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37 results for “corticolous”
FIG. 6 in Changes in functional and taxonomic diversity and composition of corticolous lichens in an altitudinal gradient in Colombia
FIG. 6. — Community Weighted Means (CWMs) of functional lichen traits along the altitudinal gradient in the Chocó region of Valle del Cauca, Colombia: A, crustose thallus; B, crustose thallus by microhabitat; C, foliose thallus; D, fruticose thallus; E, fruticose thallus by microhabitat; F, rhizines by microhabitat; G, cyanobacterial photobiont; H, vegetative propagules; I, ascoma; J, ascospore septation (septate, muriform and simple); K, thickness of the ascospore wall; L, size of the ascospores.
FIG. 7 in Changes in functional and taxonomic diversity and composition of corticolous lichens in an altitudinal gradient in Colombia
FIG. 7. — Functional diversity along the altitudinal gradient: A, relative Rao Index; B, functional Dominance.
FIG. 4 in Changes in functional and taxonomic diversity and composition of corticolous lichens in an altitudinal gradient in Colombia
FIG. 4. — Scatter plot for the alpha lichen diversity and tree density ratio in each study site in the Chocó region of Valle del Cauca, Colombia.
FIG. 2 in Changes in functional and taxonomic diversity and composition of corticolous lichens in an altitudinal gradient in Colombia
FIG. 2. — Continuation.
FIGURE. 2 in Ten new species of corticolous pyrenocarpous lichens from NE Brazil
FIGURE. 2. Pyrenula abditicarpa (isotype ABL); A, habitus showing depressed ostioles; B, ascospores; C–D, P. albonigra (isotype ABL); C, habitus showing ascomata covered by thallus except for a wide black spot around the ostiole; D, ascospores. A & C: bar = 0.5 mm; B: bar = 20 μm; D: bar = 5 μm.
FIGURE. 4 in Ten new species of corticolous pyrenocarpous lichens from NE Brazil
FIGURE. 4. Pyrenula celaticarpa (isotype ABL); A, habitus showing convex, dark red to almost black ostioles; B–C, ascospores; D–E, P. inspersicollaris (isotype ABL); D, ascospore; E, habitus showing a raised shared ostiole surrounded by immersed ascomata;. A, E: bar = 0.5 mm; B: bar = 10 μm; C–D: bar = 5 μm.
FIGURE 3 in Ten new species of corticolous pyrenocarpous lichens from NE Brazil
FIGURE 3 Pyrenula aurantiacorubra; A, field picture of a tree covered with the species in the field; B, ascospores showing the variation in size even within a single ascus (isotype ABL); C, habitus showing brown, raised ascomata (isotype ABL); D–F, P. cinnabarina (isotype ABL); D, twig
FIGURE 1 in Ten new species of corticolous pyrenocarpous lichens from NE Brazil
FIGURE 1. Anisomeridium globosum (isotype ABL); A, habitus showing superficial ascomata; B, ascus. A: bar = 0.5 mm; B: bar = 10 μm.
FIGURE 5 in Ten new species of corticolous pyrenocarpous lichens from NE Brazil
FIGURE 5. Pyrenula musaespora (isotype ABL); A, habitus showing black ascomata emerging from ochraceous thallus; B, ascospore; C–D, P. rubrolateralis (isotype ABL); C, habitus showing a red ostiole; D, ascospores; E–F, Thelenella lateralis (isotype ABL); E, habitus
FIGURE. Typical habitats of Ramalina species on northern South America. A. High paramo, Laguna Anteojos, Sierra Nevada de Merida, where grows on rocks R. anteojina at 4100 m. B. Sub-paramo (timberline), La Aguada, Sierra Nevada de Merida, 3100 m, where are found R. dictyota and R. reducta on shrubs. C. Andean cloud forest, La Victoria, Sierra Nevada de Merida where R. cochlearis, R. cumanensis and R. victoriana are found growing as epiphytes. D. Populations of R. usnea, R. morrocoyensis and R. paradisensis growing as epiphytes on mangroves and Suriana maritima at sea level, National Park Morrocoy, state Falcón; the latter two species are known only from this locality. E. Ramalina usnea is the only species of this genus reported from the Alto Orinoco, Amazonas, near La Esmeralda, 150 m, growing as corticolous in submontane forests, at the top of the picture the Cerro Duida. F. Xerophytic forests from the National Park Cerro Santa Ana, state Falcón, where Ramalina santanensis and R. microphylla are known only growing on soil and rocks at 200–400 m. Photos V. Marcano. in The genus Ramalina Acharius (Ascomycota, Lecanoromycetes, Ramalinaceae) in northern South America
FIGURE. Typical habitats of Ramalina species on northern South America. A. High paramo, Laguna Anteojos, Sierra Nevada de Merida, where grows on rocks R. anteojina at 4100 m. B. Sub-paramo (timberline), La Aguada, Sierra Nevada de Merida, 3100 m, where are found R. dictyota and R. reducta on shrubs. C. Andean cloud forest, La Victoria, Sierra Nevada de Merida where R. cochlearis, R. cumanensis and R. victoriana are found growing as epiphytes. D. Populations of R. usnea, R. morrocoyensis and R. paradisensis growing as epiphytes on mangroves and Suriana maritima at sea level, National Park Morrocoy, state Falcón; the latter two species are known only from this locality. E. Ramalina usnea is the only species of this genus reported from the Alto Orinoco, Amazonas, near La Esmeralda, 150 m, growing as corticolous in submontane forests, at the top of the picture the Cerro Duida. F. Xerophytic forests from the National Park Cerro Santa Ana, state Falcón, where Ramalina santanensis and R. microphylla are known only growing on soil and rocks at 200–400 m. Photos V. Marcano.
FIGURE 4. Legs and coxosternal region. A and B in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 4. Legs and coxosternal region. A and B, Legs, dorsal aspect, of modern ricinuleid (Ricinoididae Ewing, 1929, schematic representation) (A) and Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137), dextral leg IV (B). C and D, Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137), coxosternal region (C) (legs identified by Roman numerals); sinistral leg III, prolateral aspect (D) (note modified first tarsomere and unmodified second tarsomere). Abbreviations: cx, coxa; fe, femur; me, metatarsus; pa, patella; st, sternum; ti, tibia; tr, trochanter; tr1, trochanter 1; first and second, proximal tarsomeres.
FIGURE 3 in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 3. Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137). A, Schematic representation of soma, showing how both tagmata presumably connected by exposed pedicel. B, Prosoma, dorsal aspect, showing raptorial pedipalp, and legs I and II. C, Opisthosoma, posterior part, dorsal aspect (note median and lateral sclerites of tergites XII and XIII). D and E, Dextral pedipalp, retroventral aspect (D), and closeup of tarsus (movable finger) and lamellate projections (E). F, Sinistral pedipalp, distal segments, dorsal aspect. G and H, Dextral leg I femur, dorsal (G) and prodorsal (H) aspects. I, Sinistral leg IV tarsus, prolateral aspect. Abbreviations: ca, carapace; cu, cucullus; fe, femur; me, metatarsus; pa, patella; ta, tarsus (movable finger); ti, tibia; tr, trochanter; tr2, trochanter 2.
FIGURE 1 in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 1. Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137). A and B, Habitus, dorsal (A) and ventral (B) aspects. C, Prosoma, anterodorsal aspect. D, Coxosternal region.
Figs. 3A-D. A in New records to Brazil and Southern Hemisphere of corticolous and saxicolous lichens from the semiarid region in Ceará State
Figs. 3A-D. A. Habitus of Heppia despreauxii; B. Habitus of Toninia massata; C. Siliceous rock with influence of run-off, showing the black Peltula impressa close to the gully in the right and the dark brown P. obscurans higher up, mostly to the left and the extreme right; the right is Caloplaca ochraceoflava; no lichens in the gully in the center; D. Conidia of Strigula laureriformis showing the long flagellae. Bars: Figs. 3A, B = 1 mm; Fig. C = 10 μm.
Figs. 2A-E. A in New records to Brazil and Southern Hemisphere of corticolous and saxicolous lichens from the semiarid region in Ceará State
Figs. 2A-E. A. Pedra da Galinha, showing the abundance of yellow Caloplaca species; B. Habitus of several Caloplaca species in close contact: Caloplaca araguana (right hand), C. diplacia (left hand) and C. ochraceoflava (upper center); C. Habitus of undescribed Caloplaca species with Lecanora-like apothecia and pustules; D. Habitus of undescribed Caloplaca species with Lecanora-like apothecia but without pustules; E. Habitus of probably undescribed Caloplaca in the citrina aggregate. Bars = 1 mm.
Fig. 1 in New records to Brazil and Southern Hemisphere of corticolous and saxicolous lichens from the semiarid region in Ceará State
Fig. 1. Map of Ceará State, and the representation of the sampled sites.
FIGURE 2 in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 2. Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137). A and B, Opisthosoma, dorsal (A) and ventral (B) aspects. C and D, Sinistral leg III, prolateral aspect (C) and closeup (D).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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