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A molecular phylogeny for the order clathrinida rekindles and refines haeckel's taxonomic proposal for calcareous sponges

  • Michelle Klautau
    ,
  • Fernanda Azevedo
    ,
  • ,
  • Hans Tore Rapp
    ,
  • Allen Collins
    ,
  • Claudia Augusta De Moraes Russo
  • Universidade Federal do Rio de Janeiro
    ,
  • ,
  • University of Bergen
    ,
  • National Museum of Natural History
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 447-461 (15 pages)

Journal (Volume, Issue Number)

Integrative and Comparative Biology (Volume 53, Issue 3)

Publication milestones

  • Published - 09/2013

Publication status

Published - 09/2013

ISSN

1540-7063

Publication IDs

  • Scopus: 84882957869
  • PubMed: 23704365

Abstract

Most biological groups are still longing for a phylogenetically sound taxonomic organization. In this article, we aimed to verify the consistency of morphological characters in calcarean sponges of the well-known non-monophyletic order Clathrinida using a molecular phylogeny. For this we included 50 species, including six type species, currently assigned to eight different genera. A maximum likelihood topology was generated for the nuclear ITS marker using the General Time Reversible model and the bootstrap reliability test. Our topology indicated 10 clathrinid clades that included species with consistent morphological characters. In the present study, we defined nine of these clades as clathrinid genera, including four newly described and two newly diagnosed genera. Recent studies have indicated that not much phylogenetic information may be found in morphology, but our findings contradict this general assertion. Our study confirms the suitability of skeleton and body anastomosis as valid characters in a phylogenetically sound taxonomy for the order. Interestingly, we have also found that, apart from the Calcinea/Calcaronea split and a few minor details, Haeckel's original proposal is remarkably similar to our own, which was based on a molecular phylogeny 140 years later.

Funding Details

The Moorea Biocode project, funded by the Gordon and Betty Moore Foundation, is gratefully acknowledged for supporting the use and collection of calcarean specimens. Part of this work was supported by NSF’s Porifera Tree of Life project (DEB 0829986 awarded to R. Thacker, P. Bangalore, and AGC). H.T.R. was supported by the Research Council of Norway (through the Centre for Geobiology) and the Norwegian Biodiversity Information Centre. M.K. and C.A.d.M.R. are funded by fellowships and research grants from the Brazilian National Research Council (CNPq) and the Rio de Janeiro State Research Foundation (Fundac¸ão Carlos Chagas Filho de Amparo à Pesquisa do Estado do Rio de Janeiro - FAPERJ). B.C.L. and F.A. received scholarships from the CNPq and FAPERJ, respectively.
FundersFunding numbers
AGC
-
Rio de Janeiro State Research Foundation
-
NSF
DEB 0829986, 0829986
GBMF
-
CNPq
-
FAPERJ
-
Norges Forskningsråd
-
NBIC
-

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