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38 results for “cladistic analyses”
Figures 124–125. Biogeographical analyses. 124 in Taxonomic review of Bourguyiinae, cladistic analysis, and a new hypothesis of biogeographic relationships of the Brazilian Atlantic Rainforest (Arachnida: Opiliones, Gonyleptidae)
Figures 124–125. Biogeographical analyses. 124, Individual area cladogram substituting the bourguyiine species by their areas of endemism (from Pinto-da-Rocha et al., 2005). 125, Primary Brooks parsimony analysis (BPA): A, historical area relationships proposed by Pinto-da-Rocha et al. (2005) for the gonyleptid subfamilies Caelopyginae, Goniosoamtinae, Progonyleptoidellinae, and Sodreaninae (strict consensus of the three most parsimonious trees: tree length, L = 254; consistency index, CI = 0.64; retention index, RI = 0.54); B, area relationships with the addition of Bourguyiinae to the Pinto-da-Rocha et al. (2005) hypothesis (strict consensus of the two most parsimonious trees: L = 291; CI = 0.62; RI = 0.51). Abbreviations: BA, 'Bahia', a small area in the south of Bahia state, near to the coast; SEsp, 'Serra do Espinhaço', includes the western part of Serra do Caparaó and the southern part of Serra do Espinhaço (Minas Gerais); ES, 'Espírito Santo', part of Espírito Santo state to the south of Rio Doce; Boc, 'Serra da Bocaina'; LSRJ, 'Coast of Rio de Janeiro', includes the lowlands of the north-eastern part of the São Paulo coast and the southern part of Rio de Janeiro state; Org, 'Serra dos Órgãos', includes the Serra dos Órgãos and a region of Rio de Janeiro state near to the coast; Mnt, 'Serra da Mantiqueira'; SMSP, 'Serra do Mar', the eastern part of São Paulo state related to the Serra do Mar; SC, 'Santa Catarina', a small area on the coast of Santa Catarina state; PR, 'Paraná', the coastal part of Paraná state and the southern part of São Paulo state, to the south of valley of Ribeira do Iguape river; SSP, 'South of São Paulo', the southern part of São Paulo state to the north of Ribeira do Iguape river.
Fig. 14 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 14. Pictorial key for the comparison of the species of genus Pelodera Schneider, 1866 (coarctata group) based on the female anterior region, tail region, male tail region (lateral and ventral views) and spicules (distally fused). Scale bars = 20 μm.
Fig. 15 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 15. Cladistic analysis of the species of genus Pelodera Schneider, 1866 (coarctata goup) indicating the position of the new species P. indica sp. nov., P. adeeli sp. nov. and P. paratretzeli sp. nov. within the genus. The evolutionary history was inferred in MrBayes ver. 3.1.2 (Huelsenbeck & Ronquist 2001) by using the Jukes Cantor (JC) model. The phylogenetic tree is supported by posterior probability values with minimum 50% majority rules.
Fig. 9 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 9. Pelodera paratretzeli sp. nov., paratype, ♂ (AMU/ZD/NC slide no. Pelodera paratretzeli sp. nov./ HS/AL/ST/BS/2–12). A. En face view (scanning electron microscopy). B. Anterior region (scanning electron microscopy). C. Anterior end. D. Anterior pharyngeal region. E–F. Posterior pharyngeal region. G. Reflexed testis. H–J. Posterior region (lateral view). K. Posterior region (scanning electron microscopy). Scale bars = 10 μm.
Fig. 8 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 8. Pelodera paratretzeli sp. nov., paratype, ♀ (AMU/ZD/NC slide no. Pelodera paratretzeli sp. nov./ HS/AL/ST/BS/2–12). A. En face view (scanning electron microscopy). B. Anterior region (scanning electron microscopy). C–D. Anterior end. E. Anterior pharyngeal region. F. Posterior pharyngeal region. G–H. Female genital branch. I. Vulval region (scanning electron microscopy). J. Tail region (scanning electron microscopy). K. Posterior region. Scale bars = 10 μm.
Fig. 5 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 5. Pelodera adeeli sp. nov., paratype, ♀ (AMU/ZD/NC slide no. Pelodera adeeli sp. nov./NIT/ rpt/2–10). A–B. En face view (scanning electron microscopy). C. Anterior end. D. Anterior pharyngeal region. E–F. Posterior pharyngeal region. G. Reproductive system. H. Distal parts of ovaries. I. Vulval region (scanning electron microscopy). J. Tail region (scanning electron microscopy). K. Tail with old cuticle. L. Cuticular markings (scanning electron microscopy). Scale bars = 10 μm.
Fig. 2 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 2. Pelodera indica sp. nov., paratype, ♀ (AMU/ZD/NC slide no. Pelodera indica sp. nov./NIT/ ctrs/2–15). A–B. En face view (scanning electron microscopy). C. Anterior end. D. Posterior pharyngeal region. E. Vulval region with anterior genital branch (lateral view). F. Anterior genital branch. G. Posterior genital branch. H. Vulval region. I–J. Tail. Scale bars = 10 μm.
Fig. 13 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 13. Map showing worldwide distribution of the species of genus Pelodera Schneider, 1866 (coarctata goup) in countries like Algeria, Australia, Germany, Georgia, Hungary, India, Lithuania, Russia, United Kingdom, Uzbekistan, etc.
Fig. 11. Pelodera cylindrica Cobb, 1898 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 11. Pelodera cylindrica Cobb, 1898, female (AMU/ZD/NC slide no. Pelodera cylindrica/HL/AL/ ST/SM/1–10). A–B. En face view (scanning electron microscopy). C–E. Anterior end. F–G. Anterior pharyngeal region. H–I. Posterior pharyngeal region. J. Distal end of anterior and posterior genital branches. K. Vulval region (scanning electron microscopy). L. Uterine region. M–O. Tail end. Scale bars = 10 μm.
Fig. 7 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 7. Pelodera paratretzeli sp. nov., paratypes (AMU/ZD/NC slide no. Pelodera paratretzeli sp. nov./ HS/AL/ST/BS/2–12). A. Entire female. B. Entire male. C. Female pharyngeal region. D. Female anterior end. E. Male anterior end. F. Female reproductive system. G. Female posterior region (lateral view). H. Male posterior region (lateral view).
Fig. 12. Pelodera cylindrica Cobb, 1898 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 12. Pelodera cylindrica Cobb, 1898, male (AMU/ZD/NC slide no. Pelodera cylindrica/HL/AL/ ST/SM/1–10). A–C. En face view (scanning electron microscopy). D. Anterior end. E–F. Anterior pharyngeal region. G. Posterior pharyngeal region. H. Body region showing large excretory gland cell. I. Reflexed testis. J–L. Posterior region (lateral view). M. Posterior region (ventral view). N–Q. Posterior region (scanning electron microscopy). Scale bars = 10 μm.
Fig. 4 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 4. Pelodera adeeli sp. nov., paratypes (AMU/ZD/NC slide no. Pelodera adeeli sp. nov./NIT/ rpt/2–10). A. Entire female. B. Entire male. C–D. Female anterior end. E. Male lip region. F. Female pharyngeal region. G. Female reproductive system. H. Female posterior region. I. Male posterior region (lateral view). J. Male posterior region (ventral view). Scale bars = 25 μm.
Fig. 6 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 6. Pelodera adeeli sp. nov., paratype, ♂ (AMU/ZD/NC slide no. Pelodera adeeli sp. nov./NIT/ rpt/2–10). A. Anterior end. B. En face view (scanning electron microscopy). C. Pharyngeal region. D. Reflexed part of testis. E. Ejaculatory gland. F–H. Posterior region (lateral view). I. Posterior region (ventral view). J–L. Posterior region (scanning electron microscopy). Scale bars = 10 μm.
Fig. 3 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 3. Pelodera indica sp. nov., paratype, ♂ (AMU/ZD/NC slide no. Pelodera indica sp. nov./NIT/ ctrs/2–15). A. Anterior region (scanning electron microscopy). B. Anterior end. C. Anterior pharyngeal region. D. Posterior pharyngeal region. E. Ovarian flexure of anterior genital branch. F–H. Posterior region showing spicules and gubernaculum. I–L. Tail region showing bursa and genital papillae (scanning electron microscopy). Scale bars = 10 μm.
Fig. 10. Pelodera cylindrica Cobb, 1898 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 10. Pelodera cylindrica Cobb, 1898 (AMU/ZD/NC slide no. Pelodera cylindrica/HL/AL/ST/ SM/1–10). A. Entire female. B. Entire male. C–F. Female anterior end. G. Male anterior end. H. Female reproductive system. I. Female tail (lateral view). J. Male tail (lateral view). K. Male tail (ventral view).
Fig. 1 in Comparative and cladistic analyses of the species of the genus Pelodera Schneider, 1866 (Rhabditidae: Nematoda) belonging to the coarctata group
Fig. 1. Pelodera indica sp. nov., paratypes (AMU/ZD/NC slide no. Pelodera indica sp. nov./NIT/ ctrs/2–15). A. Entire female. B. Entire male. C. Female anterior region. D. Female pharyngeal region. E. Female reproductive system. F. Female posterior region. G. Male posterior region (lateral view). H. Male posterior region (ventral view). I. Spicule (lateral view). Scale bars = 25 μm.
FIGURE 21. Two cladograms resulted from analyses under implied weighting. a in Cladistic analysis and revision of the obstinata group, genus Chinavia Orian (Hemiptera: Pentatomidae)
FIGURE 21. Two cladograms resulted from analyses under implied weighting. a) cladogram resulted from K-values k0–k6; b) cladogram resulted from K-values k7–k10.
text-fig. 59. Consensus cladogram of theropod relationships, showing relationships between several theropod taxa common to all recent cladistic analyses. Possible phylogenetic positions of several important problematic taxa are also indicated. in The interrelationships and evolution of basal theropod dinosaurs
text-fig. 59. Consensus cladogram of theropod relationships, showing relationships between several theropod taxa common to all recent cladistic analyses. Possible phylogenetic positions of several important problematic taxa are also indicated.
FIGURE 6 in On The Role Of Assumptions In Cladistic Biogeographical Analyses
FIGURE 6: Analysis of ambiguity under assumption 2 and Component Analysis. A: seven solutions, including the actual disjunction pattern; B: five solutions, including the actual disjunction pattern; C: two solutions, including the actual disjunction pattern.
FIGURE 4 in On The Role Of Assumptions In Cladistic Biogeographical Analyses
FIGURE 4: The same hypothetical area with different biogeographical problems. A: widespread taxon; B: missing area; C: paralogy (redundant distribution).
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