Fig. 3. Maximum parsimony consensus tree within Paromoionchis gen. nov., performed with concatenated ITS2 and 28S DNA sequences from 41 individuals (including 7 outgroups). Numbers by the branches are the bootstrap values (only numbers>50% are indicated). Numbers for each individual correspond to unique identifiers for DNA extraction. All sequences for specimens of Paromoionchis gen. nov. are new. Information on specimens can be found in the lists of material examined and in Table 1. LettersA and B correspond to clades referred to in the text.The color used for each (mitochondrial) unit is the same as that used in Figs 1–2 and 4–6
Fig. 10. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #3, preserved specimens, Papua New Gui...
Fig. 5. Likelihood phylogenetic tree of Profundiconus Kuroda, 1956 based on a subsample of the mitoc...
Fig. 49. Paromoionchis goslineri gen. et sp. nov. unit #1, radula, Philippines, Luzon [6049] (PNM 04...
Fig. 6. Geographic distribution of the five species of Paromoionchis gen. nov. Distinct colors are u...
Fig. 5. Diagram that helps to visualize the data on pairwise genetic distances between COI sequences...
Mangroves of the Indo-West Pacific have remained poorly explored, so even the diversity of the onchi...
Mangroves of the Indo-West Pacific have remained poorly explored, so even the diversity of the onchi...
Mangroves of the Indo-West Pacific have remained poorly explored, so even the diversity of the onchi...
Figure 4 Phylogenetic relationships within Laspionchis based on concatenated nuclear ITS2 and 28S DN...
Fig. 21. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #1, penial hooks. A. Indonesia, Sulawe...
Fig. 23. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #3, penial hooks, Papua New Guinea, Ma...
Fig. 31. Paromoionchis boholensis gen. et sp. nov., unit #1, live animals. A. Holotype, dorsal view,...
Figure 9. Maximum likelihood (ML) tree of concatenated COI + 18S rDNA sequences obtained from Barker...
Fig. 46. Paromoionchis goslineri gen. et sp. nov. unit #2, live animals. A. Dorsal view, 33 mm long ...
Fig. 41. Paromoionchis penangensis gen. et sp. nov., live animals. A. Dorsal view, 29 mm long [5990]...
Fig. 10. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #3, preserved specimens, Papua New Gui...
Fig. 5. Likelihood phylogenetic tree of Profundiconus Kuroda, 1956 based on a subsample of the mitoc...
Fig. 49. Paromoionchis goslineri gen. et sp. nov. unit #1, radula, Philippines, Luzon [6049] (PNM 04...
Fig. 6. Geographic distribution of the five species of Paromoionchis gen. nov. Distinct colors are u...
Fig. 5. Diagram that helps to visualize the data on pairwise genetic distances between COI sequences...
Mangroves of the Indo-West Pacific have remained poorly explored, so even the diversity of the onchi...
Mangroves of the Indo-West Pacific have remained poorly explored, so even the diversity of the onchi...
Mangroves of the Indo-West Pacific have remained poorly explored, so even the diversity of the onchi...
Figure 4 Phylogenetic relationships within Laspionchis based on concatenated nuclear ITS2 and 28S DN...
Fig. 21. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #1, penial hooks. A. Indonesia, Sulawe...
Fig. 23. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #3, penial hooks, Papua New Guinea, Ma...
Fig. 31. Paromoionchis boholensis gen. et sp. nov., unit #1, live animals. A. Holotype, dorsal view,...
Figure 9. Maximum likelihood (ML) tree of concatenated COI + 18S rDNA sequences obtained from Barker...
Fig. 46. Paromoionchis goslineri gen. et sp. nov. unit #2, live animals. A. Dorsal view, 33 mm long ...
Fig. 41. Paromoionchis penangensis gen. et sp. nov., live animals. A. Dorsal view, 29 mm long [5990]...
Fig. 10. Paromoionchis tumidus (Semper, 1880) comb. nov. unit #3, preserved specimens, Papua New Gui...
Fig. 5. Likelihood phylogenetic tree of Profundiconus Kuroda, 1956 based on a subsample of the mitoc...
Fig. 49. Paromoionchis goslineri gen. et sp. nov. unit #1, radula, Philippines, Luzon [6049] (PNM 04...