scholarly article | Q13442814 |
P2093 | author name string | Li Huang | |
Li Wang | |||
Chang Liu | |||
Xin Dai | |||
Yaxin Zhu | |||
Zhiyang Dong | |||
Zhenfeng Zhang | |||
Xiaoling Zhang | |||
Kuan Li | |||
Chengying Jiang | |||
Haina Wang | |||
Marielos Mora-López | |||
Walter Hernández-Ascencio | |||
P2860 | cites work | Gene expression and characterization of two 2-oxoacid:ferredoxin oxidoreductases from Aeropyrum pernix K1. | Q46452168 |
A novel trehalose synthesizing pathway in the hyperthermophilic Crenarchaeon Thermoproteus tenax: the unidirectional TreT pathway. | Q46592780 | ||
X-ray Structure of a self-compartmentalizing sulfur cycle metalloenzyme | Q46949669 | ||
Variation in gene content among geographically diverse Sulfolobus isolates. | Q51702438 | ||
The amidotransferases | Q70554613 | ||
Carbohydrate metabolism in Thermoproteus tenax: in vivo utilization of the non-phosphorylative Entner-Doudoroff pathway and characterization of its first enzyme, glucose dehydrogenase | Q73546161 | ||
[Adaptation of Acidianus hospitalis W1 to oligotrophic and acidic hot spring environments] | Q95614728 | ||
Extending the models for iron and sulfur oxidation in the extreme acidophile Acidithiobacillus ferrooxidans | Q21283753 | ||
BLAST+: architecture and applications | Q21284368 | ||
The Genome of Sulfolobus acidocaldarius, a Model Organism of the Crenarchaeota | Q22065449 | ||
Genome Analyses of Icelandic Strains of Sulfolobus islandicus, Model Organisms for Genetic and Virus-Host Interaction Studies | Q22065480 | ||
Genomics and genetics of Sulfolobus islandicus LAL14/1, a model hyperthermophilic archaeon | Q22065946 | ||
Complete Genome Sequence of an Aerobic Thermoacidophilic Crenarchaeon, Sulfolobus tokodaii strain7 | Q22066062 | ||
The complete genome of the crenarchaeon Sulfolobus solfataricus P2 | Q22066249 | ||
Biogeography of the Sulfolobus islandicus pan-genome | Q22066289 | ||
The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools | Q24248165 | ||
KEGG: kyoto encyclopedia of genes and genomes | Q24515297 | ||
KEGG: Kyoto Encyclopedia of Genes and Genomes | Q24548371 | ||
HMMER web server: interactive sequence similarity searching | Q24603071 | ||
Labeling and enzyme studies of the central carbon metabolism in Metallosphaera sedula | Q24629838 | ||
A dicarboxylate/4-hydroxybutyrate autotrophic carbon assimilation cycle in the hyperthermophilic Archaeum Ignicoccus hospitalis | Q24646170 | ||
3-hydroxypropionyl-coenzyme A dehydratase and acryloyl-coenzyme A reductase, enzymes of the autotrophic 3-hydroxypropionate/4-hydroxybutyrate cycle in the Sulfolobales | Q24654701 | ||
Molecular characterization of the sor gene, which encodes the sulfur oxygenase/reductase of the thermoacidophilic Archaeum Desulfurolobus ambivalens | Q24681421 | ||
Versatile and open software for comparing large genomes | Q24807126 | ||
Structural and functional insights into sulfide:quinone oxidoreductase | Q27655458 | ||
Structural Basis for a Bispecific NADP+ and CoA Binding Site in an Archaeal Malonyl-Coenzyme A Reductase | Q27675918 | ||
OrthoMCL: Identification of Ortholog Groups for Eukaryotic Genomes | Q27860860 | ||
MEGA5: Molecular Evolutionary Genetics Analysis Using Maximum Likelihood, Evolutionary Distance, and Maximum Parsimony Methods | Q27860929 | ||
Sulfolobus: A new genus of sulfur-oxidizing bacteria living at low pH and high temperature | Q28242698 | ||
Comparative biochemistry of Archaea and Bacteria | Q28266085 | ||
A membrane-bound multienzyme, hydrogen-oxidizing, and sulfur-reducing complex from the hyperthermophilic bacterium Aquifex aeolicus | Q28278010 | ||
Genome-scale reconstruction and analysis of the metabolic network in the hyperthermophilic archaeon Sulfolobus solfataricus | Q28483197 | ||
KAAS: an automatic genome annotation and pathway reconstruction server | Q29617232 | ||
A novel species of thermoacidophilic archaeon, Sulfolobus yangmingensis sp. nov. | Q30584143 | ||
Sulfolobus tokodaii sp. nov. (f. Sulfolobus sp. strain 7), a new member of the genus Sulfolobus isolated from Beppu Hot Springs, Japan | Q30677673 | ||
Sulfolobus tengchongensis sp. nov., a novel thermoacidophilic archaeon isolated from a hot spring in Tengchong, China | Q30823123 | ||
Geographic barriers isolate endemic populations of hyperthermophilic archaea | Q30969227 | ||
The interaction of Alba, a conserved archaeal chromatin protein, with Sir2 and its regulation by acetylation | Q31047769 | ||
Isolate B12, which harbours a virus-like element, represents a new species of the archaebacterial genus Sulfolobus, Sulfolobus shibatae, sp. nov. | Q31066127 | ||
Insights into the autotrophic CO2 fixation pathway of the archaeon Ignicoccus hospitalis: comprehensive analysis of the central carbon metabolism. | Q31107790 | ||
Viruses from extreme thermal environments | Q33949374 | ||
The semi-phosphorylative Entner-Doudoroff pathway in hyperthermophilic archaea: a re-evaluation | Q33986860 | ||
CRISPRFinder: a web tool to identify clustered regularly interspaced short palindromic repeats | Q34004457 | ||
Study of the distribution of autotrophic CO2 fixation cycles in Crenarchaeota. | Q34019868 | ||
Thiosulfate transfer mediated by DsrE/TusA homologs from acidothermophilic sulfur-oxidizing archaeon Metallosphaera cuprina | Q34245023 | ||
Genome sequence-based species delimitation with confidence intervals and improved distance functions | Q34329280 | ||
Enzymology and molecular biology of prokaryotic sulfite oxidation. | Q34369706 | ||
A 3-hydroxypropionate/4-hydroxybutyrate autotrophic carbon dioxide assimilation pathway in Archaea | Q34725533 | ||
Notes on the characterization of prokaryote strains for taxonomic purposes | Q34998960 | ||
Phylogeny and Taxonomy of Archaea: A Comparison of the Whole-Genome-Based CVTree Approach with 16S rRNA Sequence Analysis | Q35334293 | ||
Pilon: an integrated tool for comprehensive microbial variant detection and genome assembly improvement | Q35436695 | ||
Archaeal extrachromosomal genetic elements | Q35482661 | ||
Genomic evidence of rapid, global-scale gene flow in a Sulfolobus species | Q36104560 | ||
Phenotypic characterization of the archaebacterial genus Sulfolobus: comparison of five wild-type strains | Q36184598 | ||
Deciphering the Principles of Bacterial Nitrogen Dietary Preferences: a Strategy for Nutrient Containment | Q37120249 | ||
Novel metabolic pathways in Archaea | Q37879770 | ||
Sulfur metabolism in archaea reveals novel processes | Q38012869 | ||
Sulfolobus islandicus: a model system for evolutionary genomics | Q38077267 | ||
Digital DNA-DNA hybridization for microbial species delineation by means of genome-to-genome sequence comparison | Q39784985 | ||
Complete Genome Sequence of Sulfolobus solfataricus Strain 98/2 and Evolved Derivatives | Q41293870 | ||
Identification of missing genes and enzymes for autotrophic carbon fixation in crenarchaeota | Q41810204 | ||
Sulfolobus islandicus plasmids pRN1 and pRN2 share distant but common evolutionary ancestry | Q42686821 | ||
The non-phosphorylating glyceraldehyde-3-phosphate dehydrogenase (GAPN) of Sulfolobus solfataricus: a key-enzyme of the semi-phosphorylative branch of the Entner-Doudoroff pathway. | Q43022754 | ||
Completing the sequence of the Sulfolobus solfataricus P2 genome | Q43025906 | ||
SNDV, a novel virus of the extremely thermophilic and acidophilic archaeon Sulfolobus | Q43027728 | ||
Fusion-type lycopene beta-cyclase from a thermoacidophilic archaeon Sulfolobus solfataricus | Q44451018 | ||
Membrane-bound hydrogenase and sulfur reductase of the hyperthermophilic and acidophilic archaeon Acidianus ambivalens. | Q44569209 | ||
P407 | language of work or name | English | Q1860 |
P921 | main subject | Costa Rica | Q800 |
P304 | page(s) | 1902 | |
P577 | publication date | 2016-01-01 | |
P1433 | published in | Frontiers in Microbiology | Q27723481 |
P1476 | title | Genome Sequencing of Sulfolobus sp. A20 from Costa Rica and Comparative Analyses of the Putative Pathways of Carbon, Nitrogen, and Sulfur Metabolism in Various Sulfolobus Strains | |
P478 | volume | 7 |
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Q91604632 | The influence of temperature and pH on bacterial community composition of microbial mats in hot springs from Costa Rica |
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