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164 results for “Brazilian Atlantic rainforest”
Figure 3 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 3. Passalus (Passalus) lockerum sp. nov. holotype male: (a) frontal area and central tubercle detail, frontal view; (b) head and pronotum detail, lateral.
Figure 2 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 2. Passalus (Passalus) lockerum sp. nov. holotype male: (a) labrum, head and pronotum detail, dorsal; (b) frontal area and central tubercle detail, dorsal.
FIGURE 1 in A new species of Mecomera Audinet-Serville earwig (Dermaptera: Spongiphoridae) from the Brazilian Atlantic Rainforest
FIGURE 1. Mecomera ze sp. nov., male holotype. A) Dorsal habitus. B) Ventral habitus. C) Antennae, head and pronotum. D, E) Tenth tergite and base of cerci. F) Pygidium showing sculpture of posterior edge.
FIGURE 3 in A new species of Mecomera Audinet-Serville earwig (Dermaptera: Spongiphoridae) from the Brazilian Atlantic Rainforest
FIGURE 3. Mecomera ze sp. nov., male genitalia. A) Ventral view. B) Dorsal view. C) Ventral view in close up.
FIGURE 2 in A new species of Mecomera Audinet-Serville earwig (Dermaptera: Spongiphoridae) from the Brazilian Atlantic Rainforest
FIGURE 2. Mecomera ze sp. nov., female paratype. A) Dorsal habitus. B) Cerci. C, D) Tenth tergite and pygidium.
FIGURE 1. Thismia mantiqueirensis Engels & E.C in Thismia mantiqueirensis (Thismiaceae), a new species of Brazilian Atlantic Rainforest
FIGURE 1. Thismia mantiqueirensis Engels & E.C.Smidt sp. nov. A. Habit. B. Detail of stem in transversal section. C. Leaf. D. Flower in sagittal section. E. Detail of stigma. F. Frontal view of distended tepals and upper disc of the floral tube. G. Detail of tepal lamellae. H. Detail of trichomes from abaxial surface of tepals. I. Detail of trichomes of the adaxial surface of tepals. J. Anther in frontal view. K. Anther in lateral view. L. Mature fruit and leaves in lateral view. M. Mature fruit in dorsal view. Drawn by M.E. Engels based on the type.
FIGURE 2. Thismia mantiqueirensis Engels & E.C in Thismia mantiqueirensis (Thismiaceae), a new species of Brazilian Atlantic Rainforest
FIGURE 2. Thismia mantiqueirensis Engels & E.C.Smidt sp. nov. A. Habit in litter, individuals in blooming and in bud. B. Detail of flower in lateral view. C. Detail of flower in diagonal view, evidencing the upper disc of the floral tube and perianth lamellae. D. Habit in litter of flowering and fruiting individual. Photos: B by M.T. Moroti and A, C, D and E by E. Muscat, all photos from the type material.
FIGURE 4 in Gibellula aurea sp. nov. (Ascomycota, Cordycipitaceae): a new golden spiderdevouring fungus from a Brazilian Atlantic Rainforest
FIGURE 4. Genetic distance within the genus Gibellula. Heatmaps were generated with sequences from each genomic region obtained from GenBank and the specimens from this study. Genetic distances between sequences are displayed from the lowest (red) to the highest (blue) distance. (a) Genetic distance within the small nuclear ribosomal subunit (SSU); (b) within the large nuclear ribosomal subunit (LSU); (c) translation elongation factor 1-α (TEF); and (d) RNA polymerase II second largest subunit (RPB2). Closer sequences are connected by the dendrogram on top and left in each heatmap.
FIGURE 3 in Gibellula aurea sp. nov. (Ascomycota, Cordycipitaceae): a new golden spiderdevouring fungus from a Brazilian Atlantic Rainforest
FIGURE 3. Placement of Gibellula aurea within the genus. Phylogenetic trees were based on concatenated sequences of SSU, LSU, TEF, and RPB2 markers. This tree topology resulted from a Maximum Likelihood, although Bayesian Inference displayed the same topology for most of the clades (Fig. S1). Numbers on branches indicate bootstrap values (ML>50%) followed by posterior probabilities (BI>0.70). Nucleotide substitutions per site are indicated by the scale bar. The phylogenetic tree includes 33 SSU, 63 LSU, 77 TEF, and 37 RPB2 sequences. Sequences from GenBank are exhibited by the name followed by their voucher numbers. For G. aurea specimens sequenced in this study, we show the name in bold (code: LBMCF). Formerly described species that split into single clades were also highlighted. The species Hevansia novoguineensis (NHJ 11923) was used as an outgroup.
FIGURE 2 in Gibellula aurea sp. nov. (Ascomycota, Cordycipitaceae): a new golden spiderdevouring fungus from a Brazilian Atlantic Rainforest
FIGURE 2. Diversity of host spiders parasitized by Gibellula aurea. (a) and (b) Corinnidae; but differ by abdomen shape, body size, and shape of the front legs; (c) Macrophyes pacoti (Anyphaenidae); (d) Anyphaenidae. Scale bars: a, b, c, d = 1 mm.
FIGURE 1 in Gibellula aurea sp. nov. (Ascomycota, Cordycipitaceae): a new golden spiderdevouring fungus from a Brazilian Atlantic Rainforest
FIGURE 1. Morphological description of Gibellula aurea. (a) Spider Macrophyes pacoti (Anyphaenidae) parasitized by G. aurea exhibiting one synnema (arrow) growing from the host's abdomen. (b–g) G. aurea visualized in the light microscope and (h–l) in the fluorescent microscope with UV light. (b, h) Inflated and fertile tip of synnema; (c) Conidiophore, stipe with verrucose wall, conidial head spherical; (d) Conidial head globose, vesicle ellipsoidal, metulae ellipsoidal, and phialides cylindrical; (e, j) Conidia ellipsoidal, with apiculate ends; (f, i) Granulomanus-like conidiophores; (g) Conidiogenous cells; (k) Spider leg (brown) covered by hyphae (blue) at the beginning of the infection; (l) Setae of spider leg involved by fungal hyphae. Scale bars: b, k, h = 100 µm, l = 50 µm, c, d, e, f, g, i, j = 10 µm.
FIGURE 5 in Gibellula aurea sp. nov. (Ascomycota, Cordycipitaceae): a new golden spiderdevouring fungus from a Brazilian Atlantic Rainforest
FIGURE 5. Intra- and interspecific genetic distances among sequences. (a) Proportion of intra- and interspecific of each genomic region (SSU, LSU, TEF and RPP2); (b) interspecific genetic distances among the sequences identified at the species level within the closest clade to Gibellula aurea.
FIGURE 2 in Macrolepiota capelariae (Agaricaceae, Basidiomycota): a new species from the Brazilian Atlantic Rainforest with extended records to Argentina and Mexico
FIGURE 2. Macrolepiota capelariae (SP513052, holotype). A. Young basidiomata. B. Mature basidioma. C. Detail of the lamellae. D. Detail of the annulus. E. Detail of the stipe base. Scale bars = 20 mm. Photos by D.A. Zabin.
FIGURE 4 in Macrolepiota capelariae (Agaricaceae, Basidiomycota): a new species from the Brazilian Atlantic Rainforest with extended records to Argentina and Mexico
FIGURE 4. Macrolepiota capelariae (SP513052, holotype). A. Mature basidioma, a. Detail of the pileus surface. B. Apical thick-walled elements of the pileus covering. C. Pileus covering. D. Basidia. E. Cheilocystidia. F. Basidiospores. Scale bars: A/a = 10 mm; B–F = 10 µm. Drawings: A/a by K. Sousa, B–F original by C.C. Nascimento and inked by K. Sousa.
FIGURE 3 in Macrolepiota capelariae (Agaricaceae, Basidiomycota): a new species from the Brazilian Atlantic Rainforest with extended records to Argentina and Mexico
FIGURE 3. Putative records of Macrolepiota capelariae outside the type locality. Data from GBIF/iNaturalist and Mushroom Observer. A–K. Brazil (A, J, K: Rio de Janeiro, RJ; B: Rio Branco, AC; C: Lajeado, RS; D: Jaraguá do Sul, SC; E: Florianópolis, SC; F: Palmeira, PR; G: S"o Sebasti"o da Grama, SP; H: Vitorino, PR; I: Senador Guiomard, AC). L. Mexico (Tepoztlán, Morelos). Brazilian states abbreviations: AC = Acre, PR = Paraná, RJ = Rio de Janeiro, RS = Rio Grande do Sul, SC = Santa Catarina, SP = S"o Paulo. Photo credits: A. ©Rogerio Dias, B. ©Gabriel Fernando, C. ©Edith Mello, D. ©fernandotorres1978, E. ©Mariana Lopes, F. ©andersonwarkentin, G. ©Café Gato-Mourisco, H. ©Alan Lucas Hentz Policarpo, I. ©Mayk Oliveira, J. ©rogerriodias, K. ©Alessandro Valente Vieira, L. ©Alejandro Tux.
FIGURE 1 in Macrolepiota capelariae (Agaricaceae, Basidiomycota): a new species from the Brazilian Atlantic Rainforest with extended records to Argentina and Mexico
FIGURE 1. Best tree from the ML analysis of Macrolepiota based on nrITS data and rooted with Leucoagaricus leucothites and L. nympharum. The sequences generated in this work are in bold. Support values (BS>70% and PP>0.90) are shown near the node branches. Root length has been reduced to facilitate graphical representation. A dash (-) indicates that the support values for the clade are below those indicated above. *** indicates taxon names modified according to Vizzini et al. (2011).
FIGURE 9 in The Austral Predator Katydid-new species of Megatympanon Piza, 1958 (Orthoptera: Tettigoniidae: Listroscelidinae: Terpandrini) from the Brazilian Atlantic Rainforest
FIGURE 9. Map of Megatympanon species geographical records. Area of the Serra do Mar coastal forests modified from WWF.
FIGURE 8 in The Austral Predator Katydid-new species of Megatympanon Piza, 1958 (Orthoptera: Tettigoniidae: Listroscelidinae: Terpandrini) from the Brazilian Atlantic Rainforest
FIGURE 8. Megatympanon austroraptorum sp. nov., male specimen alive from Morro Reuter, Rio Grande do Sul (photo: Ryan Alexander)
FIGURE 7 in The Austral Predator Katydid-new species of Megatympanon Piza, 1958 (Orthoptera: Tettigoniidae: Listroscelidinae: Terpandrini) from the Brazilian Atlantic Rainforest
FIGURE 7. Map of Megatympanon austroraptorum sp. nov., stridulatory file of male. A: left file; B: right file.
FIGURE 6 in The Austral Predator Katydid-new species of Megatympanon Piza, 1958 (Orthoptera: Tettigoniidae: Listroscelidinae: Terpandrini) from the Brazilian Atlantic Rainforest
FIGURE 6. Megatympanon austroraptorum sp. nov., right tegmina of holotype male in dorsal view. Abbreviations: AP: Posterior anal vein; AA: anterior anal vein; CuA: anterior cubital vein; CuP: posterior cubital vein; MA: anterior median vein; MP: posterior median vein; R: radial vein; Sc: subcostal vein.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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.