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20 results for “Cnodocentron”

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Linked collectors and determiners for: Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron).

Natural history specimen data linked to collectors and determiners held within, "Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5e350c66-bf9d-4f32-b68f-16a6b329a76f">https://bionomia.net/dataset/5e350c66-bf9d-4f32-b68f-16a6b329a76f</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5e350c66-bf9d-4f32-b68f-16a6b329a76f">https://gbif.org/dataset/5e350c66-bf9d-4f32-b68f-16a6b329a76f</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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Figure 6. Chronogram resulting from Bayesian analysis employing a in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 6. Chronogram resulting from Bayesian analysis employing a relaxed clock. Most likely ancestral distribution recovered in DEC analysis and estimated mean age are displayed at the nodes. Dispersal events are indicated as a black line below the distribution boxes, vicariant events are indicated in a green line, as recovered in the biogeographic analysis. Highest posterior density (HPD) 95% intervals for the ages of the nodes are indicated by light blue bars. Timescale and global surface temperature estimated from δ18O benthic (Zachos et al., 2001) are displayed on the bottom. Eocene and Miocene thermal optimum are highlighted in grey. Cnodocentron and Caenocentron species distributions are shown in the maps.

opennotspecifiedDec 2021View details →
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Figure 5. Maximum credibility Bayesian tree obtained from 46 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 5. Maximum credibility Bayesian tree obtained from 46 morphological characters and COI coded to Cnodocentron sensu Schmid and related taxa (all compatible groups shown). Morphological character states are displayed along the branches: boxes refer to unambiguous transformations; circles to characters under ACCTRAN optimization. Black symbols indicate unique character changes. Posterior probability support values are displayed in boxes below the node branches. Male genitalia of species of each clade are displayed in lateral view. Oriental species modified from the original descriptions: Malicky &amp; Chantaramongkol (1992), Oláh &amp; Johanson (2010), Schmid (1982).

opennotspecifiedDec 2021View details →
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Figure 3 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 3. Mesothorax: A, Caenocentron carlosdelarosai; B, Cnodocentron brogimarus; C, Xiphocentron maiteae; D, Melanotrichia samaconius. Hind leg apical spur: E, Drepanocentron sp.; F, Cnodocentron sp.

opennotspecifiedDec 2021View details →
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Figure 2 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 2. Wing venation: A, Melanotrichia attia; B, Cnodocentron tchaturbhuja; C, Cnodocentron girika. Male genitalia: D, aspect of mesal sclerite of Melanotrichia sp., 200×; E, Melanotrichia attia, lateral view; F, Cnodocentron vrisaparvan, lateral view. Male genitalia, sternum IX, ventral: G, Cnodocentron filamenta; H, Cnodocentron brogimarus; I, Cnodocentron tchaturbhuja; J, Cnodocentron devayani; K, Cnodocentron vrisaparvan; L, Cnodocentron girika. Female genitalia, segment VIII apex, dorsal: M, Caenocentron carlosdelarosai; N, Cnodocentron tchaturbhuja.

opennotspecifiedDec 2021View details →
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Figure 13 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 13. Caenocentron rafamoralesi sp. nov. A, wing venation. Male genitalia: B, lateral; C, dorsal; D, ventral.

opennotspecifiedDec 2021View details →
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Figure 1 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 1. Xiphocentronidae world distribution showing Cnodocentron sensu Schmid species distribution in red circles. Tropical moist forests are displayed in green.

opennotspecifiedDec 2021View details →
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Figure 12 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 12. Bayesian analysis of COI sequences of Caenocentron carlosdelarosai and Caenocentron rafamoralesi and other xiphocentronids, showing clustering associating male and females of each species. COI accession numbers are displayed in front of each specimen. Posterior probability values are displayed below each node.

opennotspecifiedDec 2021View details →
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Figure 4. A in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 4. A, wing pattern of Caenocentron trilineatum. B, sternum V of C. carlosdelarosai showing reticulate cuticular plate at 200×. C, abdomen of C. carlosdelarosai, 80×. D, sternum V of Melanotrichia samaconius.

opennotspecifiedDec 2021View details →
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Figure 21 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 21. Paleogeography of South-East Asia and Mesoamerica: A, South-East Asia, showing the collision of Indian Plate and Asia. B, Mesoamerica showing the southward movement of Chortis Block. Dispersal and vicariant events with their respective mean ages are displayed as arrows and dotted lines, respectively. Montane regions are in dark grey. Whitish regions indicate progressive seasonal dry climates after the Middle Miocene. Palaeogeographic reconstructions of Mesoamerica modified from Keppie &amp; Moán-Zenteno (2005) and interpreted from evidence presented by Kirby et al. (2008), Coates et al. (2004) and Montes et al. (2012). Reconstructions of South-East Asia modified after Morley (2018) and Gorin et al. (2020).

opennotspecifiedDec 2021View details →
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Figure 20. Caenocentron trilineatum. A in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 20. Caenocentron trilineatum. A, wing venation. Male genitalia: B, lateral; C, dorsal; D, ventral; E, detail paraproct lateral; F, phallus apex lateral and ventral, respectively.

opennotspecifiedDec 2021View details →
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Figure 16 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 16. Caenocentron ideolus, male genitalia: A, lateral; B, ventral.

opennotspecifiedDec 2021View details →
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Figure 8 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 8. Caenocentron carlosdelarosai sp. nov. male genitalia. A, lateral; B, dorsal; C, ventral.

opennotspecifiedDec 2021View details →
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Figure 15. Caenocentron galesus, male genitalia A in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 15. Caenocentron galesus, male genitalia A, lateral; B, ventral.

opennotspecifiedDec 2021View details →
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Figure 7 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 7. Caenocentron carlosdelarosai sp. nov. A, head and thorax; B, wing venation.

opennotspecifiedDec 2021View details →
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Figure 14 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 14. Caenocentron yavapai male genitalia: A, lateral; B, dorsal; C, ventral.

opennotspecifiedDec 2021View details →
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Figure 17 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 17. Caenocentron immaculatum, male genitalia: A, lateral; B, dorsal; C, ventral.

opennotspecifiedDec 2021View details →
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Figure 18 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 18. Caenocentron lausus, male genitalia: A, lateral; B, ventral.

opennotspecifiedDec 2021View details →
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Figure 19. Caenocentron pallas. A in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figure 19. Caenocentron pallas. A, wing venation. Male genitalia: B, lateral; C, dorsal; D, ventral.

opennotspecifiedDec 2021View details →
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Figures 9–11. Caenocentron female genitalia. 9 in Phylogeny indicates polyphyly in Cnodocentron (Trichoptera: Xiphocentronidae): biogeography and revision of New World species (Caenocentron)

Figures 9–11. Caenocentron female genitalia. 9. Caenocentron carlosdelarosai sp. nov. A, lateral; B, dorsal; C, detail of apex lateral; D, detail of apex ventral. 10. Caenocentron rafamoralesi sp. nov. A, lateral; B, dorsal; C, detail of apex lateral; D, detail of apex ventral. 11. Caenocentron yavapai. A, lateral; B, dorsal; C, detail of apex ventral (modified from Ruiter, 2006). Scale bar = 0.1mm.

opennotspecifiedDec 2021View details →

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