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FIGURE 33. Dysonia species. A–C. D. holgeri. D–E. D. zikani. F–G. D. pardalis. H–I. D. monticola. J–K. D. melaleuca. L–M. D. alipes. A in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines
FIGURE 33. Dysonia species. A–C. D. holgeri. D–E. D. zikani. F–G. D. pardalis. H–I. D. monticola. J–K. D. melaleuca. L–M. D. alipes. A. Habitus in lateral view. B, D, F, H, J, L. Subgenital plates. C, E, G, I, K, M. Cerci. (Figs. D–E., H–J. after Costa-Lima & Guitton, 1960).
FIGURE 35. Lichenomorphus species. Cerci and subgenital plates. A, D, E. L. nigrosignatus. B–C. L. pirani. F–G. L. ypsilon. H–I. L. paulistanus. J–K. L in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines
FIGURE 35. Lichenomorphus species. Cerci and subgenital plates. A, D, E. L. nigrosignatus. B–C. L. pirani. F–G. L. ypsilon. H–I. L. paulistanus. J–K. L. carlosmendesi. (Photo A D. Mendes. Figs. F–K after Costa-Lima & Guitton, 1961).
FIGURE 43. Live individuals. A. Lichenodraculus matti. B. Markia arizae. C. M. major. D. M. hystrix. E. Apolinaria hygracantha. F. Paraphidnia brevicristata G in The tribe Dysoniini part VI: Phylogeny, biogeography and evolutionary trends of the lichen katydid genera (Orthoptera: Tettigoniidae: Phaneropterinae). Eleventh contribution to the suprageneric organization of Neotropical phaneropterines
FIGURE 43. Live individuals. A. Lichenodraculus matti. B. Markia arizae. C. M. major. D. M. hystrix. E. Apolinaria hygracantha. F. Paraphidnia brevicristata G. Anaphidna rubricorpus. (Photos: A. L. Salagaje. B. A. Kay. C. J. Monzón. E. F. Arango. F. A. Anker. G. J. Cardona).
Other common names: East African Grammomys, Rwenzori Grammomys, Rwenzori Thicket Rat Taxonomy. Thamnomys ibeanus Osgood, 1910, Molo, Kenya. Grammomys ibeanus was previously includ-ed in G. cometes, but molecular data show it to be closer to G. macmillani. Monotypic. Distribution. Occurs quite widely in E Africa associated with mountains of the Rift Valley system and the Eastern Arc, including S South Sudan, E Uganda, Kenya, Tanzania, Malawi, and Mozambique. in Muridae
Other common names: East African Grammomys, Rwenzori Grammomys, Rwenzori Thicket Rat Taxonomy. Thamnomys ibeanus Osgood, 1910, Molo, Kenya. Grammomys ibeanus was previously includ-ed in G. cometes, but molecular data show it to be closer to G. macmillani. Monotypic. Distribution. Occurs quite widely in E Africa associated with mountains of the Rift Valley system and the Eastern Arc, including S South Sudan, E Uganda, Kenya, Tanzania, Malawi, and Mozambique.
Although previously included in O. typus, O. jackson: differs from it in body size, number of M® lamina, and genetically. Monotypic. Distribution. Known only from Mt Elgon, E Uganda and W Kenya. Descriptive notes. Head-body 120-171 mm, tail 57-82 mm, ear 19-26 mm, hindfoot 19-26 mm; weight 70-121 g. The Mount Elgon Vlei Rat is medium to large in size and robust, with large blunt head, shorttail, and shaggy fur; it is the smallest of the O. typus species group. Fur coloris not clearly distinct from the Ethiopian Vlei Rat (O. typus). Lower incisors each have two deep grooves. M, has four laminae, and M? has seven laminae. in Muridae
Although previously included in O. typus, O. jackson: differs from it in body size, number of M® lamina, and genetically. Monotypic. Distribution. Known only from Mt Elgon, E Uganda and W Kenya. Descriptive notes. Head-body 120-171 mm, tail 57-82 mm, ear 19-26 mm, hindfoot 19-26 mm; weight 70-121 g. The Mount Elgon Vlei Rat is medium to large in size and robust, with large blunt head, shorttail, and shaggy fur; it is the smallest of the O. typus species group. Fur coloris not clearly distinct from the Ethiopian Vlei Rat (O. typus). Lower incisors each have two deep grooves. M, has four laminae, and M? has seven laminae.
Subspecies and Distribution. G.p.pyramidumEGeoffroySaint-Hilaire,1803—NEgypt. G. p. elbaensis Setzer, 1958 — SE Egypt and NE Sudan (SE Eastern Desert). G. p. gedeedus Osborn & Helmy, 1980 — known from a few oases in Egypt. Also present in W Mauritania, and from Mali E to Sudan, but subspecies involved not known. in Muridae
Subspecies and Distribution. G.p.pyramidumEGeoffroySaint-Hilaire,1803—NEgypt. G. p. elbaensis Setzer, 1958 — SE Egypt and NE Sudan (SE Eastern Desert). G. p. gedeedus Osborn & Helmy, 1980 — known from a few oases in Egypt. Also present in W Mauritania, and from Mali E to Sudan, but subspecies involved not known.
Subspecies and Distribution. H.g.goliathMilne-Edwards,1900—ENewGuineaCentralCordillerafromtheHagenareaEtoextremeEofthePapuanPeninsula. H. g. strobilurus Rimmler, 1933 — Huon Peninsula, E New Guinea.. in Muridae
Subspecies and Distribution. H.g.goliathMilne-Edwards,1900—ENewGuineaCentralCordillerafromtheHagenareaEtoextremeEofthePapuanPeninsula. H. g. strobilurus Rimmler, 1933 — Huon Peninsula, E New Guinea..
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information. in Muridae
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information.
Lophuromys medicaudatus, L. woosnami, and L. luteogaster are in subgenus Kivumys and woosnami species group. Monotypic. Distribution. Endemic to the Albertine Rift, occurring around Lake Kivu in E DR Congo and Rwanda and SW Uganda (Bwindi). Descriptive notes. Head—body 92-112 mm, tail 73-95 mm, ear 15-19 mm, hindfoot 18-23 mm; weight 29-43 g. Similar to other species in subgenus Kivumys, the Western Rift Brush-furred Rat has unspeckled pelage, and tail ¢.85% of head-body length. Dorsum is uniform dark brown-olive, and venter is orange. Females have three pairs of mammae. Habitat. Mountain swamps and mountain forests at elevations of 1850-2500 m. Food and Feeding. The Western Rift Brush-furred Rat is omnivorous; diets contain 30-100% arthropods, mollusks, seeds, and fruits. Breeding. Female Western Rift Brush-furred Rats can have 1-2 embryos. Pregnant females were observed in February, April, and July. Activity patterns. The Western Rift Brush-furred Rat is terrestrial. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Vulnerable on The IUCN Red List. The Western Rift Brush-furred Rat has never been found in modified secondary environment and is quite rare. Bibliography. Dieterlen (1976b, 1987 2013g), Kasangaki et al. (2003), Verheyen et al. (1996). in Muridae
Lophuromys medicaudatus, L. woosnami, and L. luteogaster are in subgenus Kivumys and woosnami species group. Monotypic. Distribution. Endemic to the Albertine Rift, occurring around Lake Kivu in E DR Congo and Rwanda and SW Uganda (Bwindi). Descriptive notes. Head—body 92-112 mm, tail 73-95 mm, ear 15-19 mm, hindfoot 18-23 mm; weight 29-43 g. Similar to other species in subgenus Kivumys, the Western Rift Brush-furred Rat has unspeckled pelage, and tail ¢.85% of head-body length. Dorsum is uniform dark brown-olive, and venter is orange. Females have three pairs of mammae. Habitat. Mountain swamps and mountain forests at elevations of 1850-2500 m. Food and Feeding. The Western Rift Brush-furred Rat is omnivorous; diets contain 30-100% arthropods, mollusks, seeds, and fruits. Breeding. Female Western Rift Brush-furred Rats can have 1-2 embryos. Pregnant females were observed in February, April, and July. Activity patterns. The Western Rift Brush-furred Rat is terrestrial. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Vulnerable on The IUCN Red List. The Western Rift Brush-furred Rat has never been found in modified secondary environment and is quite rare. Bibliography. Dieterlen (1976b, 1987 2013g), Kasangaki et al. (2003), Verheyen et al. (1996).
Figure 13. Oedothorax paludigena Simon, 1926. A–E, male left palp. A, retrolateral view. B, prolateral view. C, dorsal view. D, ventral view. E, apical view. F, G, epigyne. F, ventral view. G, external morphology. H, male spinnerets. I, female left spinnerets. Scale bar 0.1 in Evolution of nuptial-gift-related male prosomal structures: taxonomic revision and cladistic analysis of the genus Oedothorax (Araneae: Linyphiidae: Erigoninae)
Figure 13. Oedothorax paludigena Simon, 1926. A–E, male left palp. A, retrolateral view. B, prolateral view. C, dorsal view. D, ventral view. E, apical view. F, G, epigyne. F, ventral view. G, external morphology. H, male spinnerets. I, female left spinnerets. Scale bar 0.1 mm.
› Figure 22. A, B, Tegenaria capolongoi; C-K, Tegenaria parmenidis; L-S, Tegenaria circeoensis sp. nov. Left male palp in ventral (E, N), retrolateral (F, O), and dorsal views (G, P); epigyne in ventral (A, C, Q, S) and vulva in dorsal view (B, D, R); intraspecific epigynal morphological variation (S); face of male in frontal view (J); spinnerets in ventral view (K); habitus (H) of male in dorsal and sternum in ventral view (I); carapace and abdomen of male in dorsal view (L, M). Scale bars = 0.5 mm (except 1 mm for H). in Phylogeny and taxonomy of European funnel-web spiders of the Tegenaria-Malthonica complex (Araneae: Agelenidae) based upon morphological and molecular data
› Figure 22. A, B, Tegenaria capolongoi; C-K, Tegenaria parmenidis; L-S, Tegenaria circeoensis sp. nov. Left male palp in ventral (E, N), retrolateral (F, O), and dorsal views (G, P); epigyne in ventral (A, C, Q, S) and vulva in dorsal view (B, D, R); intraspecific epigynal morphological variation (S); face of male in frontal view (J); spinnerets in ventral view (K); habitus (H) of male in dorsal and sternum in ventral view (I); carapace and abdomen of male in dorsal view (L, M). Scale bars = 0.5 mm (except 1 mm for H).
FIGURE. Landscapes and vegetation types at Quiçama National Park. A. Wooded savannah with Adansonia digitata. B. Mosaic of wooded savannah and thicket. C. Grassy savannah. D. Slope with thicket. E. Grassy savanna with Setaria welwitschi. F. Wooded savannah. G. Cuanza River shores with herbaceous vegetation. H. Herbaceous vegetation on the banks of the Cuanza River and slope with open forest. I. Coastal sands. J. Mangrove at the Cuanza River estuary, with Rhizophora racemosa. (Photographs by the authors). in An annotated checklist of the vascular flora of Quiçama National Park, Angola
FIGURE. Landscapes and vegetation types at Quiçama National Park. A. Wooded savannah with Adansonia digitata. B. Mosaic of wooded savannah and thicket. C. Grassy savannah. D. Slope with thicket. E. Grassy savanna with Setaria welwitschi. F. Wooded savannah. G. Cuanza River shores with herbaceous vegetation. H. Herbaceous vegetation on the banks of the Cuanza River and slope with open forest. I. Coastal sands. J. Mangrove at the Cuanza River estuary, with Rhizophora racemosa. (Photographs by the authors).
FIGURE. Selected species from the flora of Quiçama National Park. A. Adansonia digitata. B. Euphorbia candelabrum. C. Acacia welwitschii. D. Hyphaene guineensis. E. Rhizophora racemosa. F. Guibourtia carrissoana var. gossweileri. G. Tessmannia camoneana. H. Sterculia setigera. I. Carissa spinarum. J. Boscia urens. K. Maerua angolensis. L. Grewia villosa. M. Sesuvium crithmoides. N. Aloe zebrina. O. Barleria elegans. P. Setaria welwitschii. (Photographs by the authors). in An annotated checklist of the vascular flora of Quiçama National Park, Angola
FIGURE. Selected species from the flora of Quiçama National Park. A. Adansonia digitata. B. Euphorbia candelabrum. C. Acacia welwitschii. D. Hyphaene guineensis. E. Rhizophora racemosa. F. Guibourtia carrissoana var. gossweileri. G. Tessmannia camoneana. H. Sterculia setigera. I. Carissa spinarum. J. Boscia urens. K. Maerua angolensis. L. Grewia villosa. M. Sesuvium crithmoides. N. Aloe zebrina. O. Barleria elegans. P. Setaria welwitschii. (Photographs by the authors).
Figure 8. A, C, E, G, I, K, M, O, Q, S, U, W in Phylogeny of the new subfamily Cladodinae: neotenic fireflies from the Neotropics (Coleoptera: Lampyridae)
Figure 8. A, C, E, G, I, K, M, O, Q, S, U, W, Sternum VIII; B, D, F, H, J, L, N, P, R, T, V, X, Pygidium; A, B, Ledocas parallelus; C, D, Ledocas pikillactanus sp. nov.; E, F, Andecladodes cosangensis; G, H, Andecladodes ovalis; I, J, Dryptelytra cayennensis; K, L, Dryptelytra pampahermosae sp. nov.; M, N, Dodacles elegans; O, P, Dodacles niger; Q, R, Dodacles lateralis; S, T, Nyctocrepis malleri; U, V, Brasilocladodes illigeri; W, X, Brasilocladodes carinatus. Scales: 1 mm.
FIGURE 2. Magnolia quichensis. A. Developing fruit. B. Mature fruit before dehiscence, C-D. Fruit during dehiscence. E. Seeds after sarcotesta removal. F-G in Two new species of Magnolia (Magnoliaceae) from Alta Verapaz and Quiché, Guatemala
FIGURE 2. Magnolia quichensis. A. Developing fruit. B. Mature fruit before dehiscence, C-D. Fruit during dehiscence. E. Seeds after sarcotesta removal. F-G. Fruit axis and carpels without seeds, dorsal and ventral side, showing the axis. Photographs: Erick Tribouillier.
FIGURE. FISH karyotype pattern diagram of 8 diploid hyacinth cultivars a.'Gypsy Queen'; b.'Purple sensation' c.'Pink pearl' d.'Gypsy princess' e.'Blue pearl' f.'Odysseus' g.'Yellowstone' h.'Red pearl' Red point: 45S rDNA loci; Green point: 45S rDNA loci; Yellow point: ITR sites in Physical mapping of 45S and 5S rDNA and telomeric repeat loci in eight diploid hyacinth cultivars
FIGURE. FISH karyotype pattern diagram of 8 diploid hyacinth cultivars a.'Gypsy Queen'; b.'Purple sensation' c.'Pink pearl' d.'Gypsy princess' e.'Blue pearl' f.'Odysseus' g.'Yellowstone' h.'Red pearl' Red point: 45S rDNA loci; Green point: 45S rDNA loci; Yellow point: ITR sites
FIGURE. Results of FISH physical mapping on metaphase chromosomes of hyacinth 1. The distribution of 45S rDNA (red arrow) and 5S rDNA (green arrow) signals on the chromosomes; 2. The distribution of telomeric repeats signals on the chromosomes; 3. Chromosome karyotype with 45S rDNA and 5S rDNA; 4. Chromosome karyotype with telomeric repeats. A. 'Gypsy Queen' B.'Purple sensation' C.'Pink pearl' D.'Gypsy princess' E.'Blue pearl' F.'Odysseus' G.'Yellow stone' H.'Red pearl' in Physical mapping of 45S and 5S rDNA and telomeric repeat loci in eight diploid hyacinth cultivars
FIGURE. Results of FISH physical mapping on metaphase chromosomes of hyacinth 1. The distribution of 45S rDNA (red arrow) and 5S rDNA (green arrow) signals on the chromosomes; 2. The distribution of telomeric repeats signals on the chromosomes; 3. Chromosome karyotype with 45S rDNA and 5S rDNA; 4. Chromosome karyotype with telomeric repeats. A. 'Gypsy Queen' B.'Purple sensation' C.'Pink pearl' D.'Gypsy princess' E.'Blue pearl' F.'Odysseus' G.'Yellow stone' H.'Red pearl'
FIGURE. Cladosporium bambusicola (VIC 44237, holotype). A–D. Colonies on A. Potato dextrose agar; B. Malt extract agar; C. Oatmeal agar; D. Synthetic nutrient-poor agar, after 14 days at 25 ºC, under near-ultraviolet light, respectively. E–F. Conidiophore and bigger conidia. G–H. Conidiophores and smaller conidia. I. Stromatic hyphal aggregation. J–K. Micronematous conidiophores. L. Ramoconidia and conidia. M. Microcyclic conidiogenesis. Scale bars: E = 50 µM; F–M = 20 µM. in Six new species of Cladosporium associated with decayed leaves of native bamboo (Bambusoideae) in a fragment of Brazilian Atlantic Forest
FIGURE. Cladosporium bambusicola (VIC 44237, holotype). A–D. Colonies on A. Potato dextrose agar; B. Malt extract agar; C. Oatmeal agar; D. Synthetic nutrient-poor agar, after 14 days at 25 ºC, under near-ultraviolet light, respectively. E–F. Conidiophore and bigger conidia. G–H. Conidiophores and smaller conidia. I. Stromatic hyphal aggregation. J–K. Micronematous conidiophores. L. Ramoconidia and conidia. M. Microcyclic conidiogenesis. Scale bars: E = 50 µM; F–M = 20 µM.
FIGURE. Cladosporium aulonemiae (VIC 44413, holotype). A–D. Colonies on A. Potato dextrose agar; B. Malt extract agar; C. Oatmeal agar; D. Synthetic nutrient-poor agar, after 14 days at 25 ºC, under near-ultraviolet light, respectively. E–G. Macronematous conidiophores and numerous conidia; H–I. Formation of loci in close succession; I. Spread polysaccharide-like material; J. Micronematous conidiophores; K. Ramoconidia and conidia; L. Microcyclic conidiogenesis; M. Stromatic hyphal aggregation. Scale bars: E–M = 20 µM. in Six new species of Cladosporium associated with decayed leaves of native bamboo (Bambusoideae) in a fragment of Brazilian Atlantic Forest
FIGURE. Cladosporium aulonemiae (VIC 44413, holotype). A–D. Colonies on A. Potato dextrose agar; B. Malt extract agar; C. Oatmeal agar; D. Synthetic nutrient-poor agar, after 14 days at 25 ºC, under near-ultraviolet light, respectively. E–G. Macronematous conidiophores and numerous conidia; H–I. Formation of loci in close succession; I. Spread polysaccharide-like material; J. Micronematous conidiophores; K. Ramoconidia and conidia; L. Microcyclic conidiogenesis; M. Stromatic hyphal aggregation. Scale bars: E–M = 20 µM.
FIGURE 4. Impatiens piufanensis var. piufanensis A habitat B−D inflorescences E−G in Impatiens piufanensis var. villosa (Balsaminaceae), a new variety from Hubei and Hunan, China
FIGURE 4. Impatiens piufanensis var. piufanensis A habitat B−D inflorescences E−G flower's detailed morphology H inflorescence with two young fruits and one flower I dissection of a flower. (Scale bars: G−I: 2 cm.)
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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