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53 results for “Orcinus”
Figs. 1–9 in On the identity of Chalcionellus orcinus and Chalcionellus libanicola (Coleoptera: Histeridae)
Figs. 1–9: Chalcionellus orcinus Reichardt, 1932. 1 – habitus, dorsal view; 2 – same, ventral view; 3 – mesoventrite; 4 – head, dorsal view; 5 – mentum; 6 – prosternum; 7 – lateral disc of metaventrite, metepisternum + fused metepimeron; 8 – propygidium and pygidium; 9 – protibia, ventral view.
Figs. 10–16 in On the identity of Chalcionellus orcinus and Chalcionellus libanicola (Coleoptera: Histeridae)
Figs. 10–16: Chalcionellus orcinus Reichardt, 1932. 10 – eighth sternite and tergite, ventral view; 11 – same, dorsal view; 12 – same, lateral view; 13 – Ninth and tenth tergites, dorsal view + spiculum gastrale, ventral view; 14 – ninth and tenth tergites + spiculum gastrale, lateral view; 15 – aedeagus, dorsal view; 16 – same, lateral view.
Data from: Revised age estimates for Northern Resident killer whales (Orcinus orca) based on observed life-history events and demographic discounting
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Table 1 in Revised taxonomy of eastern North Pacific killer whales (Orcinus orca): Bigg's and resident ecotypes deserve species status
<p><b>Table 1.</b> Measures of differentiation, divergence and diagnosability based on nuclear microsatellite and SNP data. All frequency-based metrics (FST, F’ST, G’ST) were significantly different from zero at p <0.05.</p><table><tbody><tr><th>divergence metric</th><th></th><th>reference</th></tr></tbody><tbody><tr><th>dA (CR)</th><td>0.007 46a</td><td>[114]</td></tr><tr><th>dA (mitogenome)</th><td>0.003 91b</td><td>[114]</td></tr><tr><th>FST (microsatellite)</th><td>0.21–0.23</td><td>[56,85]</td></tr><tr><th>F’ST (microsatellite)</th><td>0.47</td><td>[56]</td></tr><tr><th>G’ST (microsatellite)</th><td>0.28</td><td>[56]</td></tr><tr><th>FST (SNP)</th><td>0.28</td><td>[15]</td></tr><tr><th>F(RADseq, neutral)c ST</th><td>0.27</td><td>[58]</td></tr><tr><th>F(RADseq, selected)c ST</th><td>0.67</td><td>[58]</td></tr><tr><th>FST (genomes)</th><td>0.32</td><td>[9] (electronic supplementary material, table S2)</td></tr><tr><th>diagnosability (CR)</th><td>100%</td><td>[114]</td></tr><tr><th>diagnosability (mitogenome)</th><td>100%</td><td>[114]</td></tr><tr><th>fixed differences (mitogenome)</th><td>57</td><td>[7]</td></tr><tr><th>fixed differences (3281 nuclear SNPs)</th><td>2–7</td><td>[58]</td></tr><tr><th>fixed differences (6 435 100 nuclear SNPs)</th><td>6361d</td><td>[113]</td></tr></tbody></table><p>a 95% confidence interval:0.00727–0.00772. b 95% confidence interval: 0.00388–0.00393. c Alaska transients (Bigg’s) versus Alaska residents. d Based on analysis of raw SNP data from Kardos et al. [113].</p>
Figure 23 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 23. Niphargus polymorphus sp. n., holotype. Pereopods V–VII. Details of pereopod VII.
Figure 21 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 21. Niphargus polymorphus sp. n., holotype. Gnathopod I (above) and gnathopod II (below).
Figure 20 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 20. Niphargus polymorphus sp. n., holotype. Mouthparts.
Figure 19 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 19. Niphargus lourensis sp. n., holotype. Pereopods V–VII. Details of pereopod VII.
Figure 17 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 17. Niphargus lourensis sp. n., holotype. Gnathopod I (above) and gnathopod II (below).
Figure 16 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 16. Niphargus lourensis sp. n., holotype. Mouthparts.
Figure 15 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 15. Niphargus dabarensis sp. n., holotype. Pereopods V–VII. Details of pereopod VII.
Figure 13 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 13. Niphargus dabarensis sp. n., holotype. Gnathopod I (above) and gnathopod II (below).
Figure 12 in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 12. Niphargus dabarensis sp. n., holotype. Mouthparts.
Figure 6. N in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 6. N. dolichopus sp. n. (above) and N. dabarensis sp. n. (below). Holotypes, lateral view.
Figure 9. N in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 9. N. dolichopus sp. n., holotype. Gnathopod I (above) and gnathopod II (below).
Figure 8. N in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 8. N. dolichopus sp. n., holotype. Mouthparts.
Figure 7. N in Phylogenetic analysis of the Niphargus orcinus species- aggregate (Crustacea: Amphipoda: Niphargidae) with description of new taxa
Figure 7. N. lourensis sp. n. (above) and N. polymorphus sp. n. (below). Holotypes, lateral view.
Potential new species of pseudaliid lung nematode (Metastrongyloidea) from two stranded neonatal orcas (Orcinus orca) characterised by ITS-2 and COI sequences
<p class="MsoNormal"><span>Knowledge about parasite species of orcas, their prevalence and impact on the health status is scarce. Only two records of lungworm infections in orca exist from male neonatal orcas stranded in Germany and Norway. The nematodes were identified as <em>Halocercus</em> sp. (Pseudaliidae), which have been described in the respiratory tract of multiple odontocete species, but morphological identification to species level remained impossible due to the fragile structure and ambiguous morphological features. Pseudaliid nematodes (Metastrongyloidea) are specific to the respiratory tract of toothed whales and are hypothesized to have become almost extinct in terrestrial mammals. Severe lungworm infections can cause secondary bacterial infections and bronchopneumonia and are a common cause of mortality in odontocetes. DNA isolations and subsequent sequencing of the rDNA ITS-2 and mtDNA COI revealed nucleotide differences between previously described <em>Halocercus</em> species from common dolphin (<em>H. delphini</em>) and harbour porpoises (<em>H. invaginatus</em>) that were comparatively analysed, pointing towards a potentially new species of pseudaliid lungworm in orcas. New COI sequences of six additional metastrongyloid lungworms of seals and porpoises were derived to elucidate phylogenetic relationships and differences between nine species of Metastrongyloidea.</span></p>
Data from:The foe you know: Observations of interspecific interactions between small cetaceans and northern resident killer whales (Orcinus orca) in the northeast Pacific
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Cold call: the acoustic repertoire of Ross Sea killer whales (Orcinus orca, Type C) in McMurdo Sound, Antarctica
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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