Thermococcus (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Thermococcus" in German language version.

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doi.org (Global: 2nd place; German: 3rd place)

  • Francesco Canganella, William J. Jones, Agata Gambacorta, Garabed Antranikian: Thermococcus guaymasensis sp. nov. and Thermococcus aggregans sp. nov., two novel thermophilic archaea isolated from the Guaymas Basin hydrothermal vent site. In: International Journal of Systematic Bacteriology, Band 48, Nr. 4, Oktober 1998, S. 1181–1185; doi:10.1099/00207713-48-4-1181, PMID 9828419 (englisch).
  • Gerrit J. Schut, Eric S. Boyd, John W. Peters, Michael W. W. Adams: The modular respiratory complexes involved in hydrogen and sulfur metabolism by heterotrophic hyperthermophilic archaea and their evolutionary implications. In: FEMS Microbiology Reviews. 37. Jahrgang, Nr. 2, März 2013, S. 182–203, doi:10.1111/j.1574-6976.2012.00346.x, PMID 22713092, bibcode:2013FEMMR..37..182S (englisch).
  • Yuusuke Yokooji, Takaaki Sato, Shinsuke Fujiwara, Tadayuki Imanaka, Haruyuki Atomi: Genetic Examination of Initial Amino Acid Oxidation and Glutamate Catabolism in the Hyperthermophilic Archaeon Thermococcus kodakarensis. In: Journal of Bacteriology, Band 195, Nr. 9, 9. April 2013; doi:10.1128/jb.01979-12, PMID 23435976, PMC 3624576 (freier Volltext) (englisch).
  • Haruyuki Atomi, Hiroya Tomita, Takuya Ishibashi, Yuusuke Yokooji, Tadayuki Imanaka: CoA biosynthesis in archaea. In: Biochemical Society Transactions. 41. Jahrgang, Nr. 1, Februar 2013, S. 427–431, doi:10.1042/bst20120311, PMID 23356323 (englisch).
  • Kenta Tagashira, Wakao Fukuda, Masaaki Matsubara, Tamotsu Kanai, Haruyuki Atomi, Tadayuki Imanaka: Genetic studies on the virus-like regions in the genome of hyperthermophilic archaeon, Thermococcus kodakarensis. In: Extremophiles, Band 17, Nr. 1, Januar 2013, S. 153–160; doi:10.1007/s00792-012-0504-6, PMID 23224520 (englisch).
  • Tae-Yang Jung, Yae-Sel Kim, Byoung-Ha Oh, Euijeon Woo: Identification of a novel ligand binding site in phosphoserine phosphatase from the hyperthermophilic archaeon Thermococcus onnurineus. In: Wiley Periodicals 11: Proteins, Band 81, Nr. 5, Mai 2013, S. 819–829; doi:10.1002/prot.24238, PMID 23239422, Epub 14. Dezember 2012 (englisch).
  • Elisabeth Antoine, Jean Guezennec, Jean-Roch Meunier, Françoise Lesongeur, Georges Barbier: Isolation and Characterization of Extremely Thermophilic Archaebacteria Related to the Genus Thermococcus from Deep-Sea Hydrothermal Guaymas Basin. In: Current Microbiology, Band 31, Nr. 3, September 1995, S. 7; doi:10.1007/bf00293552 (englisch).
  • Yao Zhang, Zihao Zhao, Chen-Tung Arthur Chen, Kai Tang, Jianqiang Su, Nianzhi Jiao: Sulfur metabolizing microbes dominate microbial communities in Andesite-hosted shallow-sea hydrothermal systems. In: PLOS ONE. 7. Jahrgang, Nr. 9, 7. September 2012, S. e44593, doi:10.1371/journal.pone.0044593, PMID 22970260, PMC 3436782 (freier Volltext), bibcode:2012PLoSO...744593Z (englisch).
  • Takashi Itoh: Taxonomy of Nonmethanogenic Hyperthermophilic and Related Thermophilic Archaea. In: Journal of Bioscience and Bioengineering. 96. Jahrgang, Nr. 3, 2003, S. 203–212, doi:10.1263/jbb.96.203, PMID 16233511 (englisch).
  • Yumani Kuba, Sonoko Ishino, Takeshi Yamagami, Masahiro Tokuhara, Tamotsu Kanai, Ryosuke Fujikane, Hiromi Daiyasu, Haruyuki Atomi, Yoshizumi Ishino: Comparative analyses of the two proliferating cell nuclear antigens from the hyperthermophilic archaeon, Thermococcus kodakarensis. In: Genes to Cells, Band 17, Nr. 11, November 2012, S. 923–937; doi:10.1111/gtc.12007, PMID 23078585 (englisch).
  • Maximiliano J. Amenábar, Patricio A. Flores, Benoit Pugin, Freddy A. Boehmwald, Jenny M. Blamey: Archaeal diversity from hydrothermal systems of Deception Island, Antarctica. In: Polar Biology. 36. Jahrgang, Nr. 3, 6. Dezember 2013, S. 373–380, doi:10.1007/s00300-012-1267-3, bibcode:2013PoBio..36..373A (englisch).
  • Byung Kwon Kim, Seong Hyuk Lee, Seon-Young Kim, Haeyoung Jeong, Soon-Kyeong Kwon, Choong Hoon Lee, Ju Yeon Song, Dong Su Yu, Sung Gyun Kang, Jihyun F. Kim: Genome sequence of an oligohaline hyperthermophilic archaeon, Thermococcus zilligii AN1, isolated from a terrestrial geothermal freshwater spring. In: Journal of Bacteriology, Band 194, Nr. 14, Juli 2012, S. 3765–3766; doi:10.1128/jb.00655-12, PMID 22740682, PMC 3393502 (freier Volltext) (englisch).
  • Mart Krupovic, Mathieu Gonnet, Wajdi Ben Hania, Patrick Forterre, Gaël Erauso: Insights into dynamics of mobile genetic elements in hyperthermophilic environments from five new Thermococcus plasmids. In: PLOS ONE, Band 8, Nr. 1, 11. Januar 2013, S. e49044; doi:10.1371/journal.pone.0049044, PMID 23326305, PMC 3543421 (freier Volltext), bibcode:2013PLoSO...849044K (englisch).
  • Adrian Hetzer, Hugh W. Morgan, Ian R. McDonald, Christopher J. Daughney: Microbial life in Champagne Pool, a geothermal spring in Waiotapu, New Zealand. In: Extremophiles. 11. Jahrgang, Nr. 4, Juli 2007, S. 605–614, doi:10.1007/s00792-007-0073-2, PMID 17426919 (englisch).
  • Kazuo Tori, Sonoko Ishino, Shinichi Kiyonari, Saki Tahara, Yoshizumi Ishino: A novel single-strand specific 3'-5' exonuclease found in the hyperthermophilic archaeon, Pyrococcus furiosus. In: PLOS ONE, Band 8, Nr. 3, 7. März 2013, S. e58497; doi:10.1371/journal.pone.0058497, PMID 23505520, PMC 3591345 (freier Volltext), bibcode:2013PLoSO...858497T (englisch).
  • Lubomira Čuboňová, Masahiro Katano, Tamotsu Kanai, Haruyuki Atomi, John N. Reeve, Thomas J. Santangelo: An archaeal histone is required for transformation of Thermococcus kodakarensis. In: Journal of Bacteriology, Band 194, Nr. 24, Dezember 2012, S. 6864–6874; doi:10.1128/jb.01523-12, PMID 23065975, PMC 3510624 (freier Volltext) (englisch).
  • Anne Postec, Françoise Lesongeur, Patricia Pignet, Bernard Ollivier, Joël Querellou, Anne Godfroy: Continuous enrichment cultures: insights into prokaryotic diversity and metabolic interactions in deep-sea vent chimneys. In: Extremophiles. 11. Jahrgang, Nr. 6, November 2007, hdl:20.500.11850/58941, S. 747–757, doi:10.1007/s00792-007-0092-z, PMID 17576518 (englisch).
  • Jed O. Eberly, Roger L. Ely: Thermotolerant hydrogenases: biological diversity, properties, and biotechnological applications. In: Critical Reviews in Microbiology. 34. Jahrgang, Nr. 3–4, 2. Dezember 2008, S. 117–130, doi:10.1080/10408410802240893, PMID 18728989 (englisch).
  • Zhicheng Cui, Yuhan Wang, Bang Phuong Pham, Fangfang Ping, Hongyu Pan, Gang-Won Cheong, Shihong Zhang, Baolei Jia: High level expression and characterization of a thermostable lysophospholipase from Thermococcus kodakarensis KOD1. In: Extremophiles. 16. Jahrgang, Nr. 4, Juli 2012, S. 619–625; doi:10.1007/s00792-012-0461-0, PMID 22622648 (englisch).
  • Yukiko Ozawa, Masood Ahmed Siddiqui, Yasufumi Takahashi, Akio Urushiyama, Daijiro Ohmori, Fumiyuki Yamakura, Fumio Arisaka, Takeo Imai: Indolepyruvate ferredoxin oxidoreductase: An oxygen-sensitive iron-sulfur enzyme from the hyperthermophilic archaeon Thermococcus profundus. In: Journal of Bioscience and Bioengineering, Band 114, Nr. 1, Juli 2012, S. 23–27; doi:10.1016/j.jbiosc.2012.02.014, PMID 22608551 (englisch).
  • Irene A. Davidova, Kathleen E. Duncan, B. Monica Perez-Ibarra, Joseph M. Suflita: Involvement of thermophilic archaea in the biocorrosion of oil pipelines. In: Environmental Microbiology. 14. Jahrgang, Nr. 7, Juli 2012, S. 1762–1771, doi:10.1111/j.1462-2920.2012.02721.x, PMID 22429327, bibcode:2012EnvMi..14.1762D (englisch).
  • Anne M. Brown, Samantha L. Hoopes, Robert H. White, Catherine A. Sarisky: Purine biosynthesis in archaea: variations on a theme. In: Biology Direct. 6. Jahrgang, Dezember 2011, S. 63, doi:10.1186/1745-6150-6-63, PMID 22168471, PMC 3261824 (freier Volltext) – (englisch).
  • Guy D. Duffaud, Olga B. d'Hennezel, Andrew S. Peek, Anna-Louise Reysenbach, Robert M. Kelly: Isolation and characterization of Thermococcus barossii, sp. nov., a hyperthermophilic archaeon isolated from a hydrothermal vent flange formation. In: Systematic and Applied Microbiology, 21. Jahrgang, Nr. 1, März 1998, S. 40–49; doi:10.1016/s0723-2020(98)80007-6, PMID 9741109, bibcode:1998SyApM..21...40D (englisch).
  • Tatiana E. Petrova, Ekaterina Yu Bezsudnova, Konstantin M. Boyko, A. V. Mardanov, K. M. Polyakov, V. V. Volkov, M. Kozin, N. V. Ravin, I. G. Shabalin, K. G. Skryabin, Tatiana N. Stekhanova, Michael V. Kovalchuk, Vladimir O. Popov: ATP-dependent DNA ligase from Thermococcus sp. 1519 displays a new arrangement of the OB-fold domain. In: Acta Crystallographica. Section F, Structural Biology and Crystallization Communications, Band 68, Nr. 12, Dezember 2012, S. 1440–1447; doi:10.1107/s1744309112043394, PMID 23192021, PMC 3509962 (freier Volltext) (englisch).
  • Ronny C. Hughes, Leighton Coates, Matthew P. Blakeley, Steve J. Tomanicek, Paul Langan, Andrey Y. Kovalevsky, Juan M. García-Ruiz, Joseph D. Ng: Inorganic pyrophosphatase crystals from Thermococcus thioreducens for X-ray and neutron diffraction. In: Acta Crystallographica, Section F, Structural Biology and Crystallization Communications, Band 68. Jahrgang, Nr. 12, Dezember 2012, S. 1482–1487; doi:10.1107/S1744309112032447, PMID 23192028, PMC 3509969 (freier Volltext) (englisch).
  • Haruyuki Atomi, John Reeve: Microbe Profile: Thermococcus kodakarensis: the model hyperthermophilic archaeon. In: Microbiology, Band 165, Nr. 11, November 2019, S. 1166–1168; doi:10.1099/mic.0.000839, PMID 31436525, PMC 7137780 (freier Volltext) (englisch).
  • Håkon Dahle, Frøydis Garshol, Marit Madsen & Nils-Kåre Birkeland: Microbial community structure analysis of produced water from a high-temperature North Sea oil-field. In: Antonie van Leeuwenhoek, Band 93, Nr. 13, 2008, S. 37–49; doi:10.1007/s10482-007-9177-z, PMID 17588160, Epub 22. Juni 2007 (englisch).
  • Evelyne Marguet, Marie Gaudin, Emilie Gauliard, Isabelle Fourquaux, Stephane le Blond du Plouy, Ikuo Matsui, Patrick Forterre: Membrane vesicles, nanopods and/or nanotubes produced by hyperthermophilic archaea of the genus Thermococcus. In: Biochemical Society Transactions, Band 41, Nr. 1, Februar 2013, S. 436–442; doi:10.1042/bst20120293, PMID 23356325 (englisch).
  • Emilie Gauliard, Stefan Schouten, Ludivine Houel-Renault, Pascal Lenormand, Evelyne Marguet, Patrick Forterre: Hyperthermophilic archaea produce membrane vesicles that can transfer DNA. In: Environmental Microbiology Reports. 5. Jahrgang, Nr. 1, Februar 2013, S. 109–116, doi:10.1111/j.1758-2229.2012.00348.x, PMID 23757139, bibcode:2013EnvMR...5..109G (englisch).
  • Tomohiko Kuwabara, Masaomi Minaba, Yukihiro Iwayama, Isao Inouye, Miwako Nakashima, Katsumi Marumo, Akihiko Maruyama, Akihiko Sugai, Toshihiro Itoh, Jun-Ichiro Ishibashi, Tetsuro Urabe, Masahiro Kamekura: Thermococcus coalescens sp. nov., a cell-fusing hyperthermophilic archaeon from Suiyo Seamount. In: InternationalJournal of Systematic and Evolutionary Microbiology, Band 55, Nr. 6, 1. November 2005, S. 2507–2514; doi:10.1099/ijs.0.63432-0, PMID 16280518 (englisch).
  • Zhuo Li, Lori M. Kelman, Zvi Kelman: Thermococcus kodakarensis DNA replication. In: Biochemical Society Transactions, Band 41, Nr. 1, Februar 2013, S. 332–8; doi:10.1099/00207713-48-1-23, PMID 23356307 (englisch).
  • Azumi Hirata, Yuki Hori, Yuichi Koga, Jun Okada, Akikazu Sakudo, Kazuyoshi Ikuta, Shigenori Kanaya, Kazufumi Takano: Enzymatic activity of a subtilisin homolog, Tk-SP, from Thermococcus kodakarensis in detergents and its ability to degrade the abnormal prion protein. In: BMC Biotechnology, Band 13, Februar 2013, S. 19; doi:10.1186/1472-6750-13-19, PMID 23448268, PMC 3599501 (freier Volltext) (englisch).
  • Ryo Uehara, Shun-ichi Tanaka, Kazufumi Takano, Yuichi Koga, Shigenori Kanaya: Requirement of insertion sequence IS1 for thermal adaptation of Pro-Tk-subtilisin from hyperthermophilic archaeon. In: Extremophiles. 16. Jahrgang, Nr. 6, November 2012, S. 841–51, doi:10.1007/s00792-012-0479-3, PMID 22996828 (englisch).
  • Mathieu Gonnet, Gaël Erauso, Daniel Prieur, Marc Le Romancer: pAMT11, a novel plasmid isolated from a Thermococcus sp. strain closely related to the virus-like integrated element TKV1 of the Thermococcus kodakaraensis genome. In: Research in Microbiology, Band 162, Nr. 2, Februar–März 2011, S. 132–143; doi:10.1016/j.resmic.2010.11.003, PMID 21144896 (englisch).
  • Mathieu Gonnet, Gaël Erauso, Daniel Prieur, Marc Le Romancer: pAMT11, a novel plasmid isolated from a Thermococcus sp. strain closely related to the virus-like integrated element TKV1 of the Thermococcus kodakaraensis genome. In: Research in Microbiology, Band 162, Nr. 2, Februar–März 2011, S. 132–143; doi:10.1016/j.resmic.2010.11.003, PMID 21144896 (englisch).
  • Hyewoo Ppyun, Inhye Kim, Sung Suk Cho, Kang Jin Seo, Keejung Yoon, Suk-Tae Kwon: Improved PCR performance using mutant Tpa-S DNA polymerases from the hyperthermophilic archaeon Thermococcus pacificus. In: Journal of Biotechnology, Band 164, Nr. 2, Dezember 2012, S. 363–370; doi:10.1016/j.jbiotec.2013.01.022, PMID 23395617 (englisch).
  • Anton A. Trofimov, Elvira A. Slutskaya, Konstantin M. Polyakov, Pavel V. Dorovatovskii, Vadim M. Gumerov, Vladimir O. Popov: Influence of intermolecular contacts on the structure of recombinant prolidase from Thermococcus sibiricus. In: Acta Crystallographica. Section F, Structural Biology and Crystallization Communications, Band 68, Nr. 11, November 2012, S. 1275–1278; doi:10.1107/s174430911203761x, PMID 23143231, PMC 3515363 (freier Volltext) (englisch).
  • Wolfram Zillig, Ingelore Holz, Davorin Janekovic, W. Schäfer, W. D. Reiter: The archaebacterium Thermococcus celer represents a novel genus within the thermophilic branch of the archaebacteria. In: Syst. Appl. Microbiol., Band 4, Nr. 1, Januar 1983, S. 88–94; doi:10.1016/S0723-2020(83)80036-8, PMID 23196302, bibcode:1983SyApM...4...88Z (englisch).
  • Margarita L. Miroshnichenko, Gregory M. Gongadze, Fred A. Rainey, Alla S. Kostyukova, Anatoly M. Lysenko, Nikolai Alexeevitch Chernyh, Elizaveta A. Bonch-Osmolovskaya: Thermococcus gorgonarius sp. nov. and Thermococcus pacificus sp. nov.: heterotrophic extremely thermophilic archaea from New Zealand submarine hot vents. In: Int. J. Syst. Bacteriol. Band 48, Nr. Pt 1, 1. Januar 1998, S. 23–29; doi:10.1099/00207713-48-1-23, PMID 9542072 (englisch).
  • Haruyuki Atomi, Toshiaki Fukui, Tamotsu Kanai, Masaaki Morikawa, Tadayuki Imanaka: Description of Thermococcus kodakaraensis sp. nov., a well studied hyperthermophilic archaeon previously reported as Pyrococcus sp. KOD1. In: Archaea, Band 1, Nr. 4, Oktober 2004, S. 263–267; doi:10.1155/2004/204953, PMC 2685570 (freier Volltext). PMID 15810436, Epub 16. April 2004 (englisch).
  • Wakao Fukuda, Yulia Sari Ismail, Toshiaki Fukui, Haruyuki Atomi, Tadayuki Imanaka: Characterization of an archaeal malic enzyme from the hyperthermophilic archaeon Thermococcus kodakaraensis KOD1. In: Archaea, Band 1, Nr. 5, Mai 2005, S. 293–301; doi:10.1155/2005/250757, PMID 15876562, PMC 2685551 (freier Volltext) (englisch).
  • Toshiaki Fukui, Haruyuki Atomi, Tamotsu Kanai, Rie Matsumi, Shinsuke Fujiwara, Tadayuki Imanaka: Complete genome sequence of the hyperthermophilic archaeon Thermococcus kodakaraensis KOD1 and comparison with Pyrococcus genomes. In: CSH Press: Genome Research, Band 15, Nr. 3, März 2005, S. 352–363; doi:10.1101/gr.3003105, PMID 15710748, PMC 551561 (freier Volltext), Epub 14. Februar 2005 (englisch).
  • Nathan E. Kreel, F. Robert Tabita: Serine 363 of a Hydrophobic Region of Archaeal Ribulose 1,5-Bisphosphate Carboxylase/Oxygenase from Archaeoglobus fulgidus and Thermococcus kodakaraensis Affects CO2/O2 Substrate Specificity and Oxygen Sensitivity. In: PLOS ONE 18. September 2015; doi:10.1371/journal.pone.0138351, ResearchGate:282043257 (englisch).
  • Muhammad Atif Nisar, Naeem Rashid, Qamar Bashir, Qurra-tul-Ann Afza Gardner, Muhammad Hassan Shafiq, Muhammad Akhtar: TK1299, a highly thermostable NAD(P)H oxidase from Thermococcus kodakaraensis exhibiting higher enzymatic activity with NADPH. In: Journal of Bioscience and Bioengineering, Band 116, Nr. 1, Juli 2013, S. 39–44; doi:10.1016/j.jbiosc.2013.01.020, PMID 23453203 (englisch).
  • Masaaki Morikawa, Yoshifumi Izawa, Naeem Rashid, Toshihiro Hoaki, Tadayuki Imanaka: Purification and characterization of a thermostable thiol protease from a newly isolated hyperthermophilic Pyrococcus sp. In: Applied and Environmental Microbiology. 60. Jahrgang, Nr. 12, Dezember 1994, S. 4559–4566, doi:10.1128/aem.60.12.4559-4566.1994, PMID 7811092, PMC 202019 (freier Volltext) – (englisch).
  • Nicolas Soler, Anthony Justome, Sophie Quevillon-Cheruel, Florence Lorieux, Eric Le Cam, Evelyne Marguet, Patrick Forterre: The rolling-circle plasmid pTN1 from the hyperthermophilic archaeon Thermococcus nautilus. In: Wiley: Molecular Microbiology, Band 66, Nr. 2, Oktober 2007. S. 357–370; doi:10.1111/j.1365-2958.2007.05912.x, Epub 14. September 2007 (englisch).
    Anmerkung: Im Text (§Results) wird erwähnt, dass es um den Stamm 30-1 geht.
  • Philippe Oger, Tatyana G. Sokolova, Darya A. Kozhevnikova, Nikolai A. Chernyh, Douglas H. Bartlett, Elizaveta A. Bonch-Osmolovskaya, Alexander V. Lebedinsky: Complete Genome Sequence of the Hyperthermophilic Archaeon Thermococcus sp. Strain AM4, Capable of Organotrophic Growth and Growth at the Expense of Hydrogenogenic or Sulfidogenic Oxidation of Carbon Monoxide. In: ASM Journals: Journal of Bacteriology, Band 193, Nr. 24, 28. November 2011; doi:10.1128/jb.06259-11, PMID 22123768, PMC 3232831 (freier Volltext) (englisch).
  • Philippe Oger, Tatyana G. Sokolova, Darya A. Kozhevnikova, Nikolai A. Chernyh, Douglas H. Bartlett, Elizaveta A. Bonch-Osmolovskaya, Alexander V. Lebedinsky: Complete Genome Sequence of the Hyperthermophilic Archaeon Thermococcus sp. Strain AM4, Capable of Organotrophic Growth and Growth at the Expense of Hydrogenogenic or Sulfidogenic Oxidation of Carbon Monoxide. In: ASM Journals: Journal of Bacteriology, Band 193, Nr. 24, 28. November 2011; doi:10.1128/jb.06259-11, PMID 22123768, PMC 3232831 (freier Volltext) (englisch).
  • Aurore Gorlas, Karine Alain, Nadège Bienvenu, Claire Geslin: Thermococcus prieurii sp. nov., a hyperthermophilic archaeon isolated from a deep-sea hydrothermal vent. In: International Journal of Systematic and Evolutionary Microbiology, Band 63, Nr. 8, 1. August 2013; doi:10.1099/ijs.0.026419-0, PMID 23355695, Epub 25. Januar 2013 (englisch).
  • Mark C. Capece, Evan Clark, Jamal K. Saleh, Daniel Halford, Nicole Heinl, Samuel Hoskins, Lynn J. Rothschild: Polyextremophiles and the Constraints for Terrestrial Habitability. In: Joseph Seckbach, Aharon Oren, Helga Stan-Lotter (Hrsg.): Polyextremophiles, Band 27, 1. Januar 2013, S. 3–59; doi:10.1007/978-94-007-6488-0 1, ResearchGate:278659206, Epub April 2013 (englisch).
  • Yoshiteru Hashimoto, Tomoko Yamamoto, Shinsuke Fujiwara, Masahiro Takagi, Tadayuki Imanaka: Extracellular Synthesis, Specific Recognition, and Intracellular Degradation of Cyclomaltodextrins by the Hyperthermophilic Archaeon Thermococcus sp. Strain B1001. In: ASM Jourbals: Journal of Bacteriology, Band 183, Nr. 17, 1. September 2001, S. 5050–5057; doi:10.1128/JB.183.17.5050-5057.2001, PMC 95380 (freier Volltext), PMID 11489857 (englisch).
  • Yoshihisa Tachibana, Akiko Kuramura, Naoki Shirasaka, Yuji Suzuki, Tomoko Yamamoto, Shinsuke Fujiwara, Masahiro Takagi, Tadayuki Imanaka: Purification and Characterization of an Extremely Thermostable Cyclomaltodextrin Glucanotransferase from a Newly Isolated Hyperthermophilic Archaeon, a Thermococcus sp. In: ASM Journals: Applied and Environmental Microbiology, Band 65, Nr. 5, 1. Mai 1999,S. 1991–1997; doi:10.1128/aem.65.5.1991-1997.1999, PMC 91287 (freier Volltext), PMID 10223990 (englisch).

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  • Anne Postec, Françoise Lesongeur, Patricia Pignet, Bernard Ollivier, Joël Querellou, Anne Godfroy: Continuous enrichment cultures: insights into prokaryotic diversity and metabolic interactions in deep-sea vent chimneys. In: Extremophiles. 11. Jahrgang, Nr. 6, November 2007, hdl:20.500.11850/58941, S. 747–757, doi:10.1007/s00792-007-0092-z, PMID 17576518 (englisch).

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  • Francesco Canganella, William J. Jones, Agata Gambacorta, Garabed Antranikian: Thermococcus guaymasensis sp. nov. and Thermococcus aggregans sp. nov., two novel thermophilic archaea isolated from the Guaymas Basin hydrothermal vent site. In: International Journal of Systematic Bacteriology, Band 48, Nr. 4, Oktober 1998, S. 1181–1185; doi:10.1099/00207713-48-4-1181, PMID 9828419 (englisch).
  • Gerrit J. Schut, Eric S. Boyd, John W. Peters, Michael W. W. Adams: The modular respiratory complexes involved in hydrogen and sulfur metabolism by heterotrophic hyperthermophilic archaea and their evolutionary implications. In: FEMS Microbiology Reviews. 37. Jahrgang, Nr. 2, März 2013, S. 182–203, doi:10.1111/j.1574-6976.2012.00346.x, PMID 22713092, bibcode:2013FEMMR..37..182S (englisch).
  • Yuusuke Yokooji, Takaaki Sato, Shinsuke Fujiwara, Tadayuki Imanaka, Haruyuki Atomi: Genetic Examination of Initial Amino Acid Oxidation and Glutamate Catabolism in the Hyperthermophilic Archaeon Thermococcus kodakarensis. In: Journal of Bacteriology, Band 195, Nr. 9, 9. April 2013; doi:10.1128/jb.01979-12, PMID 23435976, PMC 3624576 (freier Volltext) (englisch).
  • Haruyuki Atomi, Hiroya Tomita, Takuya Ishibashi, Yuusuke Yokooji, Tadayuki Imanaka: CoA biosynthesis in archaea. In: Biochemical Society Transactions. 41. Jahrgang, Nr. 1, Februar 2013, S. 427–431, doi:10.1042/bst20120311, PMID 23356323 (englisch).
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researchgate.net (Global: 120th place; German: 143rd place)

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  • Nathan E. Kreel, F. Robert Tabita: Serine 363 of a Hydrophobic Region of Archaeal Ribulose 1,5-Bisphosphate Carboxylase/Oxygenase from Archaeoglobus fulgidus and Thermococcus kodakaraensis Affects CO2/O2 Substrate Specificity and Oxygen Sensitivity. In: PLOS ONE 18. September 2015; doi:10.1371/journal.pone.0138351, ResearchGate:282043257 (englisch).
  • Mark C. Capece, Evan Clark, Jamal K. Saleh, Daniel Halford, Nicole Heinl, Samuel Hoskins, Lynn J. Rothschild: Polyextremophiles and the Constraints for Terrestrial Habitability. In: Joseph Seckbach, Aharon Oren, Helga Stan-Lotter (Hrsg.): Polyextremophiles, Band 27, 1. Januar 2013, S. 3–59; doi:10.1007/978-94-007-6488-0 1, ResearchGate:278659206, Epub April 2013 (englisch).

sigmaaldrich.com (Global: 924th place; German: 87th place)

uib-csic.es (Global: low place; German: low place)

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katalog.ub.uni-heidelberg.de

  • Fidschi-Becken <Nord>, Index-Eintrag in HEIDI, Katalog für die Bibliotheken der Universität Heidelberg.