Klautau, Michelle, Imešek, Mirna, Azevedo, Fernanda, Pleše, Bruna, Nikolić, Vedran, Ćetković, Helena (2016): Adriatic calcarean sponges (Porifera, Calcarea), with the description of six new species and a richness analysis. European Journal of Taxonomy 178: 1-52, DOI: http://dx.doi.org/10.5852/ejt.2016.17
Rapp, Hans Tore (2006): Calcareous sponges of the genera Clathrina and Guancha (Calcinea, Calcarea, ...
Temperate reefs, built by multilayers of encrusting algae accumulated during hundreds to thousands o...
Calcareous sponges (Phylum Porifera, Class Calcarea) are known to be taxonomically difficult. Previo...
Fig. 20. Species richness in the Adriatic Sea divided by sectors.: 1–9 species;: 10–17 species;: 18–...
Fig. 6. Clathrina conifera (PMR 13738 = UFRJPOR 6869). A. Specimen in ethanol. B. TangentialPublishe...
Fig. 7. Clathrina primordialis (IRB-CLB3 = UFRJPOR 6863). A. Specimen in situ. B. Tangential section...
Fig. 15. Sycon ancora sp. nov., holotype (PMR 17809 = UFRJPOR 8345). A. Cortical diactine. B–C. Anch...
Fig. 14. Sycon ancora sp. nov., holotype (PMR 17809 = UFRJPOR 8345). A. Specimen in ethanol. B. Cros...
Fig. 17. Maximum likelihood tree (ML) based on partial 28S rDNA sequences of Calcinea. Bayesian post...
Fig. 4. Borojevia cerebrum (IRB-CLB33 = UFRJPOR 7539). A. Specimen in ethanol. B. Tangential section...
In this study we analyze the calcarean sponge diversity of the Adriatic Sea, the type locality of so...
Fig. 16. Maximum likelihood (ML) tree based on ITS1-5.8S-ITS2 rDNA sequences of Calcinea. Bayesian p...
Fig. 18. Maximum likelihood tree based on ITS1-5.8S-ITS2 rDNA sequences of Calcaronea. Bayesian post...
Fig. 19. Maximum likelihood tree based on partial 28S rDNA sequences of Calcaronea. Bayesian posteri...
The Mediterranean Sea hosts 2 Sub-classes, 4 Orders, 14 Families, 24 Genera and 79 Species of calca...
Rapp, Hans Tore (2006): Calcareous sponges of the genera Clathrina and Guancha (Calcinea, Calcarea, ...
Temperate reefs, built by multilayers of encrusting algae accumulated during hundreds to thousands o...
Calcareous sponges (Phylum Porifera, Class Calcarea) are known to be taxonomically difficult. Previo...
Fig. 20. Species richness in the Adriatic Sea divided by sectors.: 1–9 species;: 10–17 species;: 18–...
Fig. 6. Clathrina conifera (PMR 13738 = UFRJPOR 6869). A. Specimen in ethanol. B. TangentialPublishe...
Fig. 7. Clathrina primordialis (IRB-CLB3 = UFRJPOR 6863). A. Specimen in situ. B. Tangential section...
Fig. 15. Sycon ancora sp. nov., holotype (PMR 17809 = UFRJPOR 8345). A. Cortical diactine. B–C. Anch...
Fig. 14. Sycon ancora sp. nov., holotype (PMR 17809 = UFRJPOR 8345). A. Specimen in ethanol. B. Cros...
Fig. 17. Maximum likelihood tree (ML) based on partial 28S rDNA sequences of Calcinea. Bayesian post...
Fig. 4. Borojevia cerebrum (IRB-CLB33 = UFRJPOR 7539). A. Specimen in ethanol. B. Tangential section...
In this study we analyze the calcarean sponge diversity of the Adriatic Sea, the type locality of so...
Fig. 16. Maximum likelihood (ML) tree based on ITS1-5.8S-ITS2 rDNA sequences of Calcinea. Bayesian p...
Fig. 18. Maximum likelihood tree based on ITS1-5.8S-ITS2 rDNA sequences of Calcaronea. Bayesian post...
Fig. 19. Maximum likelihood tree based on partial 28S rDNA sequences of Calcaronea. Bayesian posteri...
The Mediterranean Sea hosts 2 Sub-classes, 4 Orders, 14 Families, 24 Genera and 79 Species of calca...
Rapp, Hans Tore (2006): Calcareous sponges of the genera Clathrina and Guancha (Calcinea, Calcarea, ...
Temperate reefs, built by multilayers of encrusting algae accumulated during hundreds to thousands o...
Calcareous sponges (Phylum Porifera, Class Calcarea) are known to be taxonomically difficult. Previo...