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2,293 results for “Atlantic forests”
FIGURE 1. Behuria corymbosa. A in Following Glaziou's footsteps: rediscovery and updated description of three species of Behuria Cham. (Melastomataceae) from the Atlantic Forest (Brazil)
FIGURE 1. Behuria corymbosa. A. Habit; B. Branches with stalked glands; C. Adaxial surface of a leaf; D. Old flower and stamens; E. Lateral view of flower buds, showing the hypanthium and sepals; F. Lateral view of the fruit, showing the carpels exceeding the hypanthium length; G. Area of occurrence in Serra dos Órgãos National Park.
FIGURE 2 in A new species of Hohenbergia (Bromeliaceae) from the Atlantic Forest of Northeast Brazil
FIGURE 2. Branches of the inflorescence in the Hohenbergia ridleyi complex. A. H. ridleyi, B. H. ramageana, C. H. isepponae. Note the differences in the spikes form, spike apex and tightly imbricate spikes in H. isepponae. Illustrations by Klei Souza and Wilson Oliveira.
FIGURE 1. A–I H in A new species of Hohenbergia (Bromeliaceae) from the Atlantic Forest of Northeast Brazil
FIGURE 1. A–I H. isepponae (Rodrigo Oliveira 50 & Mendes-Silva). A. Inflorescence, B. Leaf blade, C. secondary branch of the inflorescence, D. Flower and floral bract, E. Floral bract, showing the mucronulate apex, F. Asymmetric sepal showing the mucronate apex, G. Petal with stamen, note the two longitudinal callosities reaching ¾ of the filament length, H. Flower in longitudinal section, showing the placentation of the ovules, I. Stigma. (Illustration by Klei Sousa).
FIGURE 1 in A new species of Duguetia (Annonaceae) from the Atlantic Forest of northeastern Brazil
FIGURE 1. Distribution of Duguetia sulcosa in the Jaqueira (PE), Quebrangulo, São José da Laje and Viçosa (AL).
FIGURE 3. A–F. Duguetia sulcosa. A. Immature flower. B in A new species of Duguetia (Annonaceae) from the Atlantic Forest of northeastern Brazil
FIGURE 3. A–F. Duguetia sulcosa. A. Immature flower. B. Mature flower with one petal removed to show reddish stamens. C. Connate sepals. D. Mature fruit with floral bud. E–F. Mature fruits. (B from Amorim 1769; A, C, D, E, and F from the Bazante 334, the type specimen).
FIGURE 2. A–O. Duguetia sulcosa. A–B. Habit. C in A new species of Duguetia (Annonaceae) from the Atlantic Forest of northeastern Brazil
FIGURE 2. A–O. Duguetia sulcosa. A–B. Habit. C. Abaxial surface of a leaf, detail. D–F. Flower buds. D. Side view. E. Top view. F. Trichomes. G. Mature flower without some petals and sepals. H. Bottom view of the sepals showing connate portion. I. Adaxial face of inner petal. J. Longitudinal section of floral receptacle. K. Stamen. L. Carpel. M. Fertile carpel. N. Fruit. O. Longitudinal section of fruit.
FIGURE 1. Vanilla capixaba Fraga & D.R. Couto. A. Habit. B in Two new species of Vanilla (Orchidaceae) in the Brazilian Atlantic Forest
FIGURE 1. Vanilla capixaba Fraga & D.R. Couto. A. Habit. B. Detail of the apex and adaxial surface of the leaf. C. Flower, front view. D. Dissected flower E. Detail of the apex and adaxial surface of the petal. F. Detail of the apex and abaxial surface of the lip. G. Lower view of column. H. Detail of apex of column with versatile anther, lower view. (Couto 1270).
FIGURE 4. Vanilla paulista Fraga & Pansarin. A. Habit. B. Flower, front view. C. Dissected flower D in Two new species of Vanilla (Orchidaceae) in the Brazilian Atlantic Forest
FIGURE 4. Vanilla paulista Fraga & Pansarin. A. Habit. B. Flower, front view. C. Dissected flower D. Detail of the apex and abaxial surface of the lip. E. Lateral view of the lip and column. F. Lateral view of the column. (Pansarin 727).
FIGURE 3 in Two new species of Vanilla (Orchidaceae) in the Brazilian Atlantic Forest
FIGURE 3. Map showing the geographical distribution of Vanilla capixaba (black dot) and Vanilla paulista (black square) in the southeast of Brazil.
FIGURE 2 in Two new species of Vanilla (Orchidaceae) in the Brazilian Atlantic Forest
FIGURE 2. Vegetation physiognomy and morphology of Vanilla capixaba Fraga & D.R. Couto (c–d) and Vanilla paulista Fraga & Pansarin (e–f). A. General view of the Tropical Semideciduous Forest and inselbergs of Alto Serra da Roseira, Alegre, Espírito Santo, Brazil. B. Vegetation physiognomy of the Tropical Semideciduous Forest. C. Flower of the Vanilla capixaba, front view. D. Detail of the lip apex of the Vanilla capixaba with rows of tuberculate papillae that covers almost entirely the midlobe surface. E. Flower of the Vanilla paulista, lateral view. F. Detail of the lip apex of the Vanilla paulista with rows of tuberculate papillae that covers the center of the midlobe surface. Photos: D.R. Couto (A–D), E.R. Pansarin (E–F).
FIGURE 3. Ceraceomyces basidiospores. A in Ceraceomyces atlanticus (Amylocorticiales, Basidiomycota), a new species from the Atlantic Rain Forest, Brazil
FIGURE 3. Ceraceomyces basidiospores. A) C. atlanticus, isotype; B) C. subapiculatus, holotype; C) C. tessulatus, Ryvarden 48532; D) C. tessulatus, F. Oldervik 032.05.
FIGURE 1 in Ceraceomyces atlanticus (Amylocorticiales, Basidiomycota), a new species from the Atlantic Rain Forest, Brazil
FIGURE 1. Phylogenetic reconstruction of Maximum Parsimony (MP), Maximum Likelihood (ML) and Bayesian analysis (BA) based on LSU rDNA sequence data showing the position of C. atlanticus with Amylocorticiales species. Bootstrap values (%) were generated from maximum parsimony (MP) and maximum likelihood (ML) analysis (10,000 bootstraps, respectively) and 1,000,000 generations to Bayesian analysis. Values above 50% in the MP and ML analyses and above 0.8 in the BA analysis are shown in the tree, which is rooted with Jaapia argillacea and J. ochroleuca.
FIGURE 2. Ceraceomyces atlanticus. A in Ceraceomyces atlanticus (Amylocorticiales, Basidiomycota), a new species from the Atlantic Rain Forest, Brazil
FIGURE 2. Ceraceomyces atlanticus. A) section through basidioma, B) vesicle from basal tissue, C) basidia, D) basidiospores. Isotype.
FIGURE 4. Tylopilus pygmaeus. A in Two new Tylopilus species (Boletaceae) from Northeastern Atlantic Forest, Brazil
FIGURE 4. Tylopilus pygmaeus. A—Photographs of fresh basidiomes in the field. B-C—Basidiospores; D—Basidia; E—Cystidia; F— Pileipellis; G—Stipitipellis. Bar 10 μm.
FIGURE 2 in Two new Tylopilus species (Boletaceae) from Northeastern Atlantic Forest, Brazil
FIGURE 2. Maximum likelihood (ML) tree of Tylopilus from dataset of 63 LSU sequences rooted with the outgroup (Bothia castanella). Bayesian posterior probability above 0.7 and Bootstrap values above 50% are shown.
FIGURE 3. Tylopilus dunensis. A in Two new Tylopilus species (Boletaceae) from Northeastern Atlantic Forest, Brazil
FIGURE 3. Tylopilus dunensis. A—Photographs of fresh basidiomes in the field. B-C—Basidiospores; D—Basidia; E—Cystidia; F— Pileipellis; G—Stipitipellis. Bar 10 μm.
FIGURE 1 in Two new Tylopilus species (Boletaceae) from Northeastern Atlantic Forest, Brazil
FIGURE 1. Maximum likelihood (ML) tree of Tylopilus from dataset of 33 ITS sequences rooted with the outgroup (Bothia castanella). Bayesian posterior probability above 0.7 and nonparametric bootstrap values above 50% are shown.
FIGURE 2 in USING Next-Generation Sequencing (NGS) TO UNCOVER DIVERSITY OF WOOD-DECAYING FUNGI IN NEOTROPICAL ATLANTIC FORESTS
FIGURE 2. Relative abundances of reads of fungal genera per study area and metabarcode using 95% sequence similarity with reference sequences in the UNITE database as surrogate for traditional taxonomic generic concepts.
FIGURE 1 in USING Next-Generation Sequencing (NGS) TO UNCOVER DIVERSITY OF WOOD-DECAYING FUNGI IN NEOTROPICAL ATLANTIC FORESTS
FIGURE 1. Genera richness at the levels of phylum, class and order per study area and metabarcode using 95% sequence similarity with reference sequences in the UNITE database as surrogate for traditional taxonomic generic concepts.
FIGURE 1. Behuria lumiarensis. A in Behuria lumiarensis (Melastomataceae), a new species on a mountaintop of the Brazilian Atlantic Forest
FIGURE 1. Behuria lumiarensis. A) Branch with details of the petal apex and the stalked-glands on the abaxial leaf surface and petiole; B) Insertion of the petiole in the leaf blade, adaxial surface; C) Flower bud; D) Flower, lateral view; E) Antesepalous stamen; F) Antepetalous stamen; G) Hypanthium and ovary, longitudinal section; H) Immature capsule. (All from Bochorny et al. 200, UEC).
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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
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.