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CHLOROBIUM

  • Chlorobium
  • Genus of bacteria

    Chlorobium is a genus of green sulfur bacteria. They are photolithotrophic oxidizers of sulfur and most notably utilise a noncyclic electron transport

    Chlorobium

    Chlorobium

    Chlorobium

  • Green sulfur bacteria
  • Phylum of bacteria

    1925] ?Ancalochloris Gorlenko and Lebedeva 1971 Chlorobaculum Imhoff 2003 Chlorobium Nadson 1906 ?"Chloroplana" Dubinina and Gorlenko 1975 ?"Clathrochloris"

    Green sulfur bacteria

    Green sulfur bacteria

    Green_sulfur_bacteria

  • Chlorobaculum tepidum
  • Species of bacterium

    Chlorobaculum tepidum, previously known as Chlorobium tepidum, is an anaerobic, thermophilic green sulfur bacteria first isolated from New Zealand. Its

    Chlorobaculum tepidum

    Chlorobaculum_tepidum

  • Chlorobium chlorochromatii
  • Species of bacterium

    Chlorobium chlorochromatii, previously included in Chlorobium aggregatum, is a symbiotic green sulfur bacteria that performs anoxygenic photosynthesis

    Chlorobium chlorochromatii

    Chlorobium_chlorochromatii

  • Chlorobium limicola
  • Species of bacterium

    Chlorobium limicola is a gram negative bacterial member of green sulfur bacteria genus found in freshwater hot springs. C. limicola is a non-motile mesophile

    Chlorobium limicola

    Chlorobium_limicola

  • Winogradsky column
  • Device for culturing microorganisms

    growth of different microorganisms such as Clostridium, Desulfovibrio, Chlorobium, Chromatium, Rhodomicrobium, and Beggiatoa, as well as many other species

    Winogradsky column

    Winogradsky column

    Winogradsky_column

  • Phototroph
  • Organism using energy from light in metabolic processes

    Examples of phototroph organisms are Rhodobacter capsulatus, Chromatium, and Chlorobium. Originally used with a different meaning, the term took its current definition

    Phototroph

    Phototroph

    Phototroph

  • Thiosulfate
  • Polyatomic ion (S2O3, charge –2)

    work as electron donor for growth of bacteria oxidizing sulfur, such as Chlorobium limicola forma thiosulfatophilum. These bacteria use electrons from thiosulfate

    Thiosulfate

    Thiosulfate

    Thiosulfate

  • Sepiapterin reductase (L-threo-7,8-dihydrobiopterin forming)
  • NADP+       2 H+   2 H+   (R)-dyspropterin + 2 NADPH   This bacterial (Chlorobium tepidum) enzyme catalyses the final step in the de novo synthesis of tetrahydrobiopterin

    Sepiapterin reductase (L-threo-7,8-dihydrobiopterin forming)

    Sepiapterin reductase (L-threo-7,8-dihydrobiopterin forming)

    Sepiapterin_reductase_(L-threo-7,8-dihydrobiopterin_forming)

  • Photosynthesis
  • Biological process to convert light into chemical energy

    prokaryotes (Heliobacterium chlorum, Chloroflexus aurantiacus, cyanobacteria, Chlorobium tepidum and proteobacteria): implications regarding the origin of photosynthesis"

    Photosynthesis

    Photosynthesis

    Photosynthesis

  • Chlorophyll a
  • Chemical compound

    Wu M, Dodson RJ, et al. (July 2002). "The complete genome sequence of Chlorobium tepidum TLS, a photosynthetic, anaerobic, green-sulfur bacterium". Proceedings

    Chlorophyll a

    Chlorophyll a

    Chlorophyll_a

  • Dihydrobiopterin
  • Chemical compound

      2 H+     tetrahydrobiopterin + NAD+   In some bacteria, for example Chlorobium tepidum, the reduction of L-sepiapterin leads to the L-threo isomer of

    Dihydrobiopterin

    Dihydrobiopterin

    Dihydrobiopterin

  • Bioinformatics
  • Computational analysis of large, complex sets of biological data

    comparison of the protein-coding genomes of two green sulphur bacteria, Chlorobium tepidum TLS and Pelodictyon phaeoclathratiforme BU-1". BMC Research Notes

    Bioinformatics

    Bioinformatics

    Bioinformatics

  • List of sequenced bacterial genomes
  • PMID 20023027. Eisen JA, et al. (2002). "The complete genome sequence of Chlorobium tepidum TLS, a photosynthetic, anaerobic, green-sulfur bacterium". Proc

    List of sequenced bacterial genomes

    List_of_sequenced_bacterial_genomes

  • Fenna–Matthews–Olson complex
  • (1975). "Chlorophyll arrangement in a bacteriochlorophyll protein from Chlorobium limicola". Nature. 258 (5536): 573–7. Bibcode:1975Natur.258..573F. doi:10

    Fenna–Matthews–Olson complex

    Fenna–Matthews–Olson complex

    Fenna–Matthews–Olson_complex

  • Bacterial phyla
  • Phyla of the domain Bacteria

    Borrelia) Leptospiras (Leptospira, Leptonema) Green sulfur bacteria (Chlorobium, Chloroherpeton) Bacteroides, Flavobacteria and relatives (later renamed

    Bacterial phyla

    Bacterial phyla

    Bacterial_phyla

  • Chloroflexus aggregans
  • Species of bacterium

    prokaryotes (Heliobacterium chlorum, Chloroflexus aurantiacus, cyanobacteria, Chlorobium tepidum and proteobacteria): implications regarding the origin of photosynthesis"

    Chloroflexus aggregans

    Chloroflexus_aggregans

  • NhaE family
  • Family of transport proteins

    Gram-negative bacteria (e.g., Leptospira, Azotobacter, Neisseria, Ralstonia, Chlorobium and Rhizobial species). The proteins are of about 480 aas with 12-14 putative

    NhaE family

    NhaE_family

  • Timeline of Russian innovation
  • growth of different microorganisms such as Clostridium, Desulfovibrio, Chlorobium, Chromatium, Rhodomicrobium, and Beggiatoa, as well as many other species

    Timeline of Russian innovation

    Timeline of Russian innovation

    Timeline_of_Russian_innovation

  • Chloroflexia
  • Class of bacteria

    prokaryotes (Heliobacterium chlorum, Chloroflexus aurantiacus, cyanobacteria, Chlorobium tepidum and proteobacteria): Implications regarding the origin of photosynthesis"

    Chloroflexia

    Chloroflexia

  • Flavocytochrome c sulfide dehydrogenase
  • Protein family

    (November 1973). "The oxidation mechanisms of thiosulphate and sulphide in Chlorobium thiosulphatophilum: roles of cytochrome c-551 and cytochrome c-553". Biochimica

    Flavocytochrome c sulfide dehydrogenase

    Flavocytochrome c sulfide dehydrogenase

    Flavocytochrome_c_sulfide_dehydrogenase

  • Chlorosome
  • Membrane-associated antenna complex

    Phylum Chlorobiota ("green sulfur bacteria"), in full. Example genera: Chlorobium Pelodictyon Prostecochloris Phylum Chloroflexota, class Chloroflexia ("green

    Chlorosome

    Chlorosome

    Chlorosome

  • Branching order of bacterial phyla (Woese, 1987)
  • Borrelia) Leptospiras (Leptospira, Leptonema) Green sulfur bacteria (Chlorobium, Chloroherpeton) Bacteroides, Flavobacteria and relatives (later renamed

    Branching order of bacterial phyla (Woese, 1987)

    Branching_order_of_bacterial_phyla_(Woese,_1987)

  • List of bacteria genera
  • Chlorobaculum Imhoff 2003 Bacteroidota "Chlorobiia" Chlorobiales Chlorobiaceae Chlorobium Nadson 1906 Bacteroidota "Chlorobiia" Chlorobiales Chlorobiaceae "Pediochloris"

    List of bacteria genera

    List_of_bacteria_genera

  • ATP citrate synthase
  • Class of enzymes

    Additional structures of heteromeric ACLY-A/B from the green sulfur bacteria Chlorobium limicola and the archaeon Methanosaeta concilii show that the architecture

    ATP citrate synthase

    ATP citrate synthase

    ATP_citrate_synthase

  • Isorenieratene
  • Chemical compound

    carotenoid light-harvesting pigment produced exclusively by the genus Chlorobium, which are the brown-colored strains of the family of green sulfur bacteria

    Isorenieratene

    Isorenieratene

    Isorenieratene

  • Brian Matthews (biochemist)
  • Australian [[biochemist]] and biophysicist

    (1975). "Chlorophyll arrangement in a bacteriochlorophyll protein from Chlorobium limicola". Nature. 258 (5536): 573–577. doi:10.1038/258573a0. S2CID 35591234

    Brian Matthews (biochemist)

    Brian Matthews (biochemist)

    Brian_Matthews_(biochemist)

  • Biological carbon fixation
  • Series of interconnected biochemical reactions

    Arnon in 1966 working with the photosynthetic green sulfur bacterium Chlorobium limicola. In particular, it is one of the most used pathways in hydrothermal

    Biological carbon fixation

    Biological carbon fixation

    Biological_carbon_fixation

  • Sulfur-reducing bacteria
  • Microorganisms able to reduce elemental sulfur to hydrogen sulfide

    acetooxidans is able to grow in cocultures with green sulfur bacteria such as Chlorobium (vibrioforme and phaeovibroides). The electron donor for the sulfur-reducing

    Sulfur-reducing bacteria

    Sulfur-reducing bacteria

    Sulfur-reducing_bacteria

  • Purple bacteria
  • Group of phototrophic bacteria

    (1990-12-01). "Anoxygenic microbial mats of hot springs: thermophilic Chlorobium sp". FEMS Microbiology Letters. 74 (4): 325–336. doi:10.1111/j.1574-6968

    Purple bacteria

    Purple bacteria

    Purple_bacteria

  • Brownie Lake
  • Lake in Minnesota

    bacteria was discovered from Brownie Lake in 2021 and named "Candidatus Chlorobium masyuteum". This organism is photosynthetic, and uses sunlight energy

    Brownie Lake

    Brownie Lake

    Brownie_Lake

  • Lake Burton (Antarctica)
  • Lake in Eastern Antarctica

    been found nowhere else. Other dominant varieties of bacteria found are Chlorobium vibrioforme and C. limicola. The minor species identified are Thiocapsa

    Lake Burton (Antarctica)

    Lake_Burton_(Antarctica)

  • Microbial oxidation of sulfur
  • Means by which some organisms create energy

    uses Sox pathway) Carbon dioxide Hubert et al. (2009) Elemental sulfur Chlorobium thiosulphatophilum (green sulfur bacteria) 5‰ (no temperature provided)

    Microbial oxidation of sulfur

    Microbial oxidation of sulfur

    Microbial_oxidation_of_sulfur

  • Bacterial taxonomy
  • Rank based classification of bacteria

    Campylobacterota (from Campylobacter) Chlamydiota (from Chlamydia) Chlorobiota (from Chlorobium) Chloroflexota (from Chloroflexus) Chrysiogenota (from Chrysiogenes)

    Bacterial taxonomy

    Bacterial taxonomy

    Bacterial_taxonomy

  • Microbial metabolism
  • Biochemical pathways used by microbes to satisfy energy needs

    to the purple bacteria (Pseudomonadota), green sulfur bacteria (e.g., Chlorobium), green non-sulfur bacteria (e.g., Chloroflexus), or the heliobacteria

    Microbial metabolism

    Microbial_metabolism

  • List of MeSH codes (B03)
  • Medical Subject Headings

    Bilophila MeSH B03.440.425.410.237 – Butyrivibrio MeSH B03.440.425.410.275 – Chlorobium MeSH B03.440.425.410.290 – Chromatium MeSH B03.440.425.410.350 – Desulfovibrio

    List of MeSH codes (B03)

    List_of_MeSH_codes_(B03)

  • Γ-Carotene
  • Chemical compound

    Pfannes, Kristina R.; Wanner, Gerhard; Overmann, Jörg (2006-06-01). "Chlorobium chlorochromatii sp. nov., a symbiotic green sulfur bacterium isolated

    Γ-Carotene

    Γ-Carotene

  • H+, Na+-translocating pyrophosphatase family
  • Protein family

    H+ per pyrophosphate hydrolyzed. Some PPases from Anaerostipes caccae, Chlorobium limicola, Clostridium tetani, and Desulfuromonas acetoxidans have been

    H+, Na+-translocating pyrophosphatase family

    H+,_Na+-translocating_pyrophosphatase_family

  • Branching order of bacterial phyla (Ciccarelli et al., 2006)
  • Taxonomy of bacteria

    Firmicutes Actinobacteria Planctomycetes Spirochaetes Chlamydiae Fibrobacter Chlorobium Bacteroidetes Fusobacterium Aquifex Thermotoga Cyanobacteria Dehalococcoides

    Branching order of bacterial phyla (Ciccarelli et al., 2006)

    Branching_order_of_bacterial_phyla_(Ciccarelli_et_al.,_2006)

  • Citrate synthase family
  • Protein family

    Tabita FR (September 2006). "Both subunits of ATP-citrate lyase from Chlorobium tepidum contribute to catalytic activity". J. Bacteriol. 188 (18): 6544–52

    Citrate synthase family

    Citrate synthase family

    Citrate_synthase_family

  • Prosthecochloris aestuarii
  • Species of bacterium

    a distinct clade, separate from other key genera, like Chlorobaculum, Chlorobium, or Pelodictyon. Like all other green sulfur bacteria, P. aestuarii gets

    Prosthecochloris aestuarii

    Prosthecochloris aestuarii

    Prosthecochloris_aestuarii

  • Chromatiaceae
  • Family of purple sulfur bacteria

    been observed among several species, for example Chromatium vinosum and Chlorobium limicola. The diagenetic end product of okenone, okenane, is considered

    Chromatiaceae

    Chromatiaceae

    Chromatiaceae

  • Lucas Andrew Staehelin
  • Swiss-American cell biologist (1939–2022)

    "Supramolecular organization of chlorosomes (chlorobium vesicles) and of their membrane attachment sites in Chlorobium Limicola". Biochimica et Biophysica Acta

    Lucas Andrew Staehelin

    Lucas_Andrew_Staehelin

  • Hydrothermal vent microbial communities
  • Undersea unicellular organisms

    Actinomycetota Aquificota Hydrogenobacter and Aquifex Chloroflexota Chlorobiota Chlorobium Deferribacterota Gemmatimonadota Nitrospirota Nitrospinota Leptospirillum

    Hydrothermal vent microbial communities

    Hydrothermal vent microbial communities

    Hydrothermal_vent_microbial_communities

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Online names & meanings

  • Ellgar
  • Boy/Male

    British, Christian, English

    Ellgar

    Spear from the Elves; Elf Spear

  • Anargha | அநார்கா 
  • Girl/Female

    Tamil

    Anargha | அநார்கா 

    Precious, Priceless

  • Iliyas
  • Boy/Male

    Indian, Telugu

    Iliyas

    Singer of Natures; Beautiful Veiwer

  • Heleb
  • Boy/Male

    Biblical

    Heleb

    The world, rustiness.

  • Sherrill
  • Girl/Female

    American, Australian, French

    Sherrill

    Darling; Form of Cheryl

  • Devappa
  • Boy/Male

    Gujarati, Hindu, Indian, Kannada, Telugu

    Devappa

    Father of King

  • Goodwynne
  • Boy/Male

    British, English

    Goodwynne

    Friend of God; Good Friend

  • Santusht | ஸஂதுஷ்டி
  • Girl/Female

    Tamil

    Santusht | ஸஂதுஷ்டி

    Satisfied

  • AbdulRa'uf
  • Boy/Male

    Arabic, Muslim

    AbdulRa'uf

    Servant of the Most Merciful

  • CAMRYN
  • Female

    English

    CAMRYN

    English feminine variant spelling of Scottish unisex Cameron, CAMRYN means "crooked nose."

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