Phylogeny of Hexactinellida inferred from concatenated molecular markers with MrBayes. 50% majority rule consensus tree from 25,000 post-burnin samples. Average standard deviation of split frequencies between two independent runs was 0.003858. Bayesian posterior probabilities <1.00 shown on branches. Newly sampled species highlighted in bold. *, 16S and COI sequence data from mitochondrial genome sequencing projects [72, 73]. Scale bar, expected number of substitutions per site. (JPG 615 KB
Cleaned concatenated alignment (molecular supermatrix) in Nexus format. (NEX 354 KB
BACKGROUND: Glass sponges (Class Hexactinellida) are important components of deep-sea ecosystems and...
Figure 8. Maximum-likelihood phylogeny of Sceptrulophora based on concatenated nuclear 18S and 28S r...
Mitochondrial 16S rDNA phylogeny of Hexactinellida inferred with RAxML. Bootstrap values >50% shown ...
28S rDNA phylogeny of Hexactinellida inferred with RAxML. Bootstrap values >50% shown on branches (b...
Phylogeny of Amphidiscophora inferred from the morphological data matrix with MrBayes. 50% majority ...
Phylogeny of Amphidiscophora inferred with MrBayes from concatenated molecular and morphological dat...
Detailed account of the morphology-based and total-evidence phylogenies. (DOCX 172 KB
Phylogeny of Hexasterophora inferred with RAxML from concatenated molecular and morphological data, ...
Phylogeny of Amphidiscophora inferred from the morphological data matrix with RAxML. Bootstrap value...
Placement of Amphidiscophora genera without sequence data (taxon names preceded by âQUERY__â) on...
Morphological character matrix of Hexasterophora with annotated character list. (DOCX 258 KB
Placement of Hexasterophora genera without sequence data (taxon names preceded by âQUERY__â) on ...
Abstract.—Reconstructing the phylogeny of sponges (Porifera) is one of the remaining challenges to r...
Combined morphological character matrix of Amphidiscophora and Hexasterophora. (NEX 27.8 KB
Cleaned concatenated alignment (molecular supermatrix) in Nexus format. (NEX 354 KB
BACKGROUND: Glass sponges (Class Hexactinellida) are important components of deep-sea ecosystems and...
Figure 8. Maximum-likelihood phylogeny of Sceptrulophora based on concatenated nuclear 18S and 28S r...
Mitochondrial 16S rDNA phylogeny of Hexactinellida inferred with RAxML. Bootstrap values >50% shown ...
28S rDNA phylogeny of Hexactinellida inferred with RAxML. Bootstrap values >50% shown on branches (b...
Phylogeny of Amphidiscophora inferred from the morphological data matrix with MrBayes. 50% majority ...
Phylogeny of Amphidiscophora inferred with MrBayes from concatenated molecular and morphological dat...
Detailed account of the morphology-based and total-evidence phylogenies. (DOCX 172 KB
Phylogeny of Hexasterophora inferred with RAxML from concatenated molecular and morphological data, ...
Phylogeny of Amphidiscophora inferred from the morphological data matrix with RAxML. Bootstrap value...
Placement of Amphidiscophora genera without sequence data (taxon names preceded by âQUERY__â) on...
Morphological character matrix of Hexasterophora with annotated character list. (DOCX 258 KB
Placement of Hexasterophora genera without sequence data (taxon names preceded by âQUERY__â) on ...
Abstract.—Reconstructing the phylogeny of sponges (Porifera) is one of the remaining challenges to r...
Combined morphological character matrix of Amphidiscophora and Hexasterophora. (NEX 27.8 KB
Cleaned concatenated alignment (molecular supermatrix) in Nexus format. (NEX 354 KB
BACKGROUND: Glass sponges (Class Hexactinellida) are important components of deep-sea ecosystems and...
Figure 8. Maximum-likelihood phylogeny of Sceptrulophora based on concatenated nuclear 18S and 28S r...