Lokiarchaeota (German Wikipedia)

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

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bbc.com

crumpe.com

  • Hiroyuki Imachi, Masaru K. Nobu, Nozomi Nakahara, Yuki Morono, Miyuki Ogawara, Yoshihiro Takaki, Yoshinori Takano, Katsuyuki Uematsu, Tetsuro Ikuta, Motoo Ito, Yohei Matsui, Masayuki Miyazaki, Kazuyoshi Murata, Yumi Saito, Sanae Sakai, Chihong Song, Eiji Tasumi, Yuko Yamanaka, Takashi Yamaguchi, Yoichi Kamagata, Hideyuki Tamaki & Ken Takai: Isolation of an archaeon at the prokaryote–eukaryote interface. In: Nature. Band 577, Januar 2020, S. 519–525, doi:10.1038/s41586-019-1916-6 (englisch, nature.com). Isolement d’un archéon à l’interface procaryote – eucaryote, auf: Crumpe.com (französisch).

doi.org

  • Anja Spang, Jimmy H. Saw, Steffen L. Jørgensen, Katarzyna Zaremba-Niedzwiedzka, Joran Martijn, Anders E. Lind, Roel van Eijk, Christa Schleper, Lionel Guy, Thijs J. G. Ettema: Complex archaea that bridge the gap between prokaryotes and eukaryotes. In: Nature. Band 521, 2015, S. 173–179, doi:10.1038/nature14447, PMID 25945739, PMC 4444528 (freier Volltext).
  • Katarzyna Zaremba-Niedzwiedzka, Eva F. Cáceres, Jimmy H. Saw, Disa Bäckström, Lina Juzokaite, Emmelien Vancaester, Kiley W. Seitz, Karthik Anantharaman, Piotr Starnawski, Kasper U. Kjeldsen, Matthew B. Stott, Takuro Nunoura, Jillian F. Banfield, Andreas Schramm, Brett J. Baker, Anja Spang, Thijs J. G. Ettema: Asgard archaea illuminate the origin of eukaryotic cellular complexity. In: Nature. 541. Jahrgang, 11. Januar 2017, ISSN 1476-4687, S. 353–358, doi:10.1038/nature21031, PMID 28077874, bibcode:2017Natur.541..353Z (englisch).
  • Hiroyuki Imachi, Masaru K. Nobu, Nozomi Nakahara, Yuki Morono, Miyuki Ogawara, Yoshihiro Takaki, Yoshinori Takano, Katsuyuki Uematsu, Tetsuro Ikuta, Motoo Ito, Yohei Matsui, Masayuki Miyazaki, Kazuyoshi Murata, Yumi Saito, Sanae Sakai, Chihong Song, Eiji Tasumi, Yuko Yamanaka, Takashi Yamaguchi, Yoichi Kamagata, Hideyuki Tamaki & Ken Takai: Isolation of an archaeon at the prokaryote–eukaryote interface. In: Nature. Band 577, Januar 2020, S. 519–525, doi:10.1038/s41586-019-1916-6 (englisch, nature.com). Isolement d’un archéon à l’interface procaryote – eucaryote, auf: Crumpe.com (französisch).
  • Rolf B. Pedersen, Hans Tore Rapp, Ingunn H. Thorseth, Marvin D. Lilley, Fernando J. A. S. Barriga, Tamara Baumberger, Kristin Flesland, Rita Fonseca, Gretchen L. Früh-Green, Steffen L. Jorgensen: Discovery of a black smoker vent field and vent fauna at the Arctic Mid-Ocean Ridge. In: Nature Communications. 1, Art.-Nr. 126. Jahrgang, 2010, doi:10.1038/ncomms1124 (englisch).
  • Steffen Leth Jorgensen, Bjarte Hannisdal, Anders Lanzén, Tamara Baumberger, Kristin Flesland, Rita Fonseca, Lise Øvreås, Ida H. Steen, Ingunn H. Thorseth, Rolf B. Pedersen, Christa Schleper: Correlating microbial community profiles with geochemical data in highly stratified sediments from the Arctic Mid-Ocean Ridge. In: Proceedings of the National Academy of Sciences. Band 109, Nr. 42, 16. Oktober 2012, ISSN 0027-8424, S. E2846–E2855, doi:10.1073/pnas.1207574109 (pnas.org).
  • Steffen Leth Jørgensen, Ingunn Hindenes Thorseth, Rolf Birger Pedersen, Tamara Baumberger, Christa Schleper: Quantitative and phylogenetic study of the Deep Sea Archaeal Group in sediments of the Arctic mid-ocean spreading ridge. In: Extreme Microbiology. Band 4, 4. Oktober 2013, S. 299, doi:10.3389/fmicb.2013.00299 (frontiersin.org).
  • Sofya K. Garushyants, Marat D. Kazanov, Mikhail S. Gelfand: Horizontal gene transfer and genome evolution in Methanosarcina. In: BMC Evolutionary Biology. 15. Jahrgang, Nr. 1, 2015, S. 1–14, doi:10.1186/s12862-015-0393-2 (englisch).
  • Umesh Ghoshdastider, Shimin Jiang, David Popp, Robert C. Robinson: In search of the primordial actin filament. In: Proceedings of the National Academy of Sciences. Band 112, Nr. 30, 28. Juli 2015, ISSN 1091-6490, S. 9150–9151, doi:10.1073/pnas.1511568112, PMID 26178194.
  • Steven G. Ball, Debashish Bhattacharya, Andreas P. M. Weber: Pathogen to powerhouse. In: Science. 351. Jahrgang, Nr. 6274, 2016, S. 659–660, doi:10.1126/science.aad8864 (englisch, sciencemag.org).
  • T. Martin Embley, William Martin: Eukaryotic evolution, changes and challenges. In: Nature. Band 440, Nr. 7084, 30. März 2006, ISSN 1476-4687, S. 623–630, doi:10.1038/nature04546, PMID 16572163.
  • J. A. Lake: Origin of the eukaryotic nucleus determined by rate-invariant analysis of rRNA sequences. In: Nature. Band 331, Nr. 6152, 14. Januar 1988, ISSN 0028-0836, S. 184–186, doi:10.1038/331184a0, PMID 3340165.
  • Lionel Guy, Thijs J. G. Ettema: The archaeal 'TACK' superphylum and the origin of eukaryotes. In: Trends in Microbiology. Band 19, Nr. 12, 1. Dezember 2011, ISSN 1878-4380, S. 580–587, doi:10.1016/j.tim.2011.09.002, PMID 22018741.
  • Minglei Wang, Liudmila S. Yafremava, Derek Caetano-Anollés, Jay E. Mittenthal, Gustavo Caetano-Anollés: Reductive evolution of architectural repertoires in proteomes and the birth of the tripartite world. In: Genome Research. Band 17, Nr. 11, 1. November 2007, ISSN 1088-9051, S. 1572–1585, doi:10.1101/gr.6454307, PMID 17908824.
  • Jürgen Hahn, Pat Haug: Traces of archaebacteria in ancient sediments. In: Systematic and Applied Microbiology. Band 7, Nr. 2, 1. Mai 1986, S. 178–183, doi:10.1016/S0723-2020(86)80002-9 (sciencedirect.com).
  • A. H. Knoll, E. J. Javaux, D. Hewitt, P. Cohen: Eukaryotic organisms in Proterozoic oceans. In: Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences. Band 361, Nr. 1470, 29. Juni 2006, ISSN 0962-8436, S. 1023–1038, doi:10.1098/rstb.2006.1843, PMID 16754612.
  • Purificación López-García, David Moreira: Open Questions on the Origin of Eukaryotes. In: Trends in Ecology & Evolution. 30. Jahrgang, Nr. 11, 2015, S. 697–708, doi:10.1016/j.tree.2015.09.005 (englisch, sciencedirect.com).
  • Tom A. Williams, Peter G. Foster, Cymon J. Cox, T. Martin Embley: An archaeal origin of eukaryotes supports only two primary domains of life. In: Nature. 504. Jahrgang, Nr. 7479, 2013, S. 231–236, doi:10.1038/nature12779 (englisch).
  • C. Petitjean, P. Deschamps, P. López-García, D. Moreira,: Rooting the Domain archaea by phylogenomic analysis supports the foundation of the new kingdom proteoarchaeota. In: Genome Biol. Evol. 7. Jahrgang, 2014, S. 191–204, doi:10.1093/gbe/evu274 (englisch).
  • Fabai Wu, Daan R. Speth, Alon Philosof, Antoine Crémière, Aditi Narayanan, Roman A. Barco, Stephanie A. Connon, Jan P. Amend, Igor A. Antoshechkin, Victoria J. Orphan: Unique mobile elements and scalable gene flow at the prokaryote–eukaryote boundary revealed by circularized Asgard archaea genomes. In: Nature Microbiology, Band 7, Februar 2022, S. 200–212; doi:10.1038/s41564-021-01039-y, PMID 35027677, PMC 8813620 (freier Volltext), Epub 13. Januar 2022. Zur Phylogenie siehe Extended Data Fig. 2. Artikel referenziert ein „MAG Loki L04“.
  • Fabai Wu, Daan R. Speth, Alon Philosof, Antoine Crémière, Aditi Narayanan, Roman A. Barco, Stephanie A. Connon, Jan P. Amend, Igor A. Antoshechkin, Victoria J. Orphan: Unique mobile elements and scalable gene flow at the prokaryote–eukaryote boundary revealed by circularized Asgard archaea genomes. In: Nature Microbiology, Band 7, Februar 2022, S. 200–212; doi:10.1038/s41564-021-01039-y, PMID 35027677, PMC 8813620 (freier Volltext), Epub 13. Januar 2022. Zur Phylogenie siehe Extended Data Fig. 2. Artikel referenziert ein „MAG Loki L04“.
  • Charlotte D. Vavourakis, Maliheh Mehrshad, Cherel Balkema, Rutger van Hall, Adrian-Ştefan Andrei, Rohit Ghai, Dimitry Y. Sorokin & Gerard Muyzer: Metagenomes and metatranscriptomes shed new light on the microbial-mediated sulfur cycle in a Siberian soda lake. In: BMC Biology, Band 17, Nr. 69, 22. August 2019; doi:10.1186/s12915-019-0688-7, PMID 31438955, PMC 6704655 (freier Volltext). Siehe Additional File 4 (xlsx).
  • Ting Xu, Yanan Sun, Zhi Wang, Arunima Sen, Pei-Yuan Qian, Jian-Wen Qiu: The Morphology, Mitogenome, Phylogenetic Position, and Symbiotic Bacteria of a New Species of Sclerolinum (Annelida: Siboglinidae) in the South China Sea. In: Front. Mar. Sci., 8. Februar 2022; doi:10.3389/fmars.2021.793645.

ecogenomic.org

gtdb.ecogenomic.org

figshare.com

  • Charlotte D. Vavourakis, Maliheh Mehrshad, Cherel Balkema, Rutger van Hall, Adrian-Ştefan Andrei, Rohit Ghai, Dimitry Y. Sorokin & Gerard Muyzer: Metagenomes and metatranscriptomes shed new light on the microbial-mediated sulfur cycle in a Siberian soda lake. In: BMC Biology, Band 17, Nr. 69, 22. August 2019; doi:10.1186/s12915-019-0688-7, PMID 31438955, PMC 6704655 (freier Volltext). Siehe Additional File 4 (xlsx).

frontiersin.org

journal.frontiersin.org

  • Steffen Leth Jørgensen, Ingunn Hindenes Thorseth, Rolf Birger Pedersen, Tamara Baumberger, Christa Schleper: Quantitative and phylogenetic study of the Deep Sea Archaeal Group in sediments of the Arctic mid-ocean spreading ridge. In: Extreme Microbiology. Band 4, 4. Oktober 2013, S. 299, doi:10.3389/fmicb.2013.00299 (frontiersin.org).

harvard.edu

ui.adsabs.harvard.edu

  • Katarzyna Zaremba-Niedzwiedzka, Eva F. Cáceres, Jimmy H. Saw, Disa Bäckström, Lina Juzokaite, Emmelien Vancaester, Kiley W. Seitz, Karthik Anantharaman, Piotr Starnawski, Kasper U. Kjeldsen, Matthew B. Stott, Takuro Nunoura, Jillian F. Banfield, Andreas Schramm, Brett J. Baker, Anja Spang, Thijs J. G. Ettema: Asgard archaea illuminate the origin of eukaryotic cellular complexity. In: Nature. 541. Jahrgang, 11. Januar 2017, ISSN 1476-4687, S. 353–358, doi:10.1038/nature21031, PMID 28077874, bibcode:2017Natur.541..353Z (englisch).

labo.de

latimes.com

nature.com

  • Hiroyuki Imachi, Masaru K. Nobu, Nozomi Nakahara, Yuki Morono, Miyuki Ogawara, Yoshihiro Takaki, Yoshinori Takano, Katsuyuki Uematsu, Tetsuro Ikuta, Motoo Ito, Yohei Matsui, Masayuki Miyazaki, Kazuyoshi Murata, Yumi Saito, Sanae Sakai, Chihong Song, Eiji Tasumi, Yuko Yamanaka, Takashi Yamaguchi, Yoichi Kamagata, Hideyuki Tamaki & Ken Takai: Isolation of an archaeon at the prokaryote–eukaryote interface. In: Nature. Band 577, Januar 2020, S. 519–525, doi:10.1038/s41586-019-1916-6 (englisch, nature.com). Isolement d’un archéon à l’interface procaryote – eucaryote, auf: Crumpe.com (französisch).
  • Traci Watson: The trickster microbes that are shaking up the tree of life, in: Nature vom 14. Mai 2019 (englisch), Trickser-Bakterien schütteln den Stammbaum des Lebens, in: Spektrum.de vom 20. Juni 2019 (deutsch) – die Bezeichnung ‚Bakterien‘ ist nicht ganz korrekt, bei den betrachteten Mikroben handelt es sich um Archaeen oder (nach Ansicht mancher Forscher) jedenfalls um von den Bakterien verschiedene Proto-Eukaryonten.
  • Jonathan Lambert: Scientists glimpse oddball microbe that could help explain rise of complex life. In: Nature. Band 572, 2019, S. 294 (nature.com).
  • Jonathan Lambert: Scientists glimpse oddball microbe that could help explain rise of complex life. In: Nature. Band 572, 2019, S. 294 (nature.com).
  • Jonathan Lambert: Scientists glimpse oddball microbe that could help explain rise of complex life. In: Nature. Band 572, 2019, S. 294 (nature.com).
  • Fabai Wu, Daan R. Speth, Alon Philosof, Antoine Crémière, Aditi Narayanan, Roman A. Barco, Stephanie A. Connon, Jan P. Amend, Igor A. Antoshechkin, Victoria J. Orphan: Unique mobile elements and scalable gene flow at the prokaryote–eukaryote boundary revealed by circularized Asgard archaea genomes. In: Nature Microbiology, Band 7, Februar 2022, S. 200–212; doi:10.1038/s41564-021-01039-y, PMID 35027677, PMC 8813620 (freier Volltext), Epub 13. Januar 2022. Zur Phylogenie siehe Extended Data Fig. 2. Artikel referenziert ein „MAG Loki L04“.
  • Fabai Wu, Daan R. Speth, Alon Philosof, Antoine Crémière, Aditi Narayanan, Roman A. Barco, Stephanie A. Connon, Jan P. Amend, Igor A. Antoshechkin, Victoria J. Orphan: Unique mobile elements and scalable gene flow at the prokaryote–eukaryote boundary revealed by circularized Asgard archaea genomes. In: Nature Microbiology, Band 7, Februar 2022, S. 200–212; doi:10.1038/s41564-021-01039-y, PMID 35027677, PMC 8813620 (freier Volltext), Epub 13. Januar 2022. Zur Phylogenie siehe Extended Data Fig. 2. Artikel referenziert ein „MAG Loki L04“.

nih.gov

ncbi.nlm.nih.gov

nytimes.com

ou.edu

zodletone.ou.edu

pnas.org

  • Steffen Leth Jorgensen, Bjarte Hannisdal, Anders Lanzén, Tamara Baumberger, Kristin Flesland, Rita Fonseca, Lise Øvreås, Ida H. Steen, Ingunn H. Thorseth, Rolf B. Pedersen, Christa Schleper: Correlating microbial community profiles with geochemical data in highly stratified sediments from the Arctic Mid-Ocean Ridge. In: Proceedings of the National Academy of Sciences. Band 109, Nr. 42, 16. Oktober 2012, ISSN 0027-8424, S. E2846–E2855, doi:10.1073/pnas.1207574109 (pnas.org).

sciencedirect.com

sciencemag.org

science.sciencemag.org

  • Steven G. Ball, Debashish Bhattacharya, Andreas P. M. Weber: Pathogen to powerhouse. In: Science. 351. Jahrgang, Nr. 6274, 2016, S. 659–660, doi:10.1126/science.aad8864 (englisch, sciencemag.org).

spektrum.de

studocu.com

uniprot.org

univ-lyon1.fr

lifemap-ncbi.univ-lyon1.fr

zdb-katalog.de

  • Katarzyna Zaremba-Niedzwiedzka, Eva F. Cáceres, Jimmy H. Saw, Disa Bäckström, Lina Juzokaite, Emmelien Vancaester, Kiley W. Seitz, Karthik Anantharaman, Piotr Starnawski, Kasper U. Kjeldsen, Matthew B. Stott, Takuro Nunoura, Jillian F. Banfield, Andreas Schramm, Brett J. Baker, Anja Spang, Thijs J. G. Ettema: Asgard archaea illuminate the origin of eukaryotic cellular complexity. In: Nature. 541. Jahrgang, 11. Januar 2017, ISSN 1476-4687, S. 353–358, doi:10.1038/nature21031, PMID 28077874, bibcode:2017Natur.541..353Z (englisch).
  • Steffen Leth Jorgensen, Bjarte Hannisdal, Anders Lanzén, Tamara Baumberger, Kristin Flesland, Rita Fonseca, Lise Øvreås, Ida H. Steen, Ingunn H. Thorseth, Rolf B. Pedersen, Christa Schleper: Correlating microbial community profiles with geochemical data in highly stratified sediments from the Arctic Mid-Ocean Ridge. In: Proceedings of the National Academy of Sciences. Band 109, Nr. 42, 16. Oktober 2012, ISSN 0027-8424, S. E2846–E2855, doi:10.1073/pnas.1207574109 (pnas.org).
  • Umesh Ghoshdastider, Shimin Jiang, David Popp, Robert C. Robinson: In search of the primordial actin filament. In: Proceedings of the National Academy of Sciences. Band 112, Nr. 30, 28. Juli 2015, ISSN 1091-6490, S. 9150–9151, doi:10.1073/pnas.1511568112, PMID 26178194.
  • T. Martin Embley, William Martin: Eukaryotic evolution, changes and challenges. In: Nature. Band 440, Nr. 7084, 30. März 2006, ISSN 1476-4687, S. 623–630, doi:10.1038/nature04546, PMID 16572163.
  • J. A. Lake: Origin of the eukaryotic nucleus determined by rate-invariant analysis of rRNA sequences. In: Nature. Band 331, Nr. 6152, 14. Januar 1988, ISSN 0028-0836, S. 184–186, doi:10.1038/331184a0, PMID 3340165.
  • Lionel Guy, Thijs J. G. Ettema: The archaeal 'TACK' superphylum and the origin of eukaryotes. In: Trends in Microbiology. Band 19, Nr. 12, 1. Dezember 2011, ISSN 1878-4380, S. 580–587, doi:10.1016/j.tim.2011.09.002, PMID 22018741.
  • Minglei Wang, Liudmila S. Yafremava, Derek Caetano-Anollés, Jay E. Mittenthal, Gustavo Caetano-Anollés: Reductive evolution of architectural repertoires in proteomes and the birth of the tripartite world. In: Genome Research. Band 17, Nr. 11, 1. November 2007, ISSN 1088-9051, S. 1572–1585, doi:10.1101/gr.6454307, PMID 17908824.
  • A. H. Knoll, E. J. Javaux, D. Hewitt, P. Cohen: Eukaryotic organisms in Proterozoic oceans. In: Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences. Band 361, Nr. 1470, 29. Juni 2006, ISSN 0962-8436, S. 1023–1038, doi:10.1098/rstb.2006.1843, PMID 16754612.
  • Carl Zimmer: Under the Sea, a Missing Link in the Evolution of Complex Cells. In: The New York Times. 6. Mai 2015, ISSN 0362-4331 (nytimes.com).