Radhey S. Gupta, Sohail Naushad, Sheridan Baker:Phylogenomic analyses and molecular signatures for the class Halobacteria and its two major clades: a proposal for division of the class Halobacteria into an emended order Halobacteriales and two new orders, Haloferacales ord. nov. and Natrialbales ord. nov., containing the novel families Haloferacaceae fam. nov. and Natrialbaceae fam. nov. In: International Journal of Systematic and Evolutionary Microbiology. Band65, Pt 3, März 2015, ISSN1466-5034, S.1050–1069, doi:10.1099/ijs.0.070136-0, PMID 25428416.
Eva K. Pillai, Thibaut Brunet:Archaea go multicellular under pressure. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.28–29, doi:10.1126/science.adw6689 (science.org[abgerufen am 18.Juni 2025]).
Theopi Rados, Olivia S. Leland, Pedro Escudeiro, John Mallon, Katherine Andre, Ido Caspy, Andriko von Kügelgen, Elad Stolovicki, Sinead Nguyen, Inés Lucía Patop, L. Thiberio Rangel, Sebastian Kadener, Lars D. Renner, Vera Thiel, Yoav Soen, Tanmay A. M. Bharat, Vikram Alva, Alex Bisson:Tissue-like multicellular development triggered by mechanical compression in archaea. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.109–115, doi:10.1126/science.adu0047, PMID 40179183, PMC7617734(freier Volltext) – (science.org[abgerufen am 18.Juni 2025]).
A. Naor, P. Lapierre, M. Mevarech, R. T. Papke, U. Gophna: Low species barriers in halophilic archaea and the formation of recombinant hybrids. In: Current biology: CB. Band 22, Nummer 15, August 2012, S.1444–1448, doi:10.1016/j.cub.2012.05.056, PMID 22748314.
Y. Liu, Mart Krupovic etal.: ICTV Proposal 2021.001A (zip:docx), PDF (via Universität Helsinki). Create three new orders and 14 new families in the class Caudoviricetes (Duplodnaviria, Uroviricota) for classification of archaeal tailed viruses. Oktober 2020.
Y. Liu, Mart Krupovic etal.: ICTV Proposal 2021.001A (zip:docx), PDF (via Universität Helsinki). Create three new orders and 14 new families in the class Caudoviricetes (Duplodnaviria, Uroviricota) for classification of archaeal tailed viruses. Oktober 2020.
Radhey S. Gupta, Sohail Naushad, Sheridan Baker:Phylogenomic analyses and molecular signatures for the class Halobacteria and its two major clades: a proposal for division of the class Halobacteria into an emended order Halobacteriales and two new orders, Haloferacales ord. nov. and Natrialbales ord. nov., containing the novel families Haloferacaceae fam. nov. and Natrialbaceae fam. nov. In: International Journal of Systematic and Evolutionary Microbiology. Band65, Pt 3, März 2015, ISSN1466-5034, S.1050–1069, doi:10.1099/ijs.0.070136-0, PMID 25428416.
Theopi Rados, Olivia S. Leland, Pedro Escudeiro, John Mallon, Katherine Andre, Ido Caspy, Andriko von Kügelgen, Elad Stolovicki, Sinead Nguyen, Inés Lucía Patop, L. Thiberio Rangel, Sebastian Kadener, Lars D. Renner, Vera Thiel, Yoav Soen, Tanmay A. M. Bharat, Vikram Alva, Alex Bisson:Tissue-like multicellular development triggered by mechanical compression in archaea. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.109–115, doi:10.1126/science.adu0047, PMID 40179183, PMC7617734(freier Volltext) – (science.org[abgerufen am 18.Juni 2025]).
A. Naor, P. Lapierre, M. Mevarech, R. T. Papke, U. Gophna: Low species barriers in halophilic archaea and the formation of recombinant hybrids. In: Current biology: CB. Band 22, Nummer 15, August 2012, S.1444–1448, doi:10.1016/j.cub.2012.05.056, PMID 22748314.
Eva K. Pillai, Thibaut Brunet:Archaea go multicellular under pressure. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.28–29, doi:10.1126/science.adw6689 (science.org[abgerufen am 18.Juni 2025]).
Theopi Rados, Olivia S. Leland, Pedro Escudeiro, John Mallon, Katherine Andre, Ido Caspy, Andriko von Kügelgen, Elad Stolovicki, Sinead Nguyen, Inés Lucía Patop, L. Thiberio Rangel, Sebastian Kadener, Lars D. Renner, Vera Thiel, Yoav Soen, Tanmay A. M. Bharat, Vikram Alva, Alex Bisson:Tissue-like multicellular development triggered by mechanical compression in archaea. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.109–115, doi:10.1126/science.adu0047, PMID 40179183, PMC7617734(freier Volltext) – (science.org[abgerufen am 18.Juni 2025]).
Radhey S. Gupta, Sohail Naushad, Sheridan Baker:Phylogenomic analyses and molecular signatures for the class Halobacteria and its two major clades: a proposal for division of the class Halobacteria into an emended order Halobacteriales and two new orders, Haloferacales ord. nov. and Natrialbales ord. nov., containing the novel families Haloferacaceae fam. nov. and Natrialbaceae fam. nov. In: International Journal of Systematic and Evolutionary Microbiology. Band65, Pt 3, März 2015, ISSN1466-5034, S.1050–1069, doi:10.1099/ijs.0.070136-0, PMID 25428416.
Eva K. Pillai, Thibaut Brunet:Archaea go multicellular under pressure. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.28–29, doi:10.1126/science.adw6689 (science.org[abgerufen am 18.Juni 2025]).
Theopi Rados, Olivia S. Leland, Pedro Escudeiro, John Mallon, Katherine Andre, Ido Caspy, Andriko von Kügelgen, Elad Stolovicki, Sinead Nguyen, Inés Lucía Patop, L. Thiberio Rangel, Sebastian Kadener, Lars D. Renner, Vera Thiel, Yoav Soen, Tanmay A. M. Bharat, Vikram Alva, Alex Bisson:Tissue-like multicellular development triggered by mechanical compression in archaea. In: Science. Band388, Nr.6742, 4.April 2025, ISSN0036-8075, S.109–115, doi:10.1126/science.adu0047, PMID 40179183, PMC7617734(freier Volltext) – (science.org[abgerufen am 18.Juni 2025]).