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Data from: Genomic data provide insights into the classification of extant termites

  • Simon Hellemans (Creator)
  • Mauricio M. Rocha (Creator)
  • Menglin Wang (Creator)
  • Johanna Romero Arias (Creator)
  • Duur Aanen (Creator)
  • Anne Geneviève Bagnères (Creator)
  • Aleš Buček (Creator)
  • Tiago F. Carrijo (Creator)
  • Thomas Chouvenc (Creator)
  • Carolina Cuezzo (Creator)
  • Joice P. Constantini (Creator)
  • Reginaldo Constantino (Creator)
  • Franck Dedeine (Creator)
  • Jean Deligne (Creator)
  • Paul Eggleton (Creator)
  • Theodore A. Evans (Creator)
  • Robert Hanus (Creator)
  • Mark C. Harrison (Creator)
  • M, (Myriam) Harry (Creator)
  • Guy Josens (Creator)
  • Corentin Jouault (Creator)
  • Chicknayakanahalli M. Kalleshwaraswamy (Creator)
  • Esra Kaymak (Creator)
  • Judith Korb (Creator)
  • Chow Yang Lee (Creator)
  • Frédéric Legendre (Creator)
  • Hou Feng Li (Creator)
  • Nathan Siter (Creator)
  • Tomer Lu (Creator)
  • Kenji Matsuura (Creator)
  • Kiyoto Maekawa (Creator)
  • Dino P. McMahon (Creator)
  • Nobuaki Mizumoto (Creator)
  • Danilo E. Oliveira (Creator)
  • Michael Poulsen (Creator)
  • David Sillam-Dussès (Creator)
  • Nan Yao Su (Creator)
  • Gaku Tokuda (Creator)
  • Edward L. Vargo (Creator)
  • Jessica L. Ware (Creator)
  • Jan Šobotník (Creator)
  • Rudolf H. Scheffrahn (Creator)
  • Eliana M. Cancello (Creator)
  • Yves Roisin (Creator)
  • Michael S. Engel (Creator)
  • Thomas Bourguignon (Creator)

Dataset

Description

The higher classification of termites requires substantial revision as the Neoisoptera, the most diverse termite lineage, comprise many paraphyletic and polyphyletic higher taxa. Here, we produced an updated termite classification using genomic-scale analyses. We reconstructed phylogenies under diverse substitution models with ultraconserved elements analyzed as concatenated matrices or within the multi-species coalescence framework. Our classification is further supported by analyses controlling for rogue loci and taxa, and topological tests. We show that the Neoisoptera are composed of seven family-level monophyletic lineages, including the Heterotermitidae Froggatt, Psammotermitidae Holmgren, and Termitogetonidae Holmgren, raised from subfamilial rank. The species-rich Termitidae are composed of 18 subfamily-level monophyletic lineages, including the new subfamilies Crepititermitinae, Cylindrotermitinae, Forficulitermitinae, Neocapritermitinae, Protohamitermitinae, and Promirotermitinae, and the revived Amitermitinae Kemner, Microcerotermitinae Holmgren, and Mirocapritermitinae Kemner. Building an updated taxonomic classification on the foundation of unambiguously supported monophyletic lineages makes it highly resilient to potential destabilization caused by the future availability of novel phylogenetic markers and methods. The taxonomic stability is further guaranteed by the modularity of the new termite classification, designed to accommodate as-yet undescribed species with uncertain affinities to the herein delimited monophyletic lineages in the form of new families or subfamilies.
  • Genomic data provide insights into the classification of extant termites

    Hellemans, S., Rocha, M. M., Wang, M., Romero Arias, J., Aanen, D. K., Bagnères, A. G., Buček, A., Carrijo, T. F., Chouvenc, T., Cuezzo, C., Constantini, J. P., Constantino, R., Dedeine, F., Deligne, J., Eggleton, P., Evans, T. A., Hanus, R., Harrison, M. C., Harry, M. & Josens, G. & 26 others, Jouault, C., Kalleshwaraswamy, C. M., Kaymak, E., Korb, J., Lee, C. Y., Legendre, F., Li, H. F., Lo, N., Lu, T., Matsuura, K., Maekawa, K., McMahon, D. P., Mizumoto, N., Oliveira, D. E., Poulsen, M., Sillam-Dussès, D., Su, N. Y., Tokuda, G., Vargo, E. L., Ware, J. L., Šobotník, J., Scheffrahn, R. H., Cancello, E., Roisin, Y., Engel, M. S. & Bourguignon, T., 7 Aug 2024, In: Nature Communications. 15, 6724.

    Research output: Contribution to journalArticleAcademicpeer-review

    Open Access

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