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1,138 results for “cryptic diversity”
FIGURE 6 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 6. Schematic representation of the chela, showing the measurements "a", "b" and "c" of the propodus used to determine the palm height.
FIGURE 7 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 7. Schematic representation of the types of anteromesial region of the Aegla Leach, 1820 third thoracic sternite used in the descriptions. A, tapered. B, truncate. C, Abrupt.
FIGURE 25. A–F in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 25. A–F, dorsal view of cephalothorax and anterior portion of abdomen. A, Aegla paulensis Schmitt, 1942 s. str., male topotype (MZUSP 34367). B, Aegla rosanae Campos Jr., 1998, male topotype (MZUSP 34369). C, Aegla vanini n. sp., male holotype (MZUSP 34371). D, Aegla japi n. sp., male paratype (MZUSP 34375). E, Aegla jaragua n. sp., male paratype (MZUSP 34377). F, Aegla jundiai n. sp., female holotype (MZUSP 13493).
FIGURE 21. Aegla jaragua n in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 21. Aegla jaragua n. sp., male holotype (MZUSP 34376). A, lateral view of the anterior region of the cephalothorax. B, dorsal view of epibranchial area. C, third and fourth thoracic sternites. D, telson, uropods and sixth abdominal segment. Note in A, the subrostral process (arrow). Bars: A, D = 2.0 mm; B = 0.5 mm; C = 1.0 mm.
FIGURE 3 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 3. Schematic representation of the aeglid rostrum in dorsal view showing the terminology and measurements used in the descriptions. RBW, rostral base width. LMR, lateral margin of rostrum (rostral side length).
FIGURE 5 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 5. Types of aeglid palmar crests showing the terminology used in the descriptions. A, rudimentary. B, rectangular. C, disciform. Arrow in C shows the convex inflexion condition.
FIGURE 4 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 4. Schematic representation of the aeglid areola (inner, dotted) and cardiac area (outer, solid line) in dorsal view, showing the terminology and measurements used in the descriptions. "y", "x", anterior and posterior width of the areola, respectively; "h", areola length; "a", "b", anterior and posterior width of the cardiac area, respectively. DLL, TDL, dorsal longitudinal linea and transverse dorsal linea, respectively.
FIGURE 2 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 2. Major cheliped of Aegla paulensis s. str. (male topotype MZUSP 34367) showing the terminology used in the descriptions.
FIGURE 4 in Three new species of leaflitter frogs from the upper Amazon forests: cryptic diversity within Pristimantis " ockendeni " (Anura: Strabomantidae) in Ecuador
FIGURE 4. Lateral view of specimens of P. kichwarum (QCAZ 18033), P. achuar (QCAZ 25463), and P. altamnis (QCAZ 25311). Note the presence of a canthal stripe and darkened supratympanic ridge in P. kichwarum and their absence in P. achuar and P. altamnis.
FIGURE 8 in Three new species of leaflitter frogs from the upper Amazon forests: cryptic diversity within Pristimantis " ockendeni " (Anura: Strabomantidae) in Ecuador
FIGURE 8. Dorsal view of two specimens of P. altamnis (left and right; QCAZ 25313 and 25304) and the holotype of S. calcaratus (centre; NRM 1921). Note the lack of a darkened W-shaped occipital ridge, the pointed snout, different colour patterning, and shorter, plumper hindlimbs of S. calcaratus compared to P. altamnis.
FIGURE 7 in Three new species of leaflitter frogs from the upper Amazon forests: cryptic diversity within Pristimantis " ockendeni " (Anura: Strabomantidae) in Ecuador
FIGURE 7. Bayesian phylogenetic tree of P. achuar, P. altamnis, and P. kichwarum based on mtDNA cytochrome b and 16S. Posterior probabilities are labelled at nodes. Two subclades are noted within P. kichwarum. The size of terminal triangles reflect the amount of diversity when samples from across the range are included (from Elmer et al. 2007b).
FIGURE 3 in Three new species of leaflitter frogs from the upper Amazon forests: cryptic diversity within Pristimantis " ockendeni " (Anura: Strabomantidae) in Ecuador
FIGURE 3. Ventral view of three paratypes of P. altamnis (top row; QCAZ 25445, 25442, 25447), P. kichwarum (middle row; QCAZ 25287, 25558, 25759), and P. achuar (bottom row; QCAZ 25461, 25530, 25534). Note the difference in ventral colouration between the three species, with P. altamnis having the most dense flecking of melanophores and P. achuar having the palest venter.
FIGURE 5 in Three new species of leaflitter frogs from the upper Amazon forests: cryptic diversity within Pristimantis " ockendeni " (Anura: Strabomantidae) in Ecuador
FIGURE 5. Map of localities for reviewed specimens of P. altamnis (white dot), P. kichwarum (grey dot), and P. achuar (black dot). The general area of the Cuyabeno Reserve and Yasuní National Park are noted, as mentioned in the text for some collections. For simplicity, some nearby localities share a dot. (1) Chonta Yacu, Lumbaqui; (2) Centro Shuar Yawi; (3) Serena; (4) Talag or Cando; (5) Jatun Sacha Biological Station and Arajuno Jungle Lodge; (6) Puca Chicta, Misahuallí; (7) Auca 14 Rd near Dayuma; (8) Parque Nacional Yasuní: Estación Científica, Onkonegare, and pozo Capiron; (9) Llanganates Mountains, Canton Arosamena Tola; (10) La Selva Lodge, Pañacocha; (11) Y of road Tena to Puyo, Canton Sta Clara; (12) Fundación Hola Vida, El Porvenir; (13) Kapawi Lodge; (14) Lorocachi; (15) Petrolera Garza 1, Montalvo; (16) Bloque Shiripuno, Parque Nacional Yasuní; (17) Rio Huataracu, via Hollín-Loreto; (18) Indillama; (19) Yuturi; (20) Bataburo Lodge, Rio Tiguño; (21) Santa Rita; (22) Parque Nacional Yasuní, Carretera Pompeya Sur-Iro Km 21, 38 or 41; (23) Comuna El Descanso; (24) Parque Nacional Yasuní Road to MAXUS km 107 and AMO 1; (25) Parque Nacional Yasuní Bloque 31.
FIGURE 2 in Three new species of leaflitter frogs from the upper Amazon forests: cryptic diversity within Pristimantis " ockendeni " (Anura: Strabomantidae) in Ecuador
FIGURE 2. Dorsal view of three paratypes of P. altamnis (top row; QCAZ 25313, 25302, 25304), P. kichwarum (middle row; QCAZ 25287, 27762, 25782), and P. achuar (bottom row; QCAZ 25538, 25490, 25491). Note the presence of a canthal stripe in P. kichwarum and its absence in P. altamnis and P. achuar.
FIGURES 8 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection
FIGURES 8. Male genitalia. Oenochroma barcodificata sp. nov., Tasmania (paratype TASAG Accession No. 104048) (photo CY). Scale bars 2 mm.
FIGURES 6, 7 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection
FIGURES 6, 7. Oenochroma vinaria, Ƥ lectotype of Monoctenia decora Wlk. 6: dorsal view. 7: labels (photos Peter Marriott and Peter Lilywhite, MVMA, Melbourne, Australia).
FIGURE 1. Neighbor joining tree for 34 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection
FIGURE 1. Neighbor joining tree for 34 Australian specimens in the genus Oenochroma (Kimura 2 Parameter, built with MEGA4; all codon positions unweighted) based on sequences of the mtDNA COI gene (barcoding fragment 5'). Values above branches are bootstrap support values superior to 95%. Terminals are identified by their process ID code on BOLD.
FIGURES 4, 5 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection
FIGURES 4, 5. Oenochroma vinaria, Ƥ lectotype of Guenée (photos RR/AM). 4: dorsal view. 5: labels (photos AM, RR). Scale bar 2 cm.
FIGURES 2, 3 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection
FIGURES 2, 3. Oenochroma barcodificata sp. nov., Ƥ holotype, Tasmania. 2: dorsal view. 3: labels (photos AH). Scale bar 2 cm.
FIGURES 9 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection
FIGURES 9. Male genitalia. Oenochroma vinaria, Tasmania (genitalia from slide TMAG F4720; aedeagus from gen.prp. ZSM G 13969) (photo CY/AH). Scale bars 2 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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International Brain Laboratory public data
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OpenNeuro
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