FIGURE 7. Neighbour-joining tree based on p-distances derived from an alignment of mitochondrial NADH2 sequences (1044 sites).Published as part of White, William T., Last, Peter R. & Naylor, Gavin J. P., 2016, Rhinobatos manai sp. nov., a new species of guitarfish (Rhinopristiformes: Rhinobatidae) from New Ireland, Papua New Guinea, pp. 588-600 in Zootaxa 4175 (6) on page 597, DOI: 10.11646/zootaxa.4175.6.6, http://zenodo.org/record/25616
FIGURE 13. Neighbor-Joining tree generated with Jukes-Cantor genetic distance model of sequence data...
FIGURE 8. Rhinobatos borneensis sp. nov., paratype embryo, 189 mm TL (CSIRO H 7086–01, 1 of 4, fresh...
FIGURE 6. Rhinobatos borneensis sp. nov., adult male holotype, 633 mm TL (SMEC 373, preserved). Oron...
FIGURE 15. Maximum Likelihood (GTR+I+G) tree derived from aligned mitochondrial NADH2 sequences (104...
FIGURE 5. Oronasal region of Rhinobatos manai sp. nov., preserved adult male holotype, 731 mm TL (NT...
FIGURE 6. Midpoint-rooted neighbour-joining tree, based on the analysis of a 648 nucleotide cytochro...
FIGURE 6. Kimura 2 parameter (K2P) distance neighbour-joining tree of cytochrome c oxidase (COI) seq...
FIGURE 4. Neighbour-joining (NJ) tree based on 16S rRNA sequences. The bootstrap values are NJ/ML at...
FIGURE 7. Rhinobatos borneensis sp. nov., adult male holotype, 633 mm TL (SMEC 373, preserved). A. F...
FIGURE 2. Head of preserved adult male holotype, 731 mm TL (NTUM 11500): A. dorsal view; B. ventral ...
Figure 7. Neighbour-joining (NJ) tree representing the phylogenetic hypothesis based on the combined...
Figure 6. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene for Echinorhinus sp. from ...
FIGURE 3. Neighbor-Joining trees of p-distances based on 1,044 bp of aligned NADH2 sequence data for...
Figure 2. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene from 1487 elasmobranch spe...
FIGURE 27. Single most parsimonious tree showing phylogenetic relationships among Neotropical freshw...
FIGURE 13. Neighbor-Joining tree generated with Jukes-Cantor genetic distance model of sequence data...
FIGURE 8. Rhinobatos borneensis sp. nov., paratype embryo, 189 mm TL (CSIRO H 7086–01, 1 of 4, fresh...
FIGURE 6. Rhinobatos borneensis sp. nov., adult male holotype, 633 mm TL (SMEC 373, preserved). Oron...
FIGURE 15. Maximum Likelihood (GTR+I+G) tree derived from aligned mitochondrial NADH2 sequences (104...
FIGURE 5. Oronasal region of Rhinobatos manai sp. nov., preserved adult male holotype, 731 mm TL (NT...
FIGURE 6. Midpoint-rooted neighbour-joining tree, based on the analysis of a 648 nucleotide cytochro...
FIGURE 6. Kimura 2 parameter (K2P) distance neighbour-joining tree of cytochrome c oxidase (COI) seq...
FIGURE 4. Neighbour-joining (NJ) tree based on 16S rRNA sequences. The bootstrap values are NJ/ML at...
FIGURE 7. Rhinobatos borneensis sp. nov., adult male holotype, 633 mm TL (SMEC 373, preserved). A. F...
FIGURE 2. Head of preserved adult male holotype, 731 mm TL (NTUM 11500): A. dorsal view; B. ventral ...
Figure 7. Neighbour-joining (NJ) tree representing the phylogenetic hypothesis based on the combined...
Figure 6. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene for Echinorhinus sp. from ...
FIGURE 3. Neighbor-Joining trees of p-distances based on 1,044 bp of aligned NADH2 sequence data for...
Figure 2. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene from 1487 elasmobranch spe...
FIGURE 27. Single most parsimonious tree showing phylogenetic relationships among Neotropical freshw...
FIGURE 13. Neighbor-Joining tree generated with Jukes-Cantor genetic distance model of sequence data...
FIGURE 8. Rhinobatos borneensis sp. nov., paratype embryo, 189 mm TL (CSIRO H 7086–01, 1 of 4, fresh...
FIGURE 6. Rhinobatos borneensis sp. nov., adult male holotype, 633 mm TL (SMEC 373, preserved). Oron...