Figure 3. Molecular phylogenetic trees of chaetognaths based on (A) nuclear 18S rRNA and (B) mitochondrial 16S rRNA. Scale is units of expected substitution per site. Support values on each clade are Bayesian posterior probabilities. Accession numbers: Aidanosagitta crassa, D14363; Eukrohnia hamata (E. bathypelagica), DQ351886; Eukrohnia fowleri, DQ351889; Eukrohnia hamata, DQ351887, AB617779; Flaccisagitta enflata, DQ351877, AP011547; Krohnitta pacifica, DQ351879, DQ351891; Mesosagitta decipiens, DQ351881, AP011545; Parasagitta megalophthalma, DQ351878; Parasagitta setose, DQ351900; Parasagitta elegans, Z19551; Paraspadella gotoi, D14362, AY619710; Pseudosagitta lyra, DQ351880; DQ351892; Zonosagitta nagae, AP011545; Pterosagitta draco, DQ3...
FIGURE 3. Shell of Scaphander grandis comb. n. (A–C) Holotype ZISP 1/62440: ventral view (A), dorsal...
FIGURE 3. Maximum likelihood-based phylogenetic reconstructions: A, using igrN sequence data; B, usi...
Figure 3 - Maximum likelihood phylogeny. ML tree obtained from concatenated COI and 28S sequences, b...
FIGURE 4. Phylogenetic hypothesis for family Plakobranchidae rooted on genus Bosellia (not shown) to...
FIGURE 2. Bayesian phylogenetic tree of the family Scaphandridae based on the concatenated dataset. ...
Figure 3. Phylogenetic relationships of the family Velutinidae (Bayesian tree based on the combined ...
FIGURE 3. Detail from the majority rule consensus tree summarizing the result of the Bayesian analys...
FIGURE 3. A. Geographical distribution of Characella pachastrelloides (Carter, 1876) and Characella ...
FIGURE 3. Phylogenetic tree obtained with Bayesian (consensus) and Maximum Likelihood methods. Paren...
Figure 3. Subfamily Pervicaciinae A. Duplicaria duplicata, MNHN-IM-2009-29454, WESTERN AUSTRALIA 201...
FIGURE 4. Neighbour-joining (NJ) tree based on 16S rRNA sequences. The bootstrap values are NJ/ML at...
FIGURE 3. Molecular phylogenetic analysis using Bayesian inference for combined data with and withou...
Figure 1. A, molecular phylogeny from MrBayes. Node labels are posterior probability support values....
Figure 2. Phylogenetic tree based on small subunit rRNA sequences showing the position of Psammomitr...
Figure 3. Shells of Belgrandiella: (a–f) molecular clade A: (a–d) Belgrandiella cf. robusta, spring ...
FIGURE 3. Shell of Scaphander grandis comb. n. (A–C) Holotype ZISP 1/62440: ventral view (A), dorsal...
FIGURE 3. Maximum likelihood-based phylogenetic reconstructions: A, using igrN sequence data; B, usi...
Figure 3 - Maximum likelihood phylogeny. ML tree obtained from concatenated COI and 28S sequences, b...
FIGURE 4. Phylogenetic hypothesis for family Plakobranchidae rooted on genus Bosellia (not shown) to...
FIGURE 2. Bayesian phylogenetic tree of the family Scaphandridae based on the concatenated dataset. ...
Figure 3. Phylogenetic relationships of the family Velutinidae (Bayesian tree based on the combined ...
FIGURE 3. Detail from the majority rule consensus tree summarizing the result of the Bayesian analys...
FIGURE 3. A. Geographical distribution of Characella pachastrelloides (Carter, 1876) and Characella ...
FIGURE 3. Phylogenetic tree obtained with Bayesian (consensus) and Maximum Likelihood methods. Paren...
Figure 3. Subfamily Pervicaciinae A. Duplicaria duplicata, MNHN-IM-2009-29454, WESTERN AUSTRALIA 201...
FIGURE 4. Neighbour-joining (NJ) tree based on 16S rRNA sequences. The bootstrap values are NJ/ML at...
FIGURE 3. Molecular phylogenetic analysis using Bayesian inference for combined data with and withou...
Figure 1. A, molecular phylogeny from MrBayes. Node labels are posterior probability support values....
Figure 2. Phylogenetic tree based on small subunit rRNA sequences showing the position of Psammomitr...
Figure 3. Shells of Belgrandiella: (a–f) molecular clade A: (a–d) Belgrandiella cf. robusta, spring ...
FIGURE 3. Shell of Scaphander grandis comb. n. (A–C) Holotype ZISP 1/62440: ventral view (A), dorsal...
FIGURE 3. Maximum likelihood-based phylogenetic reconstructions: A, using igrN sequence data; B, usi...
Figure 3 - Maximum likelihood phylogeny. ML tree obtained from concatenated COI and 28S sequences, b...