Diphylleia rotans (Hungarian Wikipedia)

Analysis of information sources in references of the Wikipedia article "Diphylleia rotans" in Hungarian language version.

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  • Brugerolle, G. (2002). „Collodictyon triciliatum and Diphylleia rotans (= Aulacomonas submarina) Form a New Family of Flagellates (Collodictyonidae) with Tubular Mitochondrial Cristae that is Phylogenetically Distant from other Flagellate Groups”. Protist 153, 59–70. o. DOI:10.1078/1434-4610-00083. PMID 12022276. 
  • Kamikawa R, Shiratori T, Ishida K, Miyashita H, Roger AJ (2016. február 1.). „Group II Intron-Mediated Trans-Splicing in the Gene-Rich Mitochondrial Genome of an Enigmatic Eukaryote, Diphylleia rotans”. Genome Biol Evol 8 (2), 458–466. o. DOI:10.1093/gbe/evw011. PMID 26833505. PMC 4779616. 
  • Janouškovec J, Tikhonenkov DV, Burki F, Howe AT, Rohwer FL, Mylnikov AP, Keeling PJ (2017. december 4.). „A New Lineage of Eukaryotes Illuminates Early Mitochondrial Genome Reduction”. Current Biology 27 (23). DOI:10.1016/j.cub.2017.10.051. 
  • Cavalier-Smith T (1993. december). „Kingdom Protozoa and its 18 phyla”. Microbiol Rev 57 (4), 953–994. o. DOI:10.1128/mr.57.4.953-994.1993. PMID 8302218. PMC 372943. 
  • Cavalier-Smith T (2022. május). „Ciliary transition zone evolution and the root of the eukaryote tree: implications for opisthokont origin and classification of kingdoms Protozoa, Plantae, and Fungi”. Protoplasma 259 (3), 487–593. o. DOI:10.1007/s00709-021-01665-7. PMID 34940909. PMC 9010356. 
  • Adl SM, Bass D, Lane CE, Lukeš J, Schoch CL, Smirnov A, Agatha S, Berney C, Brown MW, Burki F, Cárdenas P, Čepička I, Chistyakova L, Del Campo J, Dunthorn M, Edvardsen B, Eglit Y, Guillou L, Hampl V, Heiss AA, Hoppenrath M, James TY, Karnkowska A, Karpov S, Kim E, Kolisko M, Kudryavtsev A, Lahr DJG, Lara E, Le Gall L, Lynn DH, Mann DG, Massana R, Mitchell EAD, Morrow C, Park JS, Pawlowski JW, Powell MJ, Richter DJ, Rueckert S, Shadwick L, Shimano S, Spiegel FW, Torruella G, Youssef N, Zlatogursky V, Zhang Q (2019. január 19.). „Revisions to the Classification, Nomenclature, and Diversity of Eukaryotes”. J Eukaryot Microbiol 66 (1), 4–119. o. DOI:10.1111/jeu.12691. PMID 30257078. PMC 6492006. 
  • Ermis H, Guven-Gulhan U, Cakir T, Altinbas M (2020. február 26.). „Effect of iron and magnesium addition on population dynamics and high value product of microalgae grown in anaerobic liquid digestate”. Sci Rep 10 (1), 3510. o. DOI:10.1038/s41598-020-60622-1. PMID 32103096. PMC 7044283. 
  • Butenko A, Lukeš J, Speijer D, Wideman JG (2024. január 25.). „Mitochondrial genomes revisited: why do different lineages retain different genes?”. BMC Biol 22 (1), 15. o. DOI:10.1186/s12915-024-01824-1. PMID 38273274. PMC 10809612. 
  • Liang H, Mower JP, Chia CP (2023. december 1.). „Functional Prokaryotic-Like Deoxycytidine Triphosphate Deaminases and Thymidylate Synthase in Eukaryotic Social Amoebae: Vertical, Endosymbiotic, or Horizontal Gene Transfer?”. Mol Biol Evol 40 (12), msad268. o. DOI:10.1093/molbev/msad268. PMID 38064674. PMC 10733785. 
  • Orr RJS, Zhao S, Klaveness D, Yabuki A, Ikeda K, Watanabe MM, Shalchian-Tabrizi K (2018. július 18.). „Enigmatic Diphyllatea eukaryotes: culturing and targeted PacBio RS amplicon sequencing reveals a higher order taxonomic diversity and global distribution”. BMC Evol Biol 18 (1), 115. o. DOI:10.1186/s12862-018-1224-z. PMID 30021531. PMC 6052632. 

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pubmed.ncbi.nlm.nih.gov

  • Brugerolle, G. (2002). „Collodictyon triciliatum and Diphylleia rotans (= Aulacomonas submarina) Form a New Family of Flagellates (Collodictyonidae) with Tubular Mitochondrial Cristae that is Phylogenetically Distant from other Flagellate Groups”. Protist 153, 59–70. o. DOI:10.1078/1434-4610-00083. PMID 12022276. 
  • Kamikawa R, Shiratori T, Ishida K, Miyashita H, Roger AJ (2016. február 1.). „Group II Intron-Mediated Trans-Splicing in the Gene-Rich Mitochondrial Genome of an Enigmatic Eukaryote, Diphylleia rotans”. Genome Biol Evol 8 (2), 458–466. o. DOI:10.1093/gbe/evw011. PMID 26833505. PMC 4779616. 
  • Cavalier-Smith T (1993. december). „Kingdom Protozoa and its 18 phyla”. Microbiol Rev 57 (4), 953–994. o. DOI:10.1128/mr.57.4.953-994.1993. PMID 8302218. PMC 372943. 
  • Cavalier-Smith T (2022. május). „Ciliary transition zone evolution and the root of the eukaryote tree: implications for opisthokont origin and classification of kingdoms Protozoa, Plantae, and Fungi”. Protoplasma 259 (3), 487–593. o. DOI:10.1007/s00709-021-01665-7. PMID 34940909. PMC 9010356. 
  • Adl SM, Bass D, Lane CE, Lukeš J, Schoch CL, Smirnov A, Agatha S, Berney C, Brown MW, Burki F, Cárdenas P, Čepička I, Chistyakova L, Del Campo J, Dunthorn M, Edvardsen B, Eglit Y, Guillou L, Hampl V, Heiss AA, Hoppenrath M, James TY, Karnkowska A, Karpov S, Kim E, Kolisko M, Kudryavtsev A, Lahr DJG, Lara E, Le Gall L, Lynn DH, Mann DG, Massana R, Mitchell EAD, Morrow C, Park JS, Pawlowski JW, Powell MJ, Richter DJ, Rueckert S, Shadwick L, Shimano S, Spiegel FW, Torruella G, Youssef N, Zlatogursky V, Zhang Q (2019. január 19.). „Revisions to the Classification, Nomenclature, and Diversity of Eukaryotes”. J Eukaryot Microbiol 66 (1), 4–119. o. DOI:10.1111/jeu.12691. PMID 30257078. PMC 6492006. 
  • Ermis H, Guven-Gulhan U, Cakir T, Altinbas M (2020. február 26.). „Effect of iron and magnesium addition on population dynamics and high value product of microalgae grown in anaerobic liquid digestate”. Sci Rep 10 (1), 3510. o. DOI:10.1038/s41598-020-60622-1. PMID 32103096. PMC 7044283. 
  • Butenko A, Lukeš J, Speijer D, Wideman JG (2024. január 25.). „Mitochondrial genomes revisited: why do different lineages retain different genes?”. BMC Biol 22 (1), 15. o. DOI:10.1186/s12915-024-01824-1. PMID 38273274. PMC 10809612. 
  • Liang H, Mower JP, Chia CP (2023. december 1.). „Functional Prokaryotic-Like Deoxycytidine Triphosphate Deaminases and Thymidylate Synthase in Eukaryotic Social Amoebae: Vertical, Endosymbiotic, or Horizontal Gene Transfer?”. Mol Biol Evol 40 (12), msad268. o. DOI:10.1093/molbev/msad268. PMID 38064674. PMC 10733785. 
  • Valster RM, Wullings BA, van der Kooij D (2010. szeptember 17.). „Detection of protozoan hosts for Legionella pneumophila in engineered water systems by using a biofilm batch test”. Appl Environ Microbiol 76 (21), 7144–7153. o. PMID 20851993. PMC 2976270. 
  • Orr RJS, Zhao S, Klaveness D, Yabuki A, Ikeda K, Watanabe MM, Shalchian-Tabrizi K (2018. július 18.). „Enigmatic Diphyllatea eukaryotes: culturing and targeted PacBio RS amplicon sequencing reveals a higher order taxonomic diversity and global distribution”. BMC Evol Biol 18 (1), 115. o. DOI:10.1186/s12862-018-1224-z. PMID 30021531. PMC 6052632. 

ncbi.nlm.nih.gov

  • Kamikawa R, Shiratori T, Ishida K, Miyashita H, Roger AJ (2016. február 1.). „Group II Intron-Mediated Trans-Splicing in the Gene-Rich Mitochondrial Genome of an Enigmatic Eukaryote, Diphylleia rotans”. Genome Biol Evol 8 (2), 458–466. o. DOI:10.1093/gbe/evw011. PMID 26833505. PMC 4779616. 
  • Cavalier-Smith T (1993. december). „Kingdom Protozoa and its 18 phyla”. Microbiol Rev 57 (4), 953–994. o. DOI:10.1128/mr.57.4.953-994.1993. PMID 8302218. PMC 372943. 
  • Cavalier-Smith T (2022. május). „Ciliary transition zone evolution and the root of the eukaryote tree: implications for opisthokont origin and classification of kingdoms Protozoa, Plantae, and Fungi”. Protoplasma 259 (3), 487–593. o. DOI:10.1007/s00709-021-01665-7. PMID 34940909. PMC 9010356. 
  • Adl SM, Bass D, Lane CE, Lukeš J, Schoch CL, Smirnov A, Agatha S, Berney C, Brown MW, Burki F, Cárdenas P, Čepička I, Chistyakova L, Del Campo J, Dunthorn M, Edvardsen B, Eglit Y, Guillou L, Hampl V, Heiss AA, Hoppenrath M, James TY, Karnkowska A, Karpov S, Kim E, Kolisko M, Kudryavtsev A, Lahr DJG, Lara E, Le Gall L, Lynn DH, Mann DG, Massana R, Mitchell EAD, Morrow C, Park JS, Pawlowski JW, Powell MJ, Richter DJ, Rueckert S, Shadwick L, Shimano S, Spiegel FW, Torruella G, Youssef N, Zlatogursky V, Zhang Q (2019. január 19.). „Revisions to the Classification, Nomenclature, and Diversity of Eukaryotes”. J Eukaryot Microbiol 66 (1), 4–119. o. DOI:10.1111/jeu.12691. PMID 30257078. PMC 6492006. 
  • Ermis H, Guven-Gulhan U, Cakir T, Altinbas M (2020. február 26.). „Effect of iron and magnesium addition on population dynamics and high value product of microalgae grown in anaerobic liquid digestate”. Sci Rep 10 (1), 3510. o. DOI:10.1038/s41598-020-60622-1. PMID 32103096. PMC 7044283. 
  • Butenko A, Lukeš J, Speijer D, Wideman JG (2024. január 25.). „Mitochondrial genomes revisited: why do different lineages retain different genes?”. BMC Biol 22 (1), 15. o. DOI:10.1186/s12915-024-01824-1. PMID 38273274. PMC 10809612. 
  • Liang H, Mower JP, Chia CP (2023. december 1.). „Functional Prokaryotic-Like Deoxycytidine Triphosphate Deaminases and Thymidylate Synthase in Eukaryotic Social Amoebae: Vertical, Endosymbiotic, or Horizontal Gene Transfer?”. Mol Biol Evol 40 (12), msad268. o. DOI:10.1093/molbev/msad268. PMID 38064674. PMC 10733785. 
  • Valster RM, Wullings BA, van der Kooij D (2010. szeptember 17.). „Detection of protozoan hosts for Legionella pneumophila in engineered water systems by using a biofilm batch test”. Appl Environ Microbiol 76 (21), 7144–7153. o. PMID 20851993. PMC 2976270. 
  • Orr RJS, Zhao S, Klaveness D, Yabuki A, Ikeda K, Watanabe MM, Shalchian-Tabrizi K (2018. július 18.). „Enigmatic Diphyllatea eukaryotes: culturing and targeted PacBio RS amplicon sequencing reveals a higher order taxonomic diversity and global distribution”. BMC Evol Biol 18 (1), 115. o. DOI:10.1186/s12862-018-1224-z. PMID 30021531. PMC 6052632. 

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