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Hemichordate genomes and deuterostome origins
Simakov, O.; Kawashima, T.; Marlétaz, F.; Jenkins, J.; Koyanagi, R.; Mitros, T.; Hisata, K.; Bredeson, J.; Shoguchi, E.; Gyoja, F.; Yue, J.-X.; Chen, Y.-C.; Freeman, R.M.; Sasaki, A.; Hikosaka-Katayama, T.; Sato, A.; Fujie, M.; Baughman, K.W.; Levine, J.; Gaonzalez, P.; Cameron, C.; Fritzenwanker, J.H.; Pani, A.M.; Goto, H.; Kanda, M. (2015). Hemichordate genomes and deuterostome origins. Nature (Lond.) 527(7579): 459-465.
In: Nature: International Weekly Journal of Science. Nature Publishing Group: London. ISSN 0028-0836, more
Peer reviewed article  

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Authors  Top 
  • Simakov, O.
  • Kawashima, T.
  • Marlétaz, F.
  • Jenkins, J.
  • Koyanagi, R.
  • Mitros, T.
  • Hisata, K.
  • Bredeson, J.
  • Shoguchi, E.
  • Gyoja, F.
  • Yue, J.-X.
  • Chen, Y.-C.
  • Freeman, R.M.
  • Sasaki, A.
  • Hikosaka-Katayama, T.
  • Sato, A.
  • Fujie, M.
  • Baughman, K.W.
  • Levine, J.
  • Gaonzalez, P.
  • Cameron, C.
  • Fritzenwanker, J.H.
  • Pani, A.M.
  • Goto, H.
  • Kanda, M.

    Sequencing the genomes of two enteropneusts reveals complex genomic organization and developmental innovation in the ancestor of deuterostomes, a group of animals including echinoderms (starfish and their relatives) and chordates (which includes humans).

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