2014 | |
| Transcriptome | Genome sequence of the cellulolytic gliding bacterium Cytophaga hutchinsonii. | Xie G, Bruce DC, Challacombe JF, Chertkov O, Detter JC, Gilna P, Han CS, Lucas S, Misra M, Myers GL, Richardson P, Tapia R, Thayer N, Thompson LS, Brettin TS, Henrissat B, Wilson DB, McBride MJ. | Appl Environ Microbiol | 10.1128/aem.00225-07 | 2007 | |
| Phylogeny | Related giant viruses in distant locations and different habitats: Acanthamoeba polyphaga moumouvirus represents a third lineage of the Mimiviridae that is close to the megavirus lineage. | Yoosuf N, Yutin N, Colson P, Shabalina SA, Pagnier I, Robert C, Azza S, Klose T, Wong J, Rossmann MG, La Scola B, Raoult D, Koonin EV. | Genome Biol Evol | 10.1093/gbe/evs109 | 2012 | |
| Metabolism | Structural basis for antifreeze activity of ice-binding protein from arctic yeast. | Lee JH, Park AK, Do H, Park KS, Moh SH, Chi YM, Kim HJ. | J Biol Chem | 10.1074/jbc.m111.331835 | 2012 | |
| Metabolism | A protein secretion system linked to bacteroidete gliding motility and pathogenesis. | Sato K, Naito M, Yukitake H, Hirakawa H, Shoji M, McBride MJ, Rhodes RG, Nakayama K. | Proc Natl Acad Sci U S A | 10.1073/pnas.0912010107 | 2010 | |
| Relevance of GC content to the conservation of DNA polymerase III/mismatch repair system in Gram-positive bacteria. | Akashi M, Yoshikawa H. | Front Microbiol | 10.3389/fmicb.2013.00266 | 2013 | ||
| Genetics | Comparison of genomic data via statistical distribution. | Amiri S, Dinov ID. | J Theor Biol | 10.1016/j.jtbi.2016.07.032 | 2016 | |
| Metabolism | Nucleoid Size Scaling and Intracellular Organization of Translation across Bacteria. | Gray WT, Govers SK, Xiang Y, Parry BR, Campos M, Kim S, Jacobs-Wagner C. | Cell | 10.1016/j.cell.2019.05.017 | 2019 | |
| Evolution of symbiotic bacteria in the distal human intestine. | Xu J, Mahowald MA, Ley RE, Lozupone CA, Hamady M, Martens EC, Henrissat B, Coutinho PM, Minx P, Latreille P, Cordum H, Van Brunt A, Kim K, Fulton RS, Fulton LA, Clifton SW, Wilson RK, Knight RD, Gordon JI. | PLoS Biol | 10.1371/journal.pbio.0050156 | 2007 | ||
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| The first prokaryotic trehalose synthase complex identified in the hyperthermophilic crenarchaeon Thermoproteus tenax. | Zaparty M, Hagemann A, Brasen C, Hensel R, Lupas AN, Brinkmann H, Siebers B. | PLoS One | 10.1371/journal.pone.0061354 | 2013 | ||
| Enzymology | Molecular cloning and transcriptional and expression analysis of engO, encoding a new noncellulosomal family 9 enzyme, from Clostridium cellulovorans. | Han SO, Yukawa H, Inui M, Doi RH. | J Bacteriol | 10.1128/jb.187.14.4884-4889.2005 | 2005 | |
| Structure of RavA MoxR AAA+ protein reveals the design principles of a molecular cage modulating the inducible lysine decarboxylase activity. | El Bakkouri M, Gutsche I, Kanjee U, Zhao B, Yu M, Goret G, Schoehn G, Burmeister WP, Houry WA. | Proc Natl Acad Sci U S A | 10.1073/pnas.1009092107 | 2010 | ||
| Pathogenicity | Identification and molecular characterization of a beta-1,4-endoglucanase gene (Rr-eng-1) from Rotylenchulus reniformis. | Wubben MJ, Ganji S, Callahan FE. | J Nematol | 2010 | ||
| Metabolism | GldI is a lipoprotein that is required for Flavobacterium johnsoniae gliding motility and chitin utilization. | McBride MJ, Braun TF. | J Bacteriol | 10.1128/jb.186.8.2295-2302.2004 | 2004 | |
| Metabolism | Mutations in Flavobacterium johnsoniae gldF and gldG disrupt gliding motility and interfere with membrane localization of GldA. | Hunnicutt DW, Kempf MJ, McBride MJ. | J Bacteriol | 10.1128/jb.184.9.2370-2378.2002 | 2002 | |
| Genetics | Assessing diversity of DNA structure-related sequence features in prokaryotic genomes. | Huang Y, Mrazek J. | DNA Res | 10.1093/dnares/dst057 | 2014 | |
| Metabolism | Flavobacterium johnsoniae GldH is a lipoprotein that is required for gliding motility and chitin utilization. | McBride MJ, Braun TF, Brust JL. | J Bacteriol | 10.1128/jb.185.22.6648-6657.2003 | 2003 | |
| Phylogeny | Phylogenetic analysis of the phytochrome superfamily reveals distinct microbial subfamilies of photoreceptors. | Karniol B, Wagner JR, Walker JM, Vierstra RD. | Biochem J | 10.1042/bj20050826 | 2005 | |
| Enzymology | Architecture of the Bacteroides cellulosolvens cellulosome: description of a cell surface-anchoring scaffoldin and a family 48 cellulase. | Xu Q, Bayer EA, Goldman M, Kenig R, Shoham Y, Lamed R. | J Bacteriol | 10.1128/jb.186.4.968-977.2004 | 2004 | |
| Metabolism | Isolation and characterization of FecA- and FeoB-mediated iron acquisition systems of the spirochete Leptospira biflexa by random insertional mutagenesis. | Louvel H, Saint Girons I, Picardeau M. | J Bacteriol | 10.1128/jb.187.9.3249-3254.2005 | 2005 | |
| Genetics | Genome analysis of the proteorhodopsin-containing marine bacterium Polaribacter sp. MED152 (Flavobacteria). | Gonzalez JM, Fernandez-Gomez B, Fernandez-Guerra A, Gomez-Consarnau L, Sanchez O, Coll-Llado M, Del Campo J, Escudero L, Rodriguez-Martinez R, Alonso-Saez L, Latasa M, Paulsen I, Nedashkovskaya O, Lekunberri I, Pinhassi J, Pedros-Alio C. | Proc Natl Acad Sci U S A | 10.1073/pnas.0712027105 | 2008 | |
| Metabolism | Genomics of the proteorhodopsin-containing marine flavobacterium Dokdonia sp. strain MED134. | Gonzalez JM, Pinhassi J, Fernandez-Gomez B, Coll-Llado M, Gonzalez-Velazquez M, Puigbo P, Jaenicke S, Gomez-Consarnau L, Fernandez-Guerra A, Goesmann A, Pedros-Alio C. | Appl Environ Microbiol | 10.1128/aem.06152-11 | 2011 | |
| Metabolism | Cel9D, an atypical 1,4-beta-D-glucan glucohydrolase from Fibrobacter succinogenes: characteristics, catalytic residues, and synergistic interactions with other cellulases. | Qi M, Jun HS, Forsberg CW. | J Bacteriol | 10.1128/jb.01667-07 | 2008 | |
| Metabolism | Genome, transcriptome, and secretome analysis of wood decay fungus Postia placenta supports unique mechanisms of lignocellulose conversion. | Martinez D, Challacombe J, Morgenstern I, Hibbett D, Schmoll M, Kubicek CP, Ferreira P, Ruiz-Duenas FJ, Martinez AT, Kersten P, Hammel KE, Vanden Wymelenberg A, Gaskell J, Lindquist E, Sabat G, Bondurant SS, Larrondo LF, Canessa P, Vicuna R, Yadav J, Doddapaneni H, Subramanian V, Pisabarro AG, Lavin JL, Oguiza JA, Master E, Henrissat B, Coutinho PM, Harris P, Magnuson JK, Baker SE, Bruno K, Kenealy W, Hoegger PJ, Kues U, Ramaiya P, Lucas S, Salamov A, Shapiro H, Tu H, Chee CL, Misra M, Xie G, Teter S, Yaver D, James T, Mokrejs M, Pospisek M, Grigoriev IV, Brettin T, Rokhsar D, Berka R, Cullen D. | Proc Natl Acad Sci U S A | 10.1073/pnas.0809575106 | 2009 | |
| Metabolism | Evolutionary convergence and nitrogen metabolism in Blattabacterium strain Bge, primary endosymbiont of the cockroach Blattella germanica. | Lopez-Sanchez MJ, Neef A, Pereto J, Patino-Navarrete R, Pignatelli M, Latorre A, Moya A. | PLoS Genet | 10.1371/journal.pgen.1000721 | 2009 | |
| Metabolism | Glutamine versus ammonia utilization in the NAD synthetase family. | De Ingeniis J, Kazanov MD, Shatalin K, Gelfand MS, Osterman AL, Sorci L. | PLoS One | 10.1371/journal.pone.0039115 | 2012 | |
| Enzymology | Processive endoglucanases mediate degradation of cellulose by Saccharophagus degradans. | Watson BJ, Zhang H, Longmire AG, Moon YH, Hutcheson SW. | J Bacteriol | 10.1128/jb.00481-09 | 2009 | |
| Genetics | Genome organization of the SARS-CoV. | Xu J, Hu J, Wang J, Han Y, Hu Y, Wen J, Li Y, Ji J, Ye J, Zhang Z, Wei W, Li S, Wang J, Wang J, Yu J, Yang H. | Genomics Proteomics Bioinformatics | 10.1016/s1672-0229(03)01028-3 | 2003 | |
| Rethinking proteasome evolution: two novel bacterial proteasomes. | Valas RE, Bourne PE. | J Mol Evol | 10.1007/s00239-008-9075-7 | 2008 | ||
| Enzymology | Three genomes from the phylum Acidobacteria provide insight into the lifestyles of these microorganisms in soils. | Ward NL, Challacombe JF, Janssen PH, Henrissat B, Coutinho PM, Wu M, Xie G, Haft DH, Sait M, Badger J, Barabote RD, Bradley B, Brettin TS, Brinkac LM, Bruce D, Creasy T, Daugherty SC, Davidsen TM, DeBoy RT, Detter JC, Dodson RJ, Durkin AS, Ganapathy A, Gwinn-Giglio M, Han CS, Khouri H, Kiss H, Kothari SP, Madupu R, Nelson KE, Nelson WC, Paulsen I, Penn K, Ren Q, Rosovitz MJ, Selengut JD, Shrivastava S, Sullivan SA, Tapia R, Thompson LS, Watkins KL, Yang Q, Yu C, Zafar N, Zhou L, Kuske CR. | Appl Environ Microbiol | 10.1128/aem.02294-08 | 2009 | |
| Metabolism | Evolution of the acyl-CoA binding protein (ACBP). | Burton M, Rose TM, Faergeman NJ, Knudsen J. | Biochem J | 10.1042/bj20050664 | 2005 | |
| Stochastic molecular model of enzymatic hydrolysis of cellulose for ethanol production. | Kumar D, Murthy GS. | Biotechnol Biofuels | 10.1186/1754-6834-6-63 | 2013 | ||
| Metabolism | Outer membrane proteins of Fibrobacter succinogenes with potential roles in adhesion to cellulose and in cellulose digestion. | Jun HS, Qi M, Gong J, Egbosimba EE, Forsberg CW. | J Bacteriol | 10.1128/jb.00560-07 | 2007 | |
| Metabolism | Identification of differential gene expression in bacteria associated with coral black band disease by using RNA-arbitrarily primed PCR. | Frias-Lopez J, Bonheyo GT, Fouke BW. | Appl Environ Microbiol | 10.1128/aem.70.6.3687-3694.2004 | 2004 | |
| Metabolism | Starch catabolism by a prominent human gut symbiont is directed by the recognition of amylose helices. | Koropatkin NM, Martens EC, Gordon JI, Smith TJ. | Structure | 10.1016/j.str.2008.03.017 | 2008 | |
| Metabolism | Porphyromonas gingivalis Type IX Secretion Substrates Are Cleaved and Modified by a Sortase-Like Mechanism. | Gorasia DG, Veith PD, Chen D, Seers CA, Mitchell HA, Chen YY, Glew MD, Dashper SG, Reynolds EC. | PLoS Pathog | 10.1371/journal.ppat.1005152 | 2015 | |
| Metabolism | Flavobacterium johnsoniae gldN and gldO are partially redundant genes required for gliding motility and surface localization of SprB. | Rhodes RG, Samarasam MN, Shrivastava A, van Baaren JM, Pochiraju S, Bollampalli S, McBride MJ. | J Bacteriol | 10.1128/jb.01495-09 | 2010 | |
| A protective immune response is generated in rainbow trout by an OmpH-like surface antigen (P18) of Flavobacterium psychrophilum. | Dumetz F, Duchaud E, LaPatra SE, Le Marrec C, Claverol S, Urdaci MC, Le Henaff M. | Appl Environ Microbiol | 10.1128/aem.00279-06 | 2006 | ||
| Metabolism | Caldicellulosiruptor core and pangenomes reveal determinants for noncellulosomal thermophilic deconstruction of plant biomass. | Blumer-Schuette SE, Giannone RJ, Zurawski JV, Ozdemir I, Ma Q, Yin Y, Xu Y, Kataeva I, Poole FL, Adams MW, Adams MW, Hamilton-Brehm SD, Elkins JG, Larimer FW, Land ML, Hauser LJ, Cottingham RW, Hettich RL, Kelly RM. | J Bacteriol | 10.1128/jb.00266-12 | 2012 | |
| Transcriptome | Novel features of the polysaccharide-digesting gliding bacterium Flavobacterium johnsoniae as revealed by genome sequence analysis. | McBride MJ, Xie G, Martens EC, Lapidus A, Henrissat B, Rhodes RG, Goltsman E, Wang W, Xu J, Hunnicutt DW, Staroscik AM, Hoover TR, Cheng YQ, Stein JL. | Appl Environ Microbiol | 10.1128/aem.01495-09 | 2009 | |
| Flavobacterium johnsoniae sprB is part of an operon spanning the additional gliding motility genes sprC, sprD, and sprF. | Rhodes RG, Nelson SS, Pochiraju S, McBride MJ. | J Bacteriol | 10.1128/jb.01203-10 | 2011 | ||
| Enzymology | Characterization of mimivirus DNA topoisomerase IB suggests horizontal gene transfer between eukaryal viruses and bacteria. | Benarroch D, Claverie JM, Raoult D, Shuman S. | J Virol | 10.1128/jvi.80.1.314-321.2006 | 2006 | |
| Genetics | Ecological genomics of marine Roseobacters. | Moran MA, Belas R, Schell MA, Gonzalez JM, Sun F, Sun S, Binder BJ, Edmonds J, Ye W, Orcutt B, Howard EC, Meile C, Palefsky W, Goesmann A, Ren Q, Paulsen I, Ulrich LE, Thompson LS, Saunders E, Buchan A. | Appl Environ Microbiol | 10.1128/aem.02580-06 | 2007 | |
| Metabolism | The complete genome sequence of Fibrobacter succinogenes S85 reveals a cellulolytic and metabolic specialist. | Suen G, Weimer PJ, Stevenson DM, Aylward FO, Boyum J, Deneke J, Drinkwater C, Ivanova NN, Mikhailova N, Chertkov O, Goodwin LA, Currie CR, Mead D, Brumm PJ. | PLoS One | 10.1371/journal.pone.0018814 | 2011 | |
| Phenotype | Inference of phenotype-defining functional modules of protein families for microbial plant biomass degraders. | Konietzny SG, Pope PB, Weimann A, McHardy AC. | Biotechnol Biofuels | 10.1186/s13068-014-0124-8 | 2014 | |
| Metabolism | Reconstructing the mosaic glycolytic pathway of the anaerobic eukaryote Monocercomonoides. | Liapounova NA, Hampl V, Gordon PM, Sensen CW, Gedamu L, Dacks JB. | Eukaryot Cell | 10.1128/ec.00258-06 | 2006 | |
| A mutation in Flavobacterium psychrophilum tlpB inhibits gliding motility and induces biofilm formation. | Alvarez B, Secades P, Prieto M, McBride MJ, Guijarro JA. | Appl Environ Microbiol | 10.1128/aem.00128-06 | 2006 | ||
| Genetics | Bacterial alpha2-macroglobulins: colonization factors acquired by horizontal gene transfer from the metazoan genome? | Budd A, Blandin S, Levashina EA, Gibson TJ. | Genome Biol | 10.1186/gb-2004-5-6-r38 | 2004 | |
| Architecture of Burkholderia cepacia complex sigma70 gene family: evidence of alternative primary and clade-specific factors, and genomic instability. | Menard A, de Los Santos PE, Graindorge A, Cournoyer B. | BMC Genomics | 10.1186/1471-2164-8-308 | 2007 | ||
| Enzymology | Pyruvate:quinone oxidoreductase in Corynebacterium glutamicum: molecular analysis of the pqo gene, significance of the enzyme, and phylogenetic aspects. | Schreiner ME, Riedel C, Holatko J, Patek M, Eikmanns BJ. | J Bacteriol | 10.1128/jb.188.4.1341-1350.2006 | 2006 | |
| Metabolism | Comparative and functional genomic analysis of prokaryotic nickel and cobalt uptake transporters: evidence for a novel group of ATP-binding cassette transporters. | Rodionov DA, Hebbeln P, Gelfand MS, Eitinger T. | J Bacteriol | 10.1128/jb.188.1.317-327.2006 | 2006 | |
| Flavobacterium johnsoniae gliding motility genes identified by mariner mutagenesis. | Braun TF, Khubbar MK, Saffarini DA, McBride MJ. | J Bacteriol | 10.1128/jb.187.20.6943-6952.2005 | 2005 | ||
| Metabolism | Flavobacterium johnsoniae GldJ is a lipoprotein that is required for gliding motility. | Braun TF, McBride MJ. | J Bacteriol | 10.1128/jb.187.8.2628-2637.2005 | 2005 | |
| Phylogeny | Diversity and phylogenetic affiliations of morphologically conspicuous large filamentous bacteria occurring in the pelagic zones of a broad spectrum of freshwater habitats. | Schauer M, Hahn MW. | Appl Environ Microbiol | 10.1128/aem.71.4.1931-1940.2005 | 2005 | |
| Phylogeny | Genome-Based Taxonomic Classification of Bacteroidetes. | Hahnke RL, Meier-Kolthoff JP, Garcia-Lopez M, Mukherjee S, Huntemann M, Ivanova NN, Woyke T, Kyrpides NC, Klenk HP, Goker M. | Front Microbiol | 10.3389/fmicb.2016.02003 | 2016 | |
| Cloning and characterization of the Flavobacterium johnsoniae gliding motility genes gldD and gldE. | Hunnicutt DW, McBride MJ. | J Bacteriol | 10.1128/jb.183.14.4167-4175.2001 | 2001 | ||
| Metabolism | Does the importance of the C-terminal residues in the maturation of RgpB from Porphyromonas gingivalis reveal a novel mechanism for protein export in a subgroup of Gram-Negative bacteria? | Nguyen KA, Travis J, Potempa J. | J Bacteriol | 10.1128/jb.01530-06 | 2007 | |
| Phylogeny | Structural classification of bacterial response regulators: diversity of output domains and domain combinations. | Galperin MY. | J Bacteriol | 10.1128/jb.01887-05 | 2006 | |
| Metabolism | The RgpB C-terminal domain has a role in attachment of RgpB to the outer membrane and belongs to a novel C-terminal-domain family found in Porphyromonas gingivalis. | Seers CA, Slakeski N, Veith PD, Nikolof T, Chen YY, Dashper SG, Reynolds EC. | J Bacteriol | 10.1128/jb.00731-06 | 2006 | |
| Lateral gene transfer and ancient paralogy of operons containing redundant copies of tryptophan-pathway genes in Xylella species and in heterocystous cyanobacteria. | Xie G, Bonner CA, Brettin T, Gottardo R, Keyhani NO, Jensen RA. | Genome Biol | 10.1186/gb-2003-4-2-r14 | 2003 | ||
| Metabolism | The prokaryotic antecedents of the ubiquitin-signaling system and the early evolution of ubiquitin-like beta-grasp domains. | Iyer LM, Burroughs AM, Aravind L. | Genome Biol | 10.1186/gb-2006-7-7-r60 | 2006 | |
| Genetics | Inter-genomic displacement via lateral gene transfer of bacterial trp operons in an overall context of vertical genealogy. | Xie G, Bonner CA, Song J, Keyhani NO, Jensen RA. | BMC Biol | 10.1186/1741-7007-2-15 | 2004 | |
| Metabolism | Mitochondrial calcium exchange in physiology and disease. | Garbincius JF, Elrod JW. | Physiol Rev | 10.1152/physrev.00041.2020 | 2022 | |
| Metabolism | Cohesion group approach for evolutionary analysis of aspartokinase, an enzyme that feeds a branched network of many biochemical pathways. | Lo CC, Bonner CA, Xie G, D'Souza M, Jensen RA. | Microbiol Mol Biol Rev | 10.1128/mmbr.00024-09 | 2009 |
| #649 | Leibniz Institut DSMZ-Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH ; Curators of the DSMZ; DSM 1761 |
| #20215 | Parte, A.C., Sardà Carbasse, J., Meier-Kolthoff, J.P., Reimer, L.C. and Göker, M.: List of Prokaryotic names with Standing in Nomenclature (LPSN) moves to the DSMZ. IJSEM ( DOI 10.1099/ijsem.0.004332 ) |
| #20216 | Curators of the JMRC: Jena Microbial Resource Collection (JMRC): |
| #20218 | Verslyppe, B., De Smet, W., De Baets, B., De Vos, P., Dawyndt P.: StrainInfo introduces electronic passports for microorganisms.. Syst Appl Microbiol. 37: 42 - 50 2014 ( DOI 10.1016/j.syapm.2013.11.002 , PubMed 24321274 ) |
| #40914 | ; Curators of the CIP; |
| #43399 | Gary Xie, David C. Bruce, Jean F. Challacombe, Olga Chertkov, John C. Detter, Paul Gilna, Cliff S. Han, Susan Lucas, Monica Misra, Gerald L. Myers, Paul Richardson, Roxanne Tapia, Nina Thayer, Linda S. Thompson, Thomas S. Brettin, Bernard Henrissat, David B. Wilson, Mark J. McBride: Genome Sequence of the Cellulolytic Gliding Bacterium Cytophaga hutchinsonii. Appl. Environ. Microbiol. 73: 3536 - 3546 2007 ( DOI 10.1128/AEM.00225-07 , PubMed 17400776 ) |
| #66792 | Julia Koblitz, Joaquim Sardà, Lorenz Christian Reimer, Boyke Bunk, Jörg Overmann: Automatically annotated for the DiASPora project (Digital Approaches for the Synthesis of Poorly Accessible Biodiversity Information) . |
| #66794 | Antje Chang, Lisa Jeske, Sandra Ulbrich, Julia Hofmann, Julia Koblitz, Ida Schomburg, Meina Neumann-Schaal, Dieter Jahn, Dietmar Schomburg: BRENDA, the ELIXIR core data resource in 2021: new developments and updates. Nucleic Acids Res. 49: D498 - D508 2020 ( DOI 10.1093/nar/gkaa1025 , PubMed 33211880 ) |
| #67770 | Japan Collection of Microorganism (JCM) ; Curators of the JCM; |
| #69479 | João F Matias Rodrigues, Janko Tackmann,Gregor Rot, Thomas SB Schmidt, Lukas Malfertheiner, Mihai Danaila,Marija Dmitrijeva, Daniela Gaio, Nicolas Näpflin and Christian von Mering. University of Zurich.: MicrobeAtlas 1.0 beta . |
| #119991 | Collection of Institut Pasteur ; Curators of the CIP; CIP 103989 |
| #125438 | Julia Koblitz, Lorenz Christian Reimer, Rüdiger Pukall, Jörg Overmann: Predicting bacterial phenotypic traits through improved machine learning using high-quality, curated datasets. 2024 ( DOI 10.1101/2024.08.12.607695 ) |
| #125439 | Philipp Münch, René Mreches, Martin Binder, Hüseyin Anil Gündüz, Xiao-Yin To, Alice McHardy: deepG: Deep Learning for Genome Sequence Data. R package version 0.3.1 . |
| #126262 | A. Lissin, I. Schober, J. F. Witte, H. Lüken, A. Podstawka, J. Koblitz, B. Bunk, P. Dawyndt, P. Vandamme, P. de Vos, J. Overmann, L. C. Reimer: StrainInfo—the central database for linked microbial strain identifiers. ( DOI 10.1093/database/baaf059 ) |
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