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57 results for “Cletodidae”
FIGURE 2 in Concordance between molecular and morphology-based phylogenies of Korean Enhydrosoma (Copepoda: Harpacticoida: Cletodidae) highlights important synapomorphies and homoplasies in this genus globally
FIGURE 2. Enhydrosoma apimelon sp. nov., SEM photographs, A-F, paratype ♀4; G, paratype ♀5; H, paratype ♀6: A, habitus, ventral; B, caudal rami, ventral; C, fifth leg, anterior; D, fifth leg, detail of endopodal peduncle, anterior; E, fifth leg, apical part of exopod, anterior; F, mouth appendages, ventral; G, anal somite and caudal rami, lateral; H, antenna and mouth appendages, ventral.
FIGURE 1 in Concordance between molecular and morphology-based phylogenies of Korean Enhydrosoma (Copepoda: Harpacticoida: Cletodidae) highlights important synapomorphies and homoplasies in this genus globally
FIGURE 1. Enhydrosoma apimelon sp. nov., SEM photographs, A-F, paratype ♀1; G, paratype ♀2; H, paratype ♀3: A, habitus, lateral; B, cephalic shield, lateral; C, posterior-distal corner of cephalic shield, lateral; D, antennula, lateral; E, mouth appendages, lateral; F, anal somite and caudal rami, lateral; G, anal somite and caudal rami, latero-posterior; H, anal somite and caudal rami, posterior.
FIGURE 17 in Concordance between molecular and morphology-based phylogenies of Korean Enhydrosoma (Copepoda: Harpacticoida: Cletodidae) highlights important synapomorphies and homoplasies in this genus globally
FIGURE 17. Enhydrosoma kosmetron sp. nov., SEM photographs, A-C, paratype ♂2; D-H, paratype ♂3: A, habitus, ventral; B, maxilla, ventral; C, anal somite and caudal rami, ventral; D, rostrum and left antennula, ventral; E, antenna, ventral; F, mouth appendages, ventral; G, first swimming leg, anterior; H, fifth and sixth legs, anterior.
FIG. 2 in Chalarosthrix gen. nov., a new taxon of the Sphingothrix-Triathrix clade (Harpacticoida: Cletodidae) from the Province of Cortez, Eastern Mexican Pacific
FIG. 2. Chalarosthrix bisetosa gen. et sp. nov., female holotype. A, urosome, ventral (P5-bearing somite omitted); B, P5, anterior.
FIG. 4 in Chalarosthrix gen. nov., a new taxon of the Sphingothrix-Triathrix clade (Harpacticoida: Cletodidae) from the Province of Cortez, Eastern Mexican Pacific
FIG. 4. Chalarosthrix bisetosa gen. et sp. nov., female holotype. A, mandible; B, maxillule; C, maxilla; D, maxilliped.
FIG. 1 in Chalarosthrix gen. nov., a new taxon of the Sphingothrix-Triathrix clade (Harpacticoida: Cletodidae) from the Province of Cortez, Eastern Mexican Pacific
FIG. 1. Chalarosthrix bisetosa gen. et sp. nov., female holotype. A, habitus, dorsal; B, anal somite and caudal rami, dorsal (Roman numerals indicate each caudal seta); C, habitus, lateral; D, anal somite and left caudal ramus (Roman numerals indicate each caudal seta).
FIG. 7 in Chalarosthrix gen. nov., a new taxon of the Sphingothrix-Triathrix clade (Harpacticoida: Cletodidae) from the Province of Cortez, Eastern Mexican Pacific
FIG. 7. "Allcompat" consensus tree of the Bayesian analysis (equivalent to the majority-rule consensus tree) using MrBayes showing the most probable relationships amongst Sphingothrix, Triathrix, and Chalarosthrix. Numbers indicate the Bayesian Posterior Probability values (BPP %).
FIGURE 4 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 4. Stylicletodes wellsi sp. nov. (♀): A, P3 including intercoxal sclerite, anterior (position of outer basal seta indicated by arrow); B, P4, anterior; C, coxa of P3, anterior. A–B based on holotype; C based on paratype. Scale bar: 20μm.
FIGURE 6 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 6. Stylicletodes wellsi sp. nov. (♂): A, P1, anterior; B, P2, anterior. All based on paratype. Scale bar = 20μm.
FIGURE 3 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 3. Stylicletodes wellsi sp. nov. (♀): A, coxa of P1, anterior; B, P1, anterior; C, coxa of P2, anterior; D, P2, anterior. A and C based on paratype; B and D based on holotype. Scale bar: 20μm.
FIGURE 5 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 5. Stylicletodes wellsi sp. nov. (♂): A, habitus, dorsal; B, urosome, ventral; C, antennule. All based on paratype. Scale bars: A–B = 50 μm, C = 20μm.
FIGURE 1 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 1. Stylicletodes wellsi sp. nov. (♀): A, habitus, dorsal (holotype); B, habitus, lateral (paratype); C, urosome with spermatophore attached to genital field, ventral (paratype; P5-bearing somite omitted); D, labrum (paratype). Scale bars: A–B = 50 μm, C = 20 μm, D = 10 μm.
FIGURE 7 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 7. Stylicletodes wellsi sp. nov.: A, P3 ♂, anterior; B, P5 ♂, anterior, C, P5 ♀, anterior. Scale bars: 20μm.
FIGURE 2 in A new species of Stylicletodes Lang, 1936 (Copepoda: Harpacticoida: Cletodidae) from the East China Sea, including an updated key to species and synopsis of distribution records
FIGURE 2. Stylicletodes wellsi sp. nov. (♀): A, antennule, ventral; B, antenna (missing apical seta indicated by arrow); C, mandible; D, maxillule; E, maxilla; F, maxilliped. A–C, D–G based on holotype; B, E–F based on paratype. Scale bars: 10 μm.
Figure 9 from: George KH (2020) Restructuring the Ancorabolidae Sars (Copepoda, Harpacticoida) and Cletodidae T. Scott, with a new phylogenetic hypothesis regarding the relationships of the Laophontoidea T. Scott, Ancorabolidae and Cletodidae. Zoosystematics and Evolution 96(2): 455-498. https://doi.org/10.3897/zse.96.51349
Figure 9 P1 of A.Laophontodes monsmaris George, 2018, B.Ancorabolina divasecunda Gheerardyn & George, 2010, C.Arthropsyllus serratus Sars, 1909, D.Ancorabolus chironiSchulz and George; 2010. Modified from George 2018 (A), Gheerardyn and George 2010 (B), Conroy-Dalton and Huys 2000 (C), Schulz and George 2010 (D). No scales.
Figure 10 from: George KH (2020) Restructuring the Ancorabolidae Sars (Copepoda, Harpacticoida) and Cletodidae T. Scott, with a new phylogenetic hypothesis regarding the relationships of the Laophontoidea T. Scott, Ancorabolidae and Cletodidae. Zoosystematics and Evolution 96(2): 455-498. https://doi.org/10.3897/zse.96.51349
Figure 10 Cuticular body processes of A.Arthuricornua anendopodia Conroy-Dalton, 2001, B.Dorsiceratus ursulae George, 2006, C.Breviconia australis (George, 1998), D.Ancorabolus inermis Conroy-Dalton & Huys, 2000. Modified after Conroy-Dalton 2001 (A), George 2006b (B), George 1998a (C), Conroy-Dalton and Huys 2000 (D). No scales.
Figure 3 from: George KH (2020) Restructuring the Ancorabolidae Sars (Copepoda, Harpacticoida) and Cletodidae T. Scott, with a new phylogenetic hypothesis regarding the relationships of the Laophontoidea T. Scott, Ancorabolidae and Cletodidae. Zoosystematics and Evolution 96(2): 455-498. https://doi.org/10.3897/zse.96.51349
Figure 3 Schematic representation of hypothesised groundpatterns for the shapes of the first swimming leg P1 in each proposed taxon. A. Podogennontan (after Willen 2000; Seifried 2003), B.Laophontoidea–Cletodoidea-clade, C.Cletodoidea, D.Cletodidae ●, E.Ancorabolidae ●. Black crosses indicate apomorphies; Roman numerals = outer spines, Arabic numerals = inner setae; ex = exopod, en = endopod. Explanations given in the text.
Figure 4 from: George KH (2020) Restructuring the Ancorabolidae Sars (Copepoda, Harpacticoida) and Cletodidae T. Scott, with a new phylogenetic hypothesis regarding the relationships of the Laophontoidea T. Scott, Ancorabolidae and Cletodidae. Zoosystematics and Evolution 96(2): 455-498. https://doi.org/10.3897/zse.96.51349
Figure 4 Antennulae (A1) of A.Enhydrosoma parapropinquum Gómez, 2003, B.Cletodes meyerorum George & Müller, 2013, C.Bicorniphontodes bicornis (A. Scott, 1896), D.Ancorabolina divasecunda Gheerardyn & George, 2010. Arrows indicate gradual elongation. Modified after Gómez 2003 (A), George and Müller 2013 (B), George and Gheerardyn 2015 (C), Gheerardyn and George 2010 (D). No scales.
Figure 1 from: George KH (2020) Restructuring the Ancorabolidae Sars (Copepoda, Harpacticoida) and Cletodidae T. Scott, with a new phylogenetic hypothesis regarding the relationships of the Laophontoidea T. Scott, Ancorabolidae and Cletodidae. Zoosystematics and Evolution 96(2): 455-498. https://doi.org/10.3897/zse.96.51349
Figure 1 Representatives of "Ancorabolidae" Sars, 1909, A.Ancorabolus ilvae George, 2001, B.Ancorabolina chimaera George, 2006, C.Ceratonotus vareschii George, 2006, D.Laophontodes typicus T. Scott, 1894, E.Paralaophontodes anjae George, 2017. Modified from George 2001 (A), 2006a (B), 2006b (C), 2017 (D), 2018 (E). No scales.
Figure 8 from: George KH (2020) Restructuring the Ancorabolidae Sars (Copepoda, Harpacticoida) and Cletodidae T. Scott, with a new phylogenetic hypothesis regarding the relationships of the Laophontoidea T. Scott, Ancorabolidae and Cletodidae. Zoosystematics and Evolution 96(2): 455-498. https://doi.org/10.3897/zse.96.51349
Figure 8 P1 of A.Enhydrosoma curticauda (Boeck, 1872); arrow points to inner apical seta (element 3), B.Cletodes meyerorum George & Müller, 2013, C.Touphapleura schminkei (George, 1998), D.Ceratonotus steiningeri George, 2006. Modified from Gee 1994 (A), George and Müller 2013 (B), George 1998b (C), George 2006c (D). No scales.
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