scholarly article | Q13442814 |
P356 | DOI | 10.1007/S00792-012-0487-3 |
P698 | PubMed publication ID | 23065059 |
P50 | author | Lourdes B. Celis | Q43288782 |
Angel Gabriel Alpuche-Solis | Q51081067 | ||
Elías Razo-Flores | Q56959099 | ||
P2093 | author name string | Lilia Montoya | |
P2860 | cites work | Bioenergetic aspects of halophilism | Q24548540 |
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Energetics of syntrophic cooperation in methanogenic degradation | Q24643733 | ||
Syntrophy in anaerobic global carbon cycles | Q24644873 | ||
A dicarboxylate/4-hydroxybutyrate autotrophic carbon assimilation cycle in the hyperthermophilic Archaeum Ignicoccus hospitalis | Q24646170 | ||
Hydrogen, metals, bifurcating electrons, and proton gradients: the early evolution of biological energy conservation | Q27006000 | ||
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Ribulose-1,5-bisphosphate carboxylase/oxygenase genes as a functional marker for chemolithoautotrophic halophilic sulfur-oxidizing bacteria in hypersaline habitats. | Q30979760 | ||
Geobacter bemidjiensis sp. nov. and Geobacter psychrophilus sp. nov., two novel Fe(III)-reducing subsurface isolates | Q30994151 | ||
Chemolithotrophic haloalkaliphiles from soda lakes | Q31023546 | ||
Desulfuromonas svalbardensis sp. nov. and Desulfuromusa ferrireducens sp. nov., psychrophilic, Fe(III)-reducing bacteria isolated from Arctic sediments, Svalbard. | Q31037279 | ||
Ignicoccus hospitalis sp. nov., the host of 'Nanoarchaeum equitans'. | Q31107373 | ||
Methanocalculus halotolerans gen. nov., sp. nov., isolated from an oil-producing well | Q32023349 | ||
Methanobacterium subterraneum sp. nov., a new alkaliphilic, eurythermic and halotolerant methanogen isolated from deep granitic groundwater | Q32025414 | ||
Anomalous energy yields in thermodynamic calculations: importance of accounting for pH-dependent organic acid speciation | Q57194665 | ||
Anaerobic microbial metabolism can proceed close to thermodynamic limits | Q77537153 | ||
What is an autotroph? | Q85018136 | ||
Evidence of chemolithoautotrophy in the bacterial community associated with Alvinella pompejana, a hydrothermal vent polychaete | Q33188418 | ||
Microbial diversity in sediments of saline Qinghai Lake, China: linking geochemical controls to microbial ecology | Q33231134 | ||
Prokaryotic community composition and ecology of floating macroscopic filaments from an extreme acidic environment, Río Tinto (SW, Spain). | Q33303300 | ||
Old acetogens, new light | Q33326385 | ||
Community genomic and proteomic analyses of chemoautotrophic iron-oxidizing "Leptospirillum rubarum" (Group II) and "Leptospirillum ferrodiazotrophum" (Group III) bacteria in acid mine drainage biofilms | Q33442693 | ||
Propionate and butyrate dependent bacterial sulfate reduction at extremely haloalkaline conditions and description of Desulfobotulus alkaliphilus sp. nov. | Q33514881 | ||
Desulfosporosinus acidiphilus sp. nov.: a moderately acidophilic sulfate-reducing bacterium isolated from acid mining drainage sediments : New taxa: Firmicutes (Class Clostridia, Order Clostridiales, Family Peptococcaceae). | Q33548372 | ||
Temperature-controlled organic carbon mineralization in lake sediments | Q33638278 | ||
Description of Ectothiorhodospira salini sp. nov | Q33720663 | ||
Diversity of RuBisCO and ATP citrate lyase genes in soda lake sediments | Q33745615 | ||
Diversity and ecology of psychrophilic microorganisms | Q33780798 | ||
Distinctive responses of metabolically active microbiota to acidification in a thermophilic anaerobic digester | Q33794959 | ||
Detection of active, potentially acetate-oxidizing syntrophs in an anaerobic digester by flux measurement and formyltetrahydrofolate synthetase (FTHFS) expression profiling | Q33865541 | ||
Design and analysis of synthetic carbon fixation pathways | Q33928433 | ||
Microbial diversity in anaerobic sediments at Rio Tinto, a naturally acidic environment with a high heavy metal content. | Q33949377 | ||
Microbial extremophiles at the limits of life | Q34005338 | ||
Fuchsiella alkaliacetigena gen. nov., sp. nov., an alkaliphilic, lithoautotrophic homoacetogen from a soda lake | Q34016009 | ||
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Living with salt: metabolic and phylogenetic diversity of archaea inhabiting saline ecosystems. | Q34160372 | ||
Beyond the Calvin cycle: autotrophic carbon fixation in the ocean | Q34165223 | ||
Both forward and reverse TCA cycles operate in green sulfur bacteria | Q34285320 | ||
Methanogenium frigidum sp. nov., a psychrophilic, H2-using methanogen from Ace Lake, Antarctica | Q34443013 | ||
Complete genome sequence of Acetohalobium arabaticum type strain (Z-7288) | Q34558795 | ||
Adaptations to energy stress dictate the ecology and evolution of the Archaea | Q34576774 | ||
A "follow the energy" approach for astrobiology | Q34723269 | ||
A 3-hydroxypropionate/4-hydroxybutyrate autotrophic carbon dioxide assimilation pathway in Archaea | Q34725533 | ||
Life at low water activity | Q35214077 | ||
Acetogenesis in the energy-starved deep biosphere - a paradox? | Q35747426 | ||
Aquatic geomicrobiology. | Q36083433 | ||
Microbial enzymes involved in carbon dioxide fixation | Q36289813 | ||
Trophic interactions in the methanogenic microbial community of low-temperature terrestrial ecosystems | Q36331930 | ||
The phylogenetic relationship among Ectothiorhodospiraceae: a reevaluation of their taxonomy on the basis of 16S rDNA analyses | Q36794753 | ||
Natroniella acetigena gen. nov. sp. nov., an Extremely Haloalkaliphilic, Homoacetic Bacterium: A New Member of Haloanaerobiales | Q36802700 | ||
Molecular characterization of the diversity and distribution of a thermal spring microbial community by using rRNA and metabolic genes | Q36845001 | ||
Biology, ecology, and biotechnological applications of anaerobic bacteria adapted to environmental stresses in temperature, pH, salinity, or substrates. | Q37059358 | ||
Physiology, ecology, phylogeny, and genomics of microorganisms capable of syntrophic metabolism | Q37124137 | ||
Metabolic, phylogenetic, and ecological diversity of the methanogenic archaea | Q37124153 | ||
Microbial sulphate reduction at a low pH. | Q37150392 | ||
Deep-sea vent chemoautotrophs: diversity, biochemistry and ecological significance | Q37173241 | ||
Electron transfer in syntrophic communities of anaerobic bacteria and archaea | Q37553891 | ||
Energetic constraints on H2-dependent terminal electron accepting processes in anoxic environments: a review of observations and model approaches. | Q37663972 | ||
Lessons from the genomes of extremely acidophilic bacteria and archaea with special emphasis on bioleaching microorganisms. | Q37779021 | ||
Thermodynamic limits to microbial life at high salt concentrations | Q37807506 | ||
Syntrophic acetate-oxidizing microbes in methanogenic environments | Q37874066 | ||
Alternative pathways of carbon dioxide fixation: insights into the early evolution of life? | Q37899178 | ||
Intermediary ecosystem metabolism as a main driver of methanogenesis in acidic wetland soil | Q38114387 | ||
Chemolithotrophic acetogenic H2/CO2 utilization in Italian rice field soil | Q38256759 | ||
Citric-acid cycle, 50 years on. Modifications and an alternative pathway in anaerobic bacteria | Q39526047 | ||
Community size and metabolic rates of psychrophilic sulfate-reducing bacteria in Arctic marine sediments. | Q39527947 | ||
Microbial life at high salt concentrations: phylogenetic and metabolic diversity | Q41960176 | ||
shift from acetoclastic to H2-dependent methanogenesis in a west Siberian peat bog at low pH values and isolation of an acidophilic Methanobacterium strain | Q41971709 | ||
The microbial sulfur cycle at extremely haloalkaline conditions of soda lakes | Q42785128 | ||
Phylogenomic dating--a method of constraining the age of microbial taxa that lack a conventional fossil record | Q43026576 | ||
Phylogenomic dating--the relative antiquity of archaeal metabolic and physiological traits. | Q43026581 | ||
Syntrophic acetate oxidation under thermophilic methanogenic condition in Chinese paddy field soil | Q43030948 | ||
Sulfidogenesis in hypersaline chloride-sulfate lakes of Kulunda Steppe (Altai, Russia). | Q43033438 | ||
Substrate-dependent regulation of carbon catabolism in marine sulfate-reducing Desulfobacterium autotrophicum HRM2. | Q43181392 | ||
Stable carbon isotope fractionation by acetotrophic sulfur-reducing bacteria | Q43225490 | ||
Fingerprinting the genetic diversity of the biotin carboxylase gene (accC) in aquatic ecosystems as a potential marker for studies of carbon dioxide assimilation in the dark | Q43859869 | ||
Methanogenesis in the sediments of Rio Tinto, an extreme acidic river | Q43995044 | ||
Comparative study of the energy metabolism of anaerobic alkaliphiles from soda lakes | Q45021062 | ||
Reassignment of the Genus Ectothiorhodospira Pelsh 1936 to a New Family, Ectothiorhodospiraceae fam. nov., and Emended Description of the Chromatiaceae Bavendamm 1924 | Q45309183 | ||
Stygiolobus azoricus gen. nov., sp. nov. Represents a Novel Genus of Anaerobic, Extremely Thermoacidophilic Archaebacteria of the Order Sulfolobales | Q45311993 | ||
Computation of metabolic fluxes and efficiencies for biological carbon dioxide fixation | Q47325363 | ||
Methanogenesis and methanogenic pathways in a peat from subarctic permafrost | Q48080928 | ||
Autotrophic CO2 fixation via the reductive tricarboxylic acid cycle in different lineages within the phylum Aquificae: evidence for two ways of citrate cleavage. | Q48082217 | ||
The 'pH optimum anomaly' of intracellular enzymes of Ferroplasma acidiphilum. | Q48099755 | ||
Taxonomic, phylogenetic, and ecological diversity of methanogenic Archaea. | Q51188542 | ||
Anoxygenic phototrophic bacteria from extreme environments | Q57105646 | ||
P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 805-817 | |
P577 | publication date | 2012-10-12 | |
P1433 | published in | Extremophiles | Q15766992 |
P1476 | title | Distribution of CO(2) fixation and acetate mineralization pathways in microorganisms from extremophilic anaerobic biotopes | |
P478 | volume | 16 |
Q36187771 | Aerobically respiring prokaryotic strains exhibit a broader temperature-pH-salinity space for cell division than anaerobically respiring and fermentative strains. |
Q58569884 | Elucidating functional microorganisms and metabolic mechanisms in a novel engineered ecosystem integrating C, N, P and S biotransformation by metagenomics |
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