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FIGURE 1 in Afrotropical weevils of the Cadoderus Marshall generic complex (Coleoptera: Curculionidae: Entiminae: Embrithini). Part 2. Two new species of the genus Sphrigodellus Marshall, 1942 from Udzungwa Mountains, Tanzania
FIGURE 1. Dorsal and lateral habitus of Sphrigodellus species. A, B: Sphrigodellus griseus sp. n., paratype, female, dorsal and lateral view. C, D: Sphrigodellus marshalli sp. n., holotype, female, dorsal and lateral view. Scale bar: 1 mm.
FIGURE 3 in Afrotropical weevils of the Cadoderus Marshall generic complex (Coleoptera: Curculionidae: Entiminae: Embrithini). Part 2. Two new species of the genus Sphrigodellus Marshall, 1942 from Udzungwa Mountains, Tanzania
FIGURE 3. Sphrigodellus griseus sp. n. male and female genital structures. A: aedeagus dorsal and lateral view. B: tegmen. C: male sternite 9, sternite and tergite 8 D: spermatheca. E: ovipositor. F: female sternite 8. G: female tergite 8. Abbreviations: ba—baculi, co—collum, cp—corpus, cr—cornus, cxt—coxite, du—spermathecal duct, es—endophallic sclerite, gl—spermathecal gland, ra—ramus, sty—stylus, st8—8th sternite, st8ap—apodeme of 8th sternite, st8ca—caput of apodeme of 8th sternite, st9—9th sternite, st9ap—apodeme of 9th sternite, st9ca—caput of apodeme of 9th sternite.
FIGURE 2 in Afrotropical weevils of the Cadoderus Marshall generic complex (Coleoptera: Curculionidae: Entiminae: Embrithini). Part 2. Two new species of the genus Sphrigodellus Marshall, 1942 from Udzungwa Mountains, Tanzania
FIGURE 2. Sphrigodellus griseus sp. n., structural details. A: head dorsal and lateral view. B: head capsule, anterior view. C: labium D: antennal scape. E: antennal funicle. F: body shape. G: protibia of male. H: metatibia of male.
FIGURE 2 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 2. Geographic distribution of Caecilia atelolepis sp. nov. (red squares), C. degenerata (orange circles), C. epicrionopsoides sp. nov., (black triangles), and C. macrodonta sp. nov. (blue rhombus) along the Cordillera Oriental of Colombia and neighboring Venezuela.
FIGURE 6 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 6. Profile view of the head of the holotype of Caecilia macrodonta sp. nov. (ICN 42455). Image focused on the leftside row of dentary teeth.
FIGURE 1. Caecilia degenerata ICN 58465 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 1. Caecilia degenerata ICN 58465 from Fómeque, Cundinamarca, Colombia. A-B) lateral views of the body. Scale bar equals 10 mm. C, E, G) Head, collars, and anterior of body, D, F, H) terminus, vent, and posterior of body. Scale bar equals 3 mm.
FIGURE 5 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 5. Caecilia macrodonta sp. nov. holotype ICN 42455 from Sasaima, Cundinamarca, Colombia. A-B) lateral views of the body. Scale bar equals 15 mm. C, E, G) Head, collars, and anterior of body, D, F, H) terminus, vent, and posterior of body. Scale bar equals 5 mm.
FIGURE 8 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 8. General body views in life of A) Caecilia atelolepis sp. nov. ICN 43525; B) C. degenerata ICN 58465; C) C. epicrionopsoides sp. nov. ICN 58434; D) C. orientalis ISCA 4208. Photographs A, B) by J. D. Lynch, C) by Juan Carlos Sánchez-Nivicela, and D) by Mariela Osorno-Muñoz.
FIGURE 4 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 4. Caecilia epicrionopsoides sp. nov. holotype ICN 58307 from Finca La Isla, Río Batá, Santa María, Boyacá, Colombia. A-B) lateral views of the body. Scale bar equals 12 mm. C, E, G) Head, collars, and anterior of body, D, F, H) terminus, vent, and posterior of body. Scale bar equals 5 mm.
FIGURE 3 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 3. Caecilia atelolepis sp. nov. holotype ICN 58401 from Supatá, Cundinamarca, Colombia. A-B) lateral views of the body. Scale bar equals 10 mm. C, E, G) Head, collars, and anterior of body, D, F, H) terminus, vent, and posterior of body. Scale bar equals 5 mm.
FIGURE 7 in On the identities of Caecilia degenerata Dunn, 1942 and of C. corpulenta Taylor 1968 (Amphibia: Gymnophiona: Caeciliidae) with descriptions of three new species of Caecilia Linnaeus, 1758 from the Cordillera Oriental of Colombia
FIGURE 7. Dermal scales obtained from the posterior primary grooves of A) C. macrodonta sp. nov. (ICN 42455), B) C. atelolepis sp. nov. (ICN 58401), C) C. epicrionopsoides sp. nov. (ICN 58307), and D) C. degenerata (ICN 58465); E) Dermal scale of C. epicrionopsoides sp. nov. (ICN 58307) taken from the anterior set of secondary grooves. Scale bar equals 1 mm.
FIGURE 9 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 9. Phylogenetic Bayesian inference based on COI mtDNA sequences. The numbers on the branches represent the supporting values for the nodes. The sequences in red are from the specimens previously identified as A. dissimilis.
FIGURE 8 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 8. Dendrogram made with procrustes distance values from the Canonical Variate Analysis of Geometric Morphometrics of wing.
FIGURE 5 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 5. Graphs of linear morphometric analyses. a) Principal Components Analysis scatter plot; b) Canonical Variate Analysis scatter plot; c) Dendrogram of Mahalanobis distance from canonical variate analysis.
FIGURE 4 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 4. Scannig Electron Microscope photographs of aculeus tip (ventral view). a) Assú (RN); b) Cruz das Almas (BA); c) Janaúba (MG); d) Mossoró (RN); e) Nova Soure (BA); f) Lages (SC); g) Piracicaba (SP); h) Vacaria (RS). Detail of tip. i) Assú; j) Cruz das Almas; l) Janaúba; m) Mossoró; n) Nova Soure; o) Lages; p) Piracicaba; q) Vacaria. Scale bars, a–h: 0.1 mm; i–q: 0.02 mm.
FIGURE 7 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 7. Scatter plot and outline drawing from Canonical Variate Analysis performed with the procrustes superimposition data from wing.
FIGURE 6 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 6. Scatter plot and outline drawing from Principal Component Analysis performed with the procrustes superimposition data from wing.
FIGURE 3 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 3. Aculeus tip (ventral view). a) Assú (RN); b) Cruz das Almas (BA); c) Janaúba (MG); d) Jaguaripe (BA); e) Monte Alegre do Sul (SP); f) Mossoró (RN); g) Morada Nova (CE); h) Jacupiranga (SP); i) Lages (SC); j) Pelotas (RS); l) Piracicaba (SP); m) Presidente Prudente (SP); n) Nova Veneza (SC); o) Vacaria (RS); p) Plaisance, Haiti (holotype) (Norrbom et al. 2012); q) Anastrepha dissimilis (paratype) Bonito, Pernambuco (Stone 1942). Scale bars: 0.05 mm.
FIGURE 10 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 10. SEM of the scutum of a specimen previously identified as A. dissimilis from Janaúba (MG) (ESALQENT0001587). (B) Detail of the scutum. Scale bars: a = 0.5 mm; b = 0.1 mm.
FIGURE 2 in Integrative approach reveals the identity of Brazilian specimens previously recognized as Anastrepha dissimilis Stone, 1942 (Diptera: Tephritidae)
FIGURE 2. Measurements and landmarks for the aculeus tip (a), mesonotum (b), and wing (c–d). A1) Length of non-serrated
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OpenNeuro
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