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冠輪動物

出典: フリー百科事典『ウィキペディア(Wikipedia)』
冠輪動物
生息年代: 前期カンブリア紀現世

様々な冠輪動物

地質時代
古生代カンブリア紀 - 現世
分類
: 動物界 Animalia
階級なし : 真正後生動物 Eumetazoa
亜界 : 左右相称動物亜界 Bilateria
下界 : 前口動物下界 Protostomia
上門 : 冠輪動物上門 Lophotrochozoa
学名
Lophotrochozoa
Halanych et al., 1995 [1]
英名
Lophotrochozoan

LophotrochozoanLophotrochozoa[1][2]SpiralianSpiralia[1][2]

概要[編集]


Halanych et al. (1995)18SRNA3[1][3][4][5][6]

[2]=

[6]

[2]

系統関係[編集]

2010年代後半以降の複数の分子系統解析に基づく系統樹[7][3][8][4][2]
左右相称動物
後口動物[注釈 3]

棘皮動物脊椎動物など

前口動物
脱皮動物

節足動物線形動物など

広義の冠輪動物(=螺旋卵割動物)
担顎動物

顎口動物

毛顎動物

輪形動物[注釈 1]

微顎動物Limnognathia maerski

Platytrochozoa

腹毛動物

扁形動物

内肛動物

有輪動物

二胚動物

軟体動物

環形動物[注釈 2]

紐形動物

触手冠動物

腕足動物

外肛動物

箒虫動物


2[11][3][4][7][8][12][13][14]Platytrochozoa2[11][3][7][4][15]2019[7][3][13][14][6]Platytrochozoa=[11][3][7]2014[16][11][3][4][7][8]Platytrochozoa[4][4][8][17][4]2[5][8]3[7][3][11]=Polyzoa[16][18][4][19]

脚注[編集]

注釈[編集]



(一)^ 

(二)^ 

(三)^ 2019[7][9][10]

出典[編集]

  1. ^ a b c d Halanych, Kenneth M.; Bacheller, John D.; Aguinaldo, Anna Marie A.; Liva, Stephanie M.; Hillis, David M.; Lake, James A. (1995-03-17). “Evidence from 18S Ribosomal DNA that the Lophophorates Are Protostome Animals”. Science 267 (5204): 1641–1643. doi:10.1126/science.7886451. ISSN 0036-8075. 
  2. ^ a b c d e Bleidorn, Christoph (2019-12-01). “Recent progress in reconstructing lophotrochozoan (spiralian) phylogeny” (英語). Organisms Diversity & Evolution 19 (4): 557–566. doi:10.1007/s13127-019-00412-4. ISSN 1618-1077. 
  3. ^ a b c d e f g h Laumer, Christopher E.; Fernández, Rosa; Lemer, Sarah; Combosch, David; Kocot, Kevin M.; Riesgo, Ana; Andrade, Sónia C. S.; Sterrer, Wolfgang et al. (2019-07-10). “Revisiting metazoan phylogeny with genomic sampling of all phyla”. Proceedings of the Royal Society B: Biological Sciences 286 (1906): 20190831. doi:10.1098/rspb.2019.0831. PMC 6650721. PMID 31288696. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650721/. 
  4. ^ a b c d e f g h i Zverkov, Oleg A.; Mikhailov, Kirill V.; Isaev, Sergey V.; Rusin, Leonid Y.; Popova, Olga V.; Logacheva, Maria D.; Penin, Alexey A.; Moroz, Leonid L. et al. (2019). “Dicyemida and Orthonectida: Two Stories of Body Plan Simplification”. Frontiers in Genetics 10. doi:10.3389/fgene.2019.00443/full. ISSN 1664-8021. 
  5. ^ a b Lu, Tsai-Ming; Kanda, Miyuki; Satoh, Noriyuki; Furuya, Hidetaka (2017-05-29). “The phylogenetic position of dicyemid mesozoans offers insights into spiralian evolution”. Zoological Letters 3 (1): 6. doi:10.1186/s40851-017-0068-5. ISSN 2056-306X. PMC 5447306. PMID 28560048. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5447306/. 
  6. ^ a b c Giribet, Gonzalo (2020). The invertebrate tree of life. Gregory D. Edgecombe. Princeton, New Jersey. ISBN 978-0-691-19706-7. OCLC 1129197548. https://www.worldcat.org/oclc/1129197548 
  7. ^ a b c d e f g h Marlétaz, Ferdinand; Peijnenburg, Katja T. C. A.; Goto, Taichiro; Satoh, Noriyuki; Rokhsar, Daniel S. (2019-01-21). “A New Spiralian Phylogeny Places the Enigmatic Arrow Worms among Gnathiferans” (English). Current Biology 29 (2): 312–318.e3. doi:10.1016/j.cub.2018.11.042. ISSN 0960-9822. PMID 30639106. https://www.cell.com/current-biology/abstract/S0960-9822(18)31541-0. 
  8. ^ a b c d e Schiffer, Philipp H.; Robertson, Helen E.; Telford, Maximilian J. (2018-06-18). “Orthonectids Are Highly Degenerate Annelid Worms” (English). Current Biology 28 (12): 1970–1974.e3. doi:10.1016/j.cub.2018.04.088. ISSN 0960-9822. PMID 29861137. https://www.cell.com/current-biology/abstract/S0960-9822(18)30560-8. 
  9. ^ Philippe, Hervé; Poustka, Albert J.; Chiodin, Marta; Hoff, Katharina J.; Dessimoz, Christophe; Tomiczek, Bartlomiej; Schiffer, Philipp H.; Müller, Steven et al. (2019-06-03). “Mitigating Anticipated Effects of Systematic Errors Supports Sister-Group Relationship between Xenacoelomorpha and Ambulacraria” (English). Current Biology 29 (11): 1818–1826.e6. doi:10.1016/j.cub.2019.04.009. ISSN 0960-9822. PMID 31104936. https://www.cell.com/current-biology/abstract/S0960-9822(19)30407-5. 
  10. ^ Kapli, Paschalia; Natsidis, Paschalis; Leite, Daniel J.; Fursman, Maximilian; Jeffrie, Nadia; Rahman, Imran A.; Philippe, Hervé; Copley, Richard R. et al. (2021-03-19). “Lack of support for Deuterostomia prompts reinterpretation of the first Bilateria” (英語). Science Advances 7 (12): eabe2741. doi:10.1126/sciadv.abe2741. ISSN 2375-2548. PMC 7978419. PMID 33741592. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7978419/. 
  11. ^ a b c d e Laumer, Christopher E.; Bekkouche, Nicolas; Kerbl, Alexandra; Goetz, Freya; Neves, Ricardo C.; Sørensen, Martin V.; Kristensen, Reinhardt M.; Hejnol, Andreas et al. (2015-08-03). “Spiralian Phylogeny Informs the Evolution of Microscopic Lineages” (English). Current Biology 25 (15): 2000–2006. doi:10.1016/j.cub.2015.06.068. ISSN 0960-9822. PMID 26212884. https://www.cell.com/current-biology/abstract/S0960-9822(15)00795-2. 
  12. ^ Howard, Richard J.; Giacomelli, Mattia; Lozano-Fernandez, Jesus; Edgecombe, Gregory D.; Fleming, James F.; Kristensen, Reinhardt M.; Ma, Xiaoya; Olesen, Jørgen et al. (2022-03-10). “The Ediacaran origin of Ecdysozoa: integrating fossil and phylogenomic data”. Journal of the Geological Society: jgs2021–107. doi:10.1144/jgs2021-107. ISSN 0016-7649. 
  13. ^ a b Vinther, Jakob; Parry, Luke A. (2019-03-04). “Bilateral Jaw Elements in Amiskwia sagittiformis Bridge the Morphological Gap between Gnathiferans and Chaetognaths” (English). Current Biology 29 (5): 881–888.e1. doi:10.1016/j.cub.2019.01.052. ISSN 0960-9822. PMID 30799238. https://www.cell.com/current-biology/abstract/S0960-9822(19)30081-8. 
  14. ^ a b Howard, Richard J.; Edgecombe, Gregory D.; Shi, Xiaomei; Hou, Xianguang; Ma, Xiaoya (2020-11-23). “Ancestral morphology of Ecdysozoa constrained by an early Cambrian stem group ecdysozoan”. BMC Evolutionary Biology 20 (1): 156. doi:10.1186/s12862-020-01720-6. ISSN 1471-2148. PMC 7684930. PMID 33228518. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7684930/. 
  15. ^ Telford, Maximilian J.; Budd, Graham E.; Philippe, Hervé (2015-10-05). “Phylogenomic Insights into Animal Evolution” (English). Current Biology 25 (19): R876–R887. doi:10.1016/j.cub.2015.07.060. ISSN 0960-9822. PMID 26439351. https://www.cell.com/current-biology/abstract/S0960-9822(15)00928-8. 
  16. ^ a b Struck, Torsten H.; Wey-Fabrizius, Alexandra R.; Golombek, Anja; Hering, Lars; Weigert, Anne; Bleidorn, Christoph; Klebow, Sabrina; Iakovenko, Nataliia et al. (2014-07-01). “Platyzoan Paraphyly Based on Phylogenomic Data Supports a Noncoelomate Ancestry of Spiralia”. Molecular Biology and Evolution 31 (7): 1833–1849. doi:10.1093/molbev/msu143. ISSN 0737-4038. 
  17. ^ Rouse, Greg W. (2022). Annelida. Fredrik Pleijel, Ekin Tilic. Oxford. ISBN 978-0-19-188577-8. OCLC 1303210353. https://www.worldcat.org/oclc/1303210353 
  18. ^ Kocot, Kevin M.; Struck, Torsten H.; Merkel, Julia; Waits, Damien S.; Todt, Christiane; Brannock, Pamela M.; Weese, David A.; Cannon, Johanna T. et al. (2017-03-01). “Phylogenomics of Lophotrochozoa with Consideration of Systematic Error”. Systematic Biology 66 (2): 256–282. doi:10.1093/sysbio/syw079. ISSN 1063-5157. 
  19. ^ Nesnidal, Maximilian P.; Helmkampf, Martin; Meyer, Achim; Witek, Alexander; Bruchhaus, Iris; Ebersberger, Ingo; Hankeln, Thomas; Lieb, Bernhard et al. (2013-11-17). “New phylogenomic data support the monophyly of Lophophorata and an Ectoproct-Phoronid clade and indicate that Polyzoa and Kryptrochozoa are caused by systematic bias”. BMC Evolutionary Biology 13 (1): 253. doi:10.1186/1471-2148-13-253. ISSN 1471-2148. PMC 4225663. PMID 24238092. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4225663/.