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1,342 results for “Lichen”
FIGURES 3–5 in A new species of the lichen moth genus Tigricollis Singh & Kirti, 2016 (Lepidoptera: Erebidae: Arctiinae) from eastern Indonesia
FIGURES 3–5. Tigricollis drozdovi sp. nov. from Flores Island, Indonesia: 3) male genitalia [holotype RMBH Sph0893]; 4) aedeagus [holotype RMBH Sph0893]; the red arrow shows a spinose ring (annulus), which was separated from juxta; 5) female genitalia [paratype RMBH Sph0906]. Photos: Elizaveta A. Spitsyna and Vitaly M. Spitsyn.
FIGURE 1 in A new species in the lichen genus Vahliella from the Canary Islands, including a key to Vahliellaceae, Pannariaceae, and Coccocarpiaceae in Macaronesia
FIGURE 1. Vahliella isidioidea, part of holotype. Habit showing thallus and apothecia. Scale bar: 0.5 mm.
FIGURE 1 in A new species of Heterodermia (Ascomycota, Physciaceae) from India, along with a new record and range extension of lichenized fungi in India
FIGURE 1. Heterodermia himalayana (holotype) a. Thallus with phyllidia/dorsiventral lobules (Scale = 5 mm); b. Inset image showing yellow medulla (Scale = 2 mm).
FIGURE 2 in Molecular evidence for the occurrence of the lichen genus Biatora (Lecanorales, Ascomycota) in the Southern Hemisphere
FIGURE 2. Biatora aff. rufidula (Rodriguez F. 2613). habit: A, thallus with young and mature apothecia, B, mature apothecia; exciple: C, mounted in water, D, mounted in Lugol solution; E, asci showing amyloid Biatora-like ascus apex (mounted in K/I); F, ascospores. Scales: A=0.5mm, B =0.25 mm, C–D=50 µm, E–F=10 µm.
FIGURE 1. Bayesian consensus phylogram obtained from 16 in Molecular evidence for the occurrence of the lichen genus Biatora (Lecanorales, Ascomycota) in the Southern Hemisphere
FIGURE 1. Bayesian consensus phylogram obtained from 16 OTUs and ITS gene loci of the Ramalinaceae clade. Cliostomum griffithii was used as outgroup. Support values (in bold) are given as "BP/PP". Biatora from South America is placed within the rufidula clade with a ML bootstrap value of 99% and a posterior probability of 1.0.
FIGURE 6 in Siphula paramensis V. Marcano & L. Castillo (Icmadophilaceae, Lichenized Fungi), a new species from the high paramo in Venezuela
FIGURE 6. Typical habitat of Siphula paramensis on the Sierra Nevada de Merida at the Venezuelan Andes, 3800 m. A. Paramo Los Chorros valley. B. Steep moraine slope. Arrows indicate the site of the populations.
FIGURE 1 in Siphula paramensis V. Marcano & L. Castillo (Icmadophilaceae, Lichenized Fungi), a new species from the high paramo in Venezuela
FIGURE 1. Habit of Siphula paramensis (V. Marcano, L. Castillo & D. Abreu 21–65 holotype); scale = 0.6 cm.
FIGURE 3 in Siphula paramensis V. Marcano & L. Castillo (Icmadophilaceae, Lichenized Fungi), a new species from the high paramo in Venezuela
FIGURE 3. Comparison of cross sections in Siphula paramensis (A and B) and S. subsimplex (C and D). A–B. Specimens showing thin cortex, continuous algal layer and compact medulla (V. Marcano, L. Castillo & D. Abreu 21–65 holotype); A, scale = 0.3 mm; B, scale = 0.4 mm. C–D. Thicker cortex, algal layer sometimes interrupted, and compact medulla with cells occasionally interspersed (V. Marcano CHU-28-05 holotype); scales = 0.4 mm.
FIGURE 5 in Siphula paramensis V. Marcano & L. Castillo (Icmadophilaceae, Lichenized Fungi), a new species from the high paramo in Venezuela
FIGURE 5. Characteristic substrate of Siphula paramensis growing on exposed, granitic rock surfaces in steep slope, Paramo Los Chorros valley, Sierra Nevada de Mérida, Venezuelan Andes.
FIGURE 2 in Siphula paramensis V. Marcano & L. Castillo (Icmadophilaceae, Lichenized Fungi), a new species from the high paramo in Venezuela
FIGURE 2. Comparative details of lobes in Siphula paramensis (A and B) and S. subsimplex (C and D). A–B. Specimens exhibiting rounded, rugose, entire apices (V. Marcano, L. Castillo & D. Abreu 21–65, holotype); scale = 0.6 mm. C–D. Secondary, erect, more or less terete divisions emerging from the apices (V. Marcano CHU–28–05, holotype); C, scale 0.4 mm; D, scale = 0.5 mm.
PLATE 1 in Aspiciliella pakistanica a new lichen species (Megasporaceae, Pertusariales, Ascomycota) from Pakistan
PLATE 1 Morpho–anatomy of Aspiciliella pakistanica sp. nov. A: LAH36684 (Holotype; Pir Chinasi; PC15) B: LAH36686 (Paratype; Kaghan; K 15) C: LAH Herbarium specimen (colour changed; areoles) D: Section of thallus.
FIGURE 1 in Aspiciliella pakistanica a new lichen species (Megasporaceae, Pertusariales, Ascomycota) from Pakistan
FIGURE 1. Molecular phylogenetic analysis of Aspiciliella pakistanica sp. nov.by the Maximum Likelihood method based on rDNA sequences, including ITS1, 5.8S and ITS2. Numbers below branch node represent ML bootstrap (>50%) based on 1000 replicates. Sequences generated from Pakistani collections are marked with
FIGURE 1 in Phaeorrhiza (Physciaceae), a new lichen genus record to China
FIGURE 1. Morphology and anatomy of Phaeorrhiza nimbosa. a–c Thallus and apothecia. a Thallus and apothecia growing in the open. b Thallus surface covered with pruina. c Thallus and apothecia surface covered with pruina. d The lower surface of thallus and rhizoyphae. e Section of apothecia. f Beltraminia-type ascospores. Scale bars: 3 mm (a–c); 0.2 mm (d); 50 μm (e); 10 μm (f).
FIGURE 3 in Phaeorrhiza (Physciaceae), a new lichen genus record to China
FIGURE 3. Bayesian Inference (BI) phylogeny of the genus Phaeorrhiza and related genera of Physicaceae, based on combined nrITS, mtSSU and nrLSU sequences. ML bootstrap value ≥ 70% and posterior probabilities ≥ 0.95 from the Bayesian analysis are given adjacent to nodes.
FIGURE 2 in Phaeorrhiza (Physciaceae), a new lichen genus record to China
FIGURE 2. Morphology and anatomy of Phaeorrhiza sareptana var. sphaerocarpa a–c Thallus and apothecia. a Scattered thallus with non-pruinose surface in open area. b Scattered thallus with pruinose surface. c Continuous thallus with pruinose surface in the shade. d Beltraminia-type ascospores. e Section of apothecia. f Paraphyses. Scale bars: 3 mm (a–c); 10 μm (d); 50 μm (e); 20 μm (f).
FIGURES and. Crystal-like deposition on the surface of medullary hyphae, probably due to lichen substances. 21. Ramalina subcalcarata, scale = 8.65 µm. 22. Ramalina pusiola, scale = 10.35 µm. in The genus Ramalina Acharius (Ascomycota, Lecanoromycetes, Ramalinaceae) in northern South America
FIGURES and. Crystal-like deposition on the surface of medullary hyphae, probably due to lichen substances. 21. Ramalina subcalcarata, scale = 8.65 µm. 22. Ramalina pusiola, scale = 10.35 µm.
FIGURE 5 in Two new species and new records of lichen-feeding darkling beetles (Coleoptera: Tenebrionidae: Helopini) from Turkey with notes on bionomics and trophic relations
FIGURE 5. Host lichens of Odocnemis rufocruralis sp. n.: A—Physcia aipolia (on Quercus branti); B—undetermined Physciaceae (on Prunus dulcis); C—the same species, damages from beetles D—habitat of Odocnemis rufocruralis, Batman Prov., woodland with Quercus brantii; E—ditto, Mardin Prov., woodland with Quercus brantii and Prunus dulcis.
FIGURE 4 in Two new species and new records of lichen-feeding darkling beetles (Coleoptera: Tenebrionidae: Helopini) from Turkey with notes on bionomics and trophic relations
FIGURE 4. Odocnemis rufocruralis sp. n., details of structure: A—apical part of left elytron (edc—epipleural dorsal carina); B—abdomen, male; C—abdomen, female (eic—epipleural inner carina); D—aedeagus dorsally; E—aedeagus ventrally; F— aedeagus laterally; G—male inner sternite VIII (gl—gland); H—spiculum gastrale.
FIGURE 1 in Two new species and new records of lichen-feeding darkling beetles (Coleoptera: Tenebrionidae: Helopini) from Turkey with notes on bionomics and trophic relations
FIGURE 1. Turkonalassus mavi sp. n., habitus and details of structure: A—habitus dorsally, male; B—habitus dorsally, female; C—habitus ventrally, male; D—male inner sternite VIII; E—aedeagus (bml—baculi of median lobe, apa—apical piece apophises); F—spiculum gastrale.
FIGURE 3 in Two new species and new records of lichen-feeding darkling beetles (Coleoptera: Tenebrionidae: Helopini) from Turkey with notes on bionomics and trophic relations
FIGURE 3. Odocnemis rufocruralis sp. n., habitus, details of structure: A—habitus dorsally, male; B—habitus ventrally, male; C—habitus dorsally, female; D—male right protibia; E—head, female; F—protrochanters, male.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.