1) Concatenated alignment of 12S, 16S, 18S, 28S, COI and ITS used to construct phylogenies on Kise et al., 2021.“Kise_etal2021_12S_16S_18S_28S_COI_ITS_ConcAlign.nex” 2) Phylogenetic estimations using Maximum Likelihood (ML) method.“Kise_etal2021_12S_16S_18S_28S_COI_ITS_raxml-ng.nex”Phylogenetic estimations using Bayesian posterior probabilities (BPP) method.“Kise_etal2021_12S_16S_18S_28S_COI_ITS_BayesPP.nex”3) Others:3.1) Partition_scheme.“Kise_etal2021_raxml-ng_partitionFile.txt”3.2) Command Lines."Kise_etal2021_MrBayes_and_raxml-ng_cmdBlock.txt"</p
Zoantharia (or Zoanthidea) is the third largest order of Hexacorallia, characterised by two rows of ...
Figure 8. Maximum-likelihood phylogeny of Sceptrulophora based on concatenated nuclear 18S and 28S r...
Symbiotic associations between zoantharians and sponges can be divided into two groups: those that a...
Hexactinellid sponges are important members of deep-sea benthic ecosystems because they provide avai...
Maximum-likelihood tree based on ITS-rDNA sequences. Number at nodes represent ML bootstrap values (...
Bayesian-inference tree based on combined dataset of COI, 12S-rDNA, 16S-rDNA, 18S-rDNA, 28S-rDNA, an...
Figure 6. Images of external and internal morphology of Vitrumanthus schrieri (A, photographic recor...
Phylogeny of Hexasterophora inferred with RAxML from concatenated molecular and morphological data, ...
Figure 7. Images of external and internal morphology of Vitrumanthus vanderlandi (holotype: RMNH.COE...
Phylogeny of Hexactinellida inferred from concatenated molecular markers with MrBayes. 50% majority ...
Figure 5. Cnidae in the tentacles, column, actinopharynx and mesenterial filaments of holotypes of n...
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...
FIGURE 5. Position of Rhizophyta yapensis gen. et sp. nov. in the phylogeny of Hexasterophora. Maxim...
Summary of deletions in the alignment of 16S-rDNA that characterize Parachurabana gen. nov
Zoantharia (or Zoanthidea) is the third largest order of Hexacorallia, characterised by two rows of ...
Figure 8. Maximum-likelihood phylogeny of Sceptrulophora based on concatenated nuclear 18S and 28S r...
Symbiotic associations between zoantharians and sponges can be divided into two groups: those that a...
Hexactinellid sponges are important members of deep-sea benthic ecosystems because they provide avai...
Maximum-likelihood tree based on ITS-rDNA sequences. Number at nodes represent ML bootstrap values (...
Bayesian-inference tree based on combined dataset of COI, 12S-rDNA, 16S-rDNA, 18S-rDNA, 28S-rDNA, an...
Figure 6. Images of external and internal morphology of Vitrumanthus schrieri (A, photographic recor...
Phylogeny of Hexasterophora inferred with RAxML from concatenated molecular and morphological data, ...
Figure 7. Images of external and internal morphology of Vitrumanthus vanderlandi (holotype: RMNH.COE...
Phylogeny of Hexactinellida inferred from concatenated molecular markers with MrBayes. 50% majority ...
Figure 5. Cnidae in the tentacles, column, actinopharynx and mesenterial filaments of holotypes of n...
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...
FIGURE 5. Position of Rhizophyta yapensis gen. et sp. nov. in the phylogeny of Hexasterophora. Maxim...
Summary of deletions in the alignment of 16S-rDNA that characterize Parachurabana gen. nov
Zoantharia (or Zoanthidea) is the third largest order of Hexacorallia, characterised by two rows of ...
Figure 8. Maximum-likelihood phylogeny of Sceptrulophora based on concatenated nuclear 18S and 28S r...
Symbiotic associations between zoantharians and sponges can be divided into two groups: those that a...