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378 results for “troglobitic species”
FIGURE 10 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 10. Ferricixius goliathi sp. nov.: Male genitalia: genital capsule right lateral (A); genital capsule left lateral (B); genital capsule dorsal (C); D aedeagus right lateral (D); E aedeagus in dorsal view (E); aedeagus left lateral (F); G genital capsule ventral (G).
FIGURE 15 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 15. Ferricixius davidi Hoch & Ferreira, 2012, Female genitalia: Female genitalia in lateral view (A); gonocoxa VIII apically (B); segment-X, epiproct and paraproct in dorsocaudal view (C).
FIGURE 6 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 6. Ferricixius michaeli sp. nov.: head (A–C); pedicel with flagellum and arista (C1); tegmen (forewing) (D); hind tibia and tarsomeres (E); hind tarsomeres (F).
FIGURE 17 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 17. Distribution of the genus Ferricixius Hoch & Ferreira, 2012 in Brazil. Red triangle: F. davidi Hoch & Ferreira, 2012. Green diamond, F. goliathi sp. nov. Blue circle, F. michaeli sp. nov. Black circle, F. urieli sp. nov.; Diffuse areas in light blue = karst areas; The shapefile with karst areas and the occurrence of caves in Brazil was obtained from CECAV (https://www. icmbio.gov.br/cecav/projetos-e-atividades/provinciasespeleologicas.html). The limits of Brazil were obtained from ForestGis (https://forest-gis.com/download-gis-base-de-dados/)
FIGURE 5 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 5. Habitat Ferricixius urieli sp. nov.: Casas cave, Limas Duarte municipality- MG (A–C); habitus Ferricixius urieli sp. nov. (D).
FIGURE 4 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 4. Ferricixius urieli sp. nov., male genitalia: Genital capsule right lateral (A); genital capsule left lateral (B); genital capsule dorsal (C); aedeagus right lateral (D); aedeagus in dorsal view (E); aedeagus left lateral (F); genital capsule ventral (G).
FIGURE 7 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 7. Ferricixius michaeli sp. nov.: Male genitalia: Genital capsule right lateral (A); genital capsule left lateral (B); genital capsule dorsal (C); aedeagus right lateral (D); aedeagus in dorsal view (E); aedeagus left lateral (F); genital capsule ventral (G).
FIGURE 3 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 3. Ferricixius urieli sp. nov.: head (A–C), pedicel with flagellum (C1); tegmen (forewing) (D); hind tibia and tarsomeres (E); hind tarsomeres (F).
FIGURE 2 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 2. Tegmina: Ferricixius urieli sp. nov. (A); Ferricixius michaeli sp. nov. (B); Ferricixius goliathi sp. nov. (C).
FIGURE 9 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 9. Ferricixius goliathi sp. nov.: Head A–C; pedicel with flagellum and arista (C1); tegmina (forewings) (D); E hind tibia and tarsomeres (E); hind tarsomeres (F).
FIGURE 14 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 14. Ferricixius davidi Hoch & Ferreira, 2012, Female: Antenna in lateral view, with scape, pedicel, flagellum and arista (A); flagellum and arista (B); sensory plates (C); vestigial ocellus (D).
FIGURE 16 in Adaptive shifts in Neotropical planthoppers: new troglobitic species and the first surface species of Ferricixius Hoch & Ferreira, 2012 (Hemiptera: Fulgoromorpha Cixiidae) from Brazilian caves
FIGURE 16. Habitat Ferricixius davidi Hoch & Ferreira, 2012: MP-008 cave, Itabirito municipality- MG (A); Collection record by the active search method in MP-008 (B); habitus lateral Ferricixius davidi Hoch & Ferreira, 2012 (C).
FIGURE 1 in Tychobythinus inopinatus, a new troglobitic species from Sicily (Coleoptera, Staphylinidae, Pselaphinae)
FIGURE 1. Location map of Strict Nature Reserve "Grotta Monello".
Figure 5 from: Simone LRL, Cavallari DC, Salvador RB (2020) A new troglobite species of Habeastrum Simone, 2019 from Brazil, and support for classification in Diplommatinidae (Mollusca, Caenogastropoda). Zoosystematics and Evolution 96(2): 639-647. https://doi.org/10.3897/zse.96.53880
Figure 5 Map of Minas Gerais state showing the municipalities where Habeastrum strangei sp. nov. occurs.
Figure 3 from: Simone LRL, Cavallari DC, Salvador RB (2020) A new troglobite species of Habeastrum Simone, 2019 from Brazil, and support for classification in Diplommatinidae (Mollusca, Caenogastropoda). Zoosystematics and Evolution 96(2): 639-647. https://doi.org/10.3897/zse.96.53880
Figure 3 Anatomy of Habeastrum strangei sp. nov. A. head-foot, male, right-slightly anterior view; B. pallial cavity, ventral view and visceral mass partially uncoiled, some structures seen be translucency; C. head and haemocoel, ventral view, foot and columellar muscle removed; D. foregut, ventral view; E. same, left view; F. odontophore, dorsal view, superficial layer of structures removes, cartilages deflected. Scale bars: 250 μm.
Figure 2 from: Simone LRL, Cavallari DC, Salvador RB (2020) A new troglobite species of Habeastrum Simone, 2019 from Brazil, and support for classification in Diplommatinidae (Mollusca, Caenogastropoda). Zoosystematics and Evolution 96(2): 639-647. https://doi.org/10.3897/zse.96.53880
Figure 2 SEM images of Habeastrum strangei sp. nov. A. protoconch detail (MZSP 150023); B–E. Radula (MZSP 137145), in different views. Scale bars: 100 μm (A.); 5 μm (B–E.).
Figure 1 from: Simone LRL, Cavallari DC, Salvador RB (2020) A new troglobite species of Habeastrum Simone, 2019 from Brazil, and support for classification in Diplommatinidae (Mollusca, Caenogastropoda). Zoosystematics and Evolution 96(2): 639-647. https://doi.org/10.3897/zse.96.53880
Figure 1 Shells of Habeastrum strangei sp. nov. A–E. specimens before shell crushing for anatomical study (MZSP 137145); A. spm #1 apertural view, soft body seen by translucency (1.6 mm high); B. same, dorsal view; C. same, umbilical view (1.1 mm wide); D. spm #2, apertural view (1.9 mm high); E. operculum of spm #1, outer view (0.4 mm wide); F–H. SEM images of shells, all in same scale for comparison; F. holotype, adult (MZSP 151626); G. paratype, juvenile (MZSP 151628); H. juvenile (MZSP 150023).
Figure 4 from: Simone LRL, Cavallari DC, Salvador RB (2020) A new troglobite species of Habeastrum Simone, 2019 from Brazil, and support for classification in Diplommatinidae (Mollusca, Caenogastropoda). Zoosystematics and Evolution 96(2): 639-647. https://doi.org/10.3897/zse.96.53880
Figure 4 Anatomy of Habeastrum strangei sp. nov. A. pallial cavity roof, female, ventral view; B. central nervous system (nerve ring), ventral view; C. penis and adjacent region of nuchal surface, dorsal view. Scale bars: 250 μm.
Figure 5 from: Edgecombe GD, Akkari N, Netherlands EC, Du Preez G (2020) A troglobitic species of the centipede Cryptops (Chilopoda, Scolopendromorpha) from northwestern Botswana. ZooKeys 977: 25-40. https://doi.org/10.3897/zookeys.977.57088
Figure 5 Cryptops (Cryptops) legagus sp. nov., paratype NHMW 10151 A habitus, dorsal view B, C head and segment 1, dorsal and ventral views D detail of head (clypeus, first maxilla and forcipule), ventral view E leg-bearing segments 1 and 2, dorsal view F cruciform sulci on sternites.
Figure 7 from: Edgecombe GD, Akkari N, Netherlands EC, Du Preez G (2020) A troglobitic species of the centipede Cryptops (Chilopoda, Scolopendromorpha) from northwestern Botswana. ZooKeys 977: 25-40. https://doi.org/10.3897/zookeys.977.57088
Figure 7 Bayesian tree for blind scolopendromorphs based on partitioned concatenated datasets of four molecular loci 18S rRNA, 28S rRNA, 16S rRNA and cytochrome c oxidase subunit I. Numbers at nodes are posterior probabilities. The scale bar represents 0.05 nucleotide substitutions per site.
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International Brain Laboratory public data
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