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2,406 results for “cladistics”
Figs. 61–80 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 61–80. Zacotus and Miscodera. (61–71) Zacotus matthewsii: (61) Head and prothorax; (62) mouthparts, ventral view; (63) left paramere; (64) right paramere; (65) base of median lobe, dorsal view; (66) median lobe; (67) apical plate; (68) sclerite X, dorsal view; (69) sclerite X, lateral view; (70) female genital tract lateral view; (71) spermatheca, helminthoid sclerite. (72–80) Miscodera arctica: (72) Head and prothorax; (73) mouthparts, ventral view; (74) sternum 9; (75) left paramere; (76) base of median lobe, dorsal view; (77) median lobe; (78) sclerite X, dorsal view; (79) sclerite X, lateral view; (80) female genital tract, ventral view. See appendix 2 for abbreviations.
Figs. 17–32 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 17–32. Axonya and Broscodes. (17–24) Axonya championi: (17) head and prothorax; (18) mouthparts, ventral view; (19) sternum 9; (20) left paramere; (21) right paramere; (22) median lobe; (23) base of median lobe, dorsal view; (24) sclerite X, dorsal view. (25–32) Broscodes karunamicus: (25) head and prothorax; (26) mouthparts, ventral view; (27) median lobe with right paramere; (28) median lobe, (29) base of median lobe, dorsal view; (30), sclerite X, lateral view; (31) lateral view; (32) dorsal view. See appendix 2 for abbreviations.
Figs. 1–13 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 1–13. Structural features of broscine adults. Head, right lateral view of (1) Miscodera arctica; (2) Barypus pulchellus.(3) Head, left lateral view of Mecodema howitti; (4) antenna of Barypus pulchellus. Metasternum ventral aspect of (5) Miscodera arctica; (6) Barypus speciosus. Elytron, dorsal aspect of (7) Nothobroscus chilensis; (8) Oregus aereus; (9) Cascellius septentrionalis.Ventrolateral view of glossal sclerite of (10) Creobius eudouxy; (11) Nothobroscus chilensis. (12) Elytra shoulders of Metaglymma oblongum; (13) Apotomus sp. See appendix 2 for abbreviations.
Figs. 189 –199 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 189 –199. Metaglymma moniliforme. (189) Head and prothorax; (190) mouthparts, ventral view. Metaglymma tibialis: (191) sternum 9, ventral view; (192) sternum 9, lateral view; (193) left paramere; (194) right paramere; (195) median lobe; (196) sclerite X, dorsal view; (197) sclerite X, lateral view; (198) apical plate. Metaglymma moniliforme: (199) female genital tract, ventral view. See appendix 2 for abbreviations.
Figs. 51–60 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 51–60. Chaetobroscus anomalus. (51) Head and prothorax; (52) mouthparts, ventral view; (53) left paramere; (54) right paramere; (55) base of median lobe, dorsal view; (56) median lobe; (57) apical plate; (58) sclerite X, dorsal view; (59) sclerite X, lateral view; (60) female genital tract, ventral view. See appendix 2 for abbreviations.
Figs. 121–136 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 121–136. Eurylychnus. (121–129) Group A, Eurylychnus blagravii: (121) head and prothorax; (122) mouthparts, ventral view; (123) left paramere; (124) right paramere; (125) base of median lobe, dorsal view; (126) median lobe; (127) apical plate; (128) sclerite X, dorsal view; (129) sclerite X, lateral view; (130–136) Group B, Eurylychnus ollifi: (130) head and prothorax; (131) mouthparts, ventral view; (132) left paramere; (133) right paramere; (134) median lobe; (135) female genital tract, ventral view; (136) spermatheca and accessory gland. See appendix 2 for abbreviations.
Figs. 103–112 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 103–112. Diglymma. Diglymma obtusum: (103) head and prothorax; (104) mouthparts ventral view; Diglymma ovipenne: (105) left paramere; (106) right paramere; (107) median lobe; (108) sclerite X, dorsal view; (109) sclerite X, lateral view; Diglymma obtusum: (110) female genital tract, lateral view; (111, 112) spermatheca and helminthoid sclerite. See appendix 2 for abbreviations.
Figs. 33–42 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 33–42. Broscus cephalotes. (33) Head and prothorax; (34) mouthparts, ventral view; (35) ligula; (36) left paramere; (37) right paramere; (38) median lobe; (39) base of median lobe, dorsal view; (40) sclerite X, dorsal view; (41) sclerite X, lateral view; (42) female genital tract, ventral view. See appendix 2 for abbreviations.
Figs. 113–120 in The Subtribes And Genera Of The Tribe Broscini (Coleoptera: Carabidae): Cladistic Analysis, Taxonomic Treatment, And Biogeographical Considerations
Figs. 113–120. Nothobroscus chilensis. (113) Head and prothorax; (114) mouthparts, ventral view; (115) left paramere; (116) right paramere; (117) median lobe; (118) sclerite X, dorsal view; (119) sclerite X, lateral view; (120) female genital tract, lateral view. See appendix 2 for abbreviations.
Fig. 6. Strict consensus tree resulting from 20 in A new species of Afrolaophonte (Copepoda, Harpacticoida, Laophontidae) from Korea and cladistic tests of species-groups
Fig. 6. Strict consensus tree resulting from 20 equally parsimonious trees from an analysis of 15 weighted morphological characters (Table 1) for 13 species of Afrolaophonte Chappuis, 1960 and one outgroup, Arenolaophonte stygia Lang, 1965. Characters 0, 2-4, and 11-14 were down-weighted to 0.5, while others were left at the default weight of 1. Full circles represent presumed synapomorphies, empty circles presumed plesiomorphies or homoplasies, Arabic numerals above circles characters, and Arabic numerals below circles character states.
Fig. 5 in A new species of Afrolaophonte (Copepoda, Harpacticoida, Laophontidae) from Korea and cladistic tests of species-groups
Fig. 5. Two out of 12 equally parsimonious trees resulting from an analysis of 15 unweighted morphological characters (Table 1) scored for 13 species of Afrolaophonte Chappuis, 1960 and one outgroup, Arenolaophonte stygia Lang, 1965. The trees were constructed using Winclada/NONA and heuristic search method. Full circles represent presumed synapomorphies, empty circles presumed plesiomorphies or homoplasies, Arabic numerals above circles characters, Arabic numerals below circles character states, and Roman numerals indicate species-groups proposed by Fiers (1990). Afrolaophonte aequatorialis Cottarelli and Mura, 1981 has a basal position in six trees (as in A) and terminal position in six trees (as in B).
Fig. 4 in A new species of Afrolaophonte (Copepoda, Harpacticoida, Laophontidae) from Korea and cladistic tests of species-groups
Fig. 4. Afrolaophonte koreana sp. nov.: A, female second swimming leg; B, male second swimming leg; C, female third swimming leg; D, male third swimming leg; E, female fourth swimming leg; F, male fourth swimming leg; G, female fifth leg; H, male fifth legs; I, male sixth legs. All in anterior view.
Fig. 3 in A new species of Afrolaophonte (Copepoda, Harpacticoida, Laophontidae) from Korea and cladistic tests of species-groups
Fig. 3. Afrolaophonte koreana sp. nov.: A, female antennula, posterior; B, male antennula, posterior; C, female antenna, anterior; D, female mandibula, posterior; E, female maxillula, anterior; F, female maxilla, posterior; G, female maxilliped, anterior; H, female first swimming leg, median (slightly twisted).
Fig. 4 in Cladistic analysis and description of a new species of the Brazilian genus Atlantodesmus Hoffman, 2000 (Diplopoda: Polydesmida: Chelodesmidae)
Fig. 4. Details of the tergites in the genus Atlantodesmus Hoffman, 2000. A. A. pickeli (Schubart, 1946). B. A. pintoi (Schubart, 1946). C. A. sierwaldae sp. nov. D. A. eimeri (Attems, 1898). Scale bars = 2 mm.
Fig. 3 in Cladistic analysis and description of a new species of the Brazilian genus Atlantodesmus Hoffman, 2000 (Diplopoda: Polydesmida: Chelodesmidae)
Fig. 3. Atlantodesmus sierwaldae sp. nov., holotype, ♂ (IBSP 180), schematic drawings of the gonopods. A. Mesal view. B. Ventral view. C. Ectal view. Scale bars: A–B = 250 µm; C = 500 µm.
Fig. 2 in Cladistic analysis and description of a new species of the Brazilian genus Atlantodesmus Hoffman, 2000 (Diplopoda: Polydesmida: Chelodesmidae)
Fig. 2. Atlantodesmus sierwaldae sp. nov., holotype, ♂ (IBSP 180). A. Anterior region in dorsal view. B. Posterior region in dorsal view. C–F. Left gonopod. C. Mesal view. D. Ventral view. E. Ectal view. F. Detail of the distal portion in ectal view. Scale bars: A–B = 2 mm; C–D = 250 µm. E–F = 500 µm.
Fig. 6. A in Cladistic analysis and description of a new species of the Brazilian genus Atlantodesmus Hoffman, 2000 (Diplopoda: Polydesmida: Chelodesmidae)
Fig. 6. A. Folds on the gonopod aperture in Atlantodesmus pintoi (Schubart, 1946). B. Folds on dorsal edge of the prefemoral region in A. pintoi. C. Smooth-edged prefemoral process in A. itapurensis (Schubart, 1943). D. Serrated prefemoral process in A. teresa (Hoffman, 2000). Scale bars: A–B = 2 mm; C = 500 µm; D = 200 µm.
Fig. 1 in Cladistic analysis and description of a new species of the Brazilian genus Atlantodesmus Hoffman, 2000 (Diplopoda: Polydesmida: Chelodesmidae)
Fig. 1. Strict consensus of the two most parsimonious trees obtained with implied weighting of the characters (k = 3) (length = 58 steps; total fit = 23.150; CI = 0.64; RI = 0.64). Black circles correspond to unique transformations and white circles to homoplastic transformations. Values below branches refer to the GC values (Symmetric Resampling) and relative Bremer support. Only unambiguous changes are shown in this topology.
Fig. 5. A–B in Cladistic analysis and description of a new species of the Brazilian genus Atlantodesmus Hoffman, 2000 (Diplopoda: Polydesmida: Chelodesmidae)
Fig. 5. A–B. Lateral projection on the seventh sternite. A. Smooth in Atlantodesmus eimeri (Attems, 1898). B. Serrated in A. pintoi (Schubart, 1946). C. Ventral projection on the fourth sternite in A. teresa (Hoffman, 2000). D. Ventral projection on the fifth sternite in Arthrosolaenomeris pantalanensis Schubart, 1943. E–F. Shape of the posterior edge of the paranota. E. Rounded in A. pantalanensis. F. Acuminate in Atlantodesmus eimeri (Attems, 1898). Scale bars: A–B = 250 µm; C–F = 500 µm.
Figure 7 in Description of a new species (Eucypris dorlionensis n. sp.) (Ostracoda, Crustacea) from Türkiye and a cladistic analysis of the genus Eucypris
Figure 7. Six clustering groups of the genus Eucypris with 53 species and Eucypris dorlionensis n. sp. with the outgroup C. pubera. Nodes represent effective characters for division.
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