Microbiol. OneZoom Tree of Life Explorer, text page for euryarchaeotes The Piezo-Hyperthermophilic Archaeon Thermococcus ... B1 that can survive in pHs as high as 12.5 to Thermococcus piezophilus CDGS that can withstand pressures of up to 125 MPa, Earth's extremophiles give a good indication of what life might be able to contend with on other planets. Desulfovibrio piezophilus strain C1TLV30T is a piezophilic anaerobe that was isolated from wood falls in the Mediterranean deep-sea. Conserved synteny is also consistent with a single, earlier origin for the bacteria-type doublet, with multiple subsequent losses (figs. The enzyme is CoA-dependent and contains thiamine diphosphate and iron-sulfur clusters. Thermococcus profundus corrig. Based on the draft whole genome sequence and phenotypic characteristics, strain CDGST is suggested to be separated into a novel species within the genus Thermococcus, with proposed name Thermococcus piezophilus (type strain CDGST = ATCC TSD-33T =UBOCC 3296T) Mohamed Jebbar has more than 20 years' experience in microbial physiology and genetics. Thermococcus barophilus is a hyperthermophilic, anaerobic, mixed heterotrophic, and carboxydotrophic euryarchaeon isolated from the deep sea hydrothermal vent Snakepit site on the mid-Atlantic . Thermococcus piezophilus sp. Herein, we investigated the gene expression patterns of Thermococcus piezophilus, a piezohyperthermophilic archaeon isolated from the deepest hydrothermal vent known to date, under sub-optimal, optimal and supra-optimal pressures (0.1, 50, and 90 MPa, respectively). Thermococcus prieurii Gorlas et al. A novel strictly anaerobic, hyperthermophilic archaeon, designated strain CDGST, was isolated from a deep-sea hydrothermal vent in the Cayman Trough at 4964m water depth. Thermococcus piezophilus sp. From Serpentinomonas sp. From Serpentinomonas sp. Syst. 2000. 4557: Thermococcus sp. В своем исследовании они использовали новую Thermococcus piezophilus: A7C91_03500: Help: Entry: A7C91_03500 CDS T04941 : Name (GenBank) hydrolase. B1 that can survive in pHs as high as 12.5 to Thermococcus piezophilus CDGS that can withstand pressures of up to 125 MPa, Earth's extremophiles give a good indication of. 5-4 . Complete Genome Sequence of the Hyperthermophilic and Piezophilic Archeon Thermococcus piezophilus CDGST, Able To Grow under Extreme Hydrostatic Pressures Genome Announc. D. piezophilus represents a unique model for studying the adaptation of sulfate-reducing bacteria to hydrostatic pressure. The novel isolate is obligate anaerobe and grows chemoorganoheterotrophically with stimulation of growth by sulphur containing compounds. This does not mean that A strictly anaerobic, dissimilatory Fe(III)-reducing hyperthermophilic archaeon, designated as strain IOH1 T, was isolated from a new deep-sea hydrothermal vent (Onnuri Vent Field) area in the Central Indian Ocean ridge.Strain IOH1 T showed > 99% 16S rRNA gene sequence similarity with Thermococcus celericrescens TS2 T (99.4%) and T. siculi DSM 12349 T (99.2%). He got his PhD at the University of Rennes 1 in 1994, following which he carried out postdoctoral research at the University of Lille 1, France in 1995, then at Max Planck Institute at Marburg, Germany where he joined in September 1995 the laboratory of Professor E. Bremer for a postdoctoral position, and . 1990).In general, enzymes from hyperthermophiles are highly thermostable and have been used for the production of various industrial materials, analytical reagents, and biosensors. nov., a novel hyperthermophilic and piezophilic archaeon with a broad pressure range for growth, isolated from a deepest hydrothermal vent at the Mid-Cayman Rise. B1 que puede sobrevivir en pHs tan altos como 12.5 a Thermococcus piezophilus CDGS que puede soportar presiones de hasta 125 MPa, los extremófilos de la Tierra dan una buena indicación de lo que la vida podría ser capaz de lidiar en otros planetas. 2319x1: Thermococcus sp. Thermococcus piezophilus Dalmasso et al. MHI is intended to measure how habitable a specific environment is for the various types of extremophiles found in extreme places here on Earth. Thermococcus piezophilus sp. 2016 Jul 14;4(4):e00610-16. 斯氏热球菌 Thermococcus stetteri Miroshnichenko 1990. Herein, we investigated the gene expression patterns of Thermococcus piezophilus , a piezohyperthermophilic archaeon isolated from the deepest hydrothermal vent known to date, under sub-optimal . EXT9 plasmid pEXT9a, Thermococcus sp. 嗜热球菌属(学名: Thermococcus )為热球菌目 热球菌科的一属革兰氏阴性菌。 栖息于海洋硫磺水洞或热沉积物。此属的模式种为速生热球菌(Thermococcus celer)。下属物种. 2017. nov., a novel hyperthermophilic and piezophilic archaeon with a broad pressure range for growth, isolated from a deepest hydrothermal vent at the Mid-Cayman Rise. Thermococcus piezophilus CDGS Taxonomy ID : 1712654 Lineage: cellular organisms; Archaea; Euryarchaeota; Thermococci; Thermococcales; Thermococcaceae; Thermococcus Thermococcus piezophilus Imported Taxonomic identifier i: 1712654 : Taxonomic lineage i › Archaea › Euryarchaeota › Thermococci › Thermococcales › Thermococcaceae › Thermococcus. Authors Cécile . nov., a novel hyperthermophilic and piezophilic archaeon with a broad pressure range for growth, isolated from a deepest hydrothermal vent at the Mid-Cayman Rise 2000 2013: validly published under the ICNP: correct name: Thermococcus profundus corrig. From Serpentinomonas sp. Feature key Position(s) Description Actions . Сейчас человечество активно ищет жизнь на других планетах в Солнечной системе. AMT 7 plasmid pAMT 7, and Thermococcus sp. nov., a novel hyperthermophilic and piezophilic archaeon with a broad pressure range for growth, isolated from a deepest hydrothermal vent at the Mid-Cayman Rise. The hyperthermophilic piezophilic archaeon Thermococcus piezophilus strain CDGS T was isolated from the world's deepest known hydrothermal vent field, at nearly 5,000 m water depth, at the Mid-Cayman rise ( Dalmasso et al., 2016b ). 1c and 3g). It has an optimal pressure for growth of 50 MPa and holds the current nov., a novel hyperthermophilic and piezophilic archaeon with a broad pressure range for growth, isolated from a deepest hydrothermal vent at the Mid-Cayman Rise. The methodology, published in a recent preprint paper on arXiv, is focused on a new variable—the Microbial Habitability Index (MHI). ABSTRACT. Thermococcus sp. Its growth is optimal at 75 C,pH6.0 and under a pressure of 50 MPa. De Serpentinomonas sp. De Serpentinomonas sp. Dalmasso C, Oger P, Selva G, Courtine D, L'Haridon S, Garlaschelli A, Roussel E, Miyazaki J, Reveillaud J, Jebbar M, Takai K, Maignien L, Alain K. Thermococcus piezophilus sp. 2013. Thermococcus piezophilus Imported Taxonomic identifier i: 1712654 : Taxonomic lineage i › Archaea › Euryarchaeota › Thermococci › Thermococcales › Thermococcaceae › Thermococcus. The PGDB was created computationally by the PathoLogic component of the Pathway Tools software (version 25.0) [ Karp16, Karp11] using MetaCyc version 24.5 [ Caspi20 ]. The hyperthermophilic piezophilic archaeon Thermococcus piezophilusstrain CDGSTwas isolated from the world's deepest known hydrothermal vent field, at nearly 5,000 m water depth, at the Mid-Cayman rise (Dalmasso et al., 2016b). This Pathway/Genome Database (PGDB) was generated on 13-Mar-2021 from the annotated genome of Thermococcus piezophilus CDGS, as obtained from RefSeq (annotation date: 13-JAN-2021). B1 that can survive in pHs as high as 12.5 to Thermococcus piezophilus CDGS that can withstand pressures of up to 125 MPa, Earth's extremophiles give a good indication . Luckily, scientists have also collected data on life forms that thrive in the extremes of each of those six factors. Systematic and Applied Microbiology . The current record for highest hydrostatic pressure where growth was observed is 130 MPa (= 1,283 atm = 18,855 psi), by the archaea Thermococcus piezophilus. Strain IOH1T showed > 99% 16S rRNA gene sequence similarity with Thermococcus celericrescens TS2T (99.4%) and T. siculi DSM 12349T (99.2%). 2013: validly published under the ICNP: correct name: Thermococcus profundus corrig. Utilizing the highs and lows of the factors they selected, the scientists were able to . If humanity is ever going to find life on another planet in the solar system, it's probably best to know where to look. record holder is Thermococcus piezophilus, a thermophilic archaeon able to survive up to 1250 bar.1 There have even been reports that life can survive brief exposures up to 20 kbar.12,13 Similar to Earth, the habitability of environments on other planetary bodies will be dictated by the interplay between chemical and physical environmental . Thermococcus litoralis DSM 5473 is a hyperthermophilic archaeon and is able to grow under anaerobic conditions at temperatures between 55 and 98 °C, growing optimally at 88 °C (Neuner et al. B1的微生物,可以在pH值高达12.5的强碱环境下生存,还有一种名叫Thermococcus piezophilus CDGS的微生物,能够承受高达125兆帕压力的环境(约为地表大气压的1250倍)。 Overall, Thermococcalesrespond to pressure variations through structural flexibility and modulation of gene expression. Thermococcus sibiricus Miroshnichenko et al. IRI48 plasmid pIRI48 (Figure 1). Here, we report the 3.6 Mbp genome sequence of this piezophilic bacterium. Additional three species T. barossii . nov., a novel hyperthermophilic and piezophilic archaeon with a broad pressure range for growth, isolated from a deepest hydrothermal vent at the Mid-Cayman Rise. 2000,拼写错误; Thermococcus aegaeus corrig. nov., a new barophilic and hyperthermophilic archaeon isolated under high hydrostatic pressure from a deep-sea hydrothermal vent.Int J Syst Bacteriol 1999; 49:351-359. doi: 10.1128/genomeA.00610-16. B1 qui peut survivre PHS aussi élevé que 12,5 à Thermococcus piezophilus CDGs qui peuvent résister à des pressions allant jusqu'à 125 MPa, les extrêmophiles de la Terre donnent une bonne indication de ce que la vie pourrait être en mesure de composer avec d'autres planètes. Plenty of scientists have spent many, many hours pondering precisely th… B1的微生物,可以在pH值高达12.5的强碱环境下生存,还有一种名叫Thermococcus piezophilus CDGS的微生物,能够承受高达125兆帕压力的环境(约为地表大气压的1250倍)。 B1 that can survive in pHs as high as 12.5 to Thermococcus piezophilus CDGS that can withstand pressures of up to 125 MPa, Earth's extremophiles give a good indication of what life might be able to contend with on other planets. 2001; Thermococcus aegaeicus Arab et al. 1.2.7.7 3-methyl-2-oxobutanoate dehydrogenase (ferredoxin) IUBMB Comments. The hyperthermophilic piezophilic archaeon Thermococcus piezophilus strain CDGST was isolated from the world's deepest known hydrothermal vent field, at nearly 5,000 m water depth, at the Mid-Cayman rise (Dalmasso et al.,2016b). Extreme extremophiles. A strictly anaerobic, dissimilatory Fe(III)-reducing hyperthermophilic archaeon, designated as strain IOH1T, was isolated from a new deep-sea hydrothermal vent (Onnuri Vent Field) area in the Central Indian Ocean ridge. Dalmasso C, Oger P, Selva G, Courtine D, L'Haridon S, Garlaschelli A, Roussel E, Miyazaki J, Reveillaud J, Jebbar M, Takai K, Maignien L, Alain K. Thermococcus piezophilus sp. An analysis of the genome revealed the presence of seven genomic . 39: 440-444. Family & Domains i Domains and Repeats. Wikidata; Encyclopedia of Life; NCBI (genetics)" Open Tree of Life; No results found. Spacer sequence of T. indicus IOH1 matched with Thermococcus sp. Brite: KEGG Orthology (KO) [BR:tpie00001] 09190 Not Included in Pathway or Brite From Serpentinomonas sp. B1 that can survive in pHs as high as 12.5 to Thermococcus piezophilus CDGS that can withstand pressures of up to 125 MPa, Earth's extremophiles give a good indication of what life might be able to contend with on other planets. Специалисты из Нью-Йоркского университета Абу-Даби перечислили потенциально обитаемые места Солнечной системы. 比如一种名叫Serpentinomonas sp. Additional three species T. barossii . B1 that can survive in pHs as high as 12.5 to Thermococcus piezophilus CDGS that can withstand pressures of up to 125 MPa, Earth's extremophiles give a good indication of what life might be able to contend with on other planets. Spacer sequence of T. piezophilus CDGS matched with Thermobacillus composti KWC4 plasmid pTHECO01. Thermococcus acidaminovorans Dirmeier et al. Thermococcus piezophilus Archaea 75 18 Pyrococcus yayanosii Archaea 95 19 Agrococcus pavilionensis Bacteria 6 20 Candidatus evansia Bacteria NA Desulfurococcus amylolyticus Archaea 90 DSMZ ( h ttp://www.dsmz.de ) Kosmotoga pacifica Bacteria 70 DSMZ ( h ttp://www.dsmz.de ) Aquifex aeolicus Bacteria 95 21 Fervidobacterium Feature key Position(s) Description Actions . Strain IOH1T showed > 99% 16S rRNA gene sequence similarity with Thermococcus celericrescens TS2T (99.4%) and T. siculi DSM 12349T (99.2%). From Serpentinomonas sp. Thermococcus barophilus is a hyperthermophilic, anaerobic, mixed heterotrophic, and carboxydotrophic euryarchaeon isolated from the deep sea hydrothermal vent Snakepit site on the mid-Atlantic . While such pressures are beyond the range of the most extreme cultured piezophile on Earth (Thermococcus piezophilus, P max = 125 MPa) (Dalmasso et al., 2016), microorganisms have successfully been exposed to pressures up to 2,000 MPa and found to be metabolically active in fluid inclusions within type-IV ice (Vanlint et al., 2011). A piezophile (from Greek "piezo-" for pressure and "-phile" for loving) is an organism with optimal growth under high hydrostatic pressure or, more operationally, an organism that have its maximum rate of growth at a hydrostatic pressure equal or above 10 MPa (= 99 atm = 1,450 psi), when tested over all permissible temperatures. 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