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5,864 results for “species diversity”
Linked collectors and determiners for: Tiny wasps, huge diversity – A review of German Pteromalidae with new generic and species records (Hymenoptera: Chalcidoidea).
Natural history specimen data linked to collectors and determiners held within, "Tiny wasps, huge diversity – A review of German Pteromalidae with new generic and species records (Hymenoptera: Chalcidoidea)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/8230552e-b8bf-4ee2-8c07-b99a69cf9949">https://bionomia.net/dataset/8230552e-b8bf-4ee2-8c07-b99a69cf9949</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/8230552e-b8bf-4ee2-8c07-b99a69cf9949">https://gbif.org/dataset/8230552e-b8bf-4ee2-8c07-b99a69cf9949</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: A new coffee species from South-West Cameroon, the principal hotspot of diversity for Coffea L. (Coffeeae, Ixoroideae, Rubiaceae) in Africa.
Natural history specimen data linked to collectors and determiners held within, "A new coffee species from South-West Cameroon, the principal hotspot of diversity for Coffea L. (Coffeeae, Ixoroideae, Rubiaceae) in Africa". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/19a65528-4c5a-4ece-a7b2-f4fcb0a4bcf4">https://bionomia.net/dataset/19a65528-4c5a-4ece-a7b2-f4fcb0a4bcf4</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/19a65528-4c5a-4ece-a7b2-f4fcb0a4bcf4">https://gbif.org/dataset/19a65528-4c5a-4ece-a7b2-f4fcb0a4bcf4</a>. Formatted as a Frictionless Data package.
Fig. 3 in Unravelling the species diversity, phylogeny and biogeography of the mycoheterotrophic Voyrieae (Gentianaceae) and the description of a new species
Fig. 3. Time-calibrated multigene species phylogeny of Voyrieae. Node numbers represent Bayesian posterior probabilities. Colored squares before species names represent the current presence of species in the respective biogeographic areas. Colored squares on nodes represent the ancestral area reconstruction with the highest likelihood using the DEC model. Ma = million years ago. Pl. = Pliocene.
Fig. 1. Species diversity within Voyrieae. A in Unravelling the species diversity, phylogeny and biogeography of the mycoheterotrophic Voyrieae (Gentianaceae) and the description of a new species
Fig. 1. Species diversity within Voyrieae. A, Voyria corymbosa; B, V. chionea; C, V. obconica; D, V. pittieri; E, V. spruceana; F, V. parasitica; G, V. aurantiaca; H, V. primuloides; I, V. clavata; J, V. caerulea. — All photos by Vincent Merckx, except H, by Steven Dessein.
Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)
Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A. Apex of branch; B. Branch; C. Old flower lacking corolla, dissected laterally; D. Old flower lacking corolla; E. Leaf, abaxial side; F. Leaf, adaxial side. [Gautier et al. 6276] [Drawing: G. Loza]
Cryptic Diversity in Cladosporium cladosporioides Resulting from Species Delimitation Analysis
<p><strong>Concatenated loci alignment (.fasta), Maximum-Likelihood, Maximum-Parsimony and Bayesian reconstruction of <em>Cladosporium cladosporioides</em> phylogeny. </strong></p> <p>Files represent dataset of the study: "Cryptic Diversity in Cladosporium cladosporioides Resulting from Species Delimitation Analysis"</p> <p> </p> <p>ABSTRACT</p> <p>Establishing a stable taxonomy is particularly important for understanding fungal biodiversity, as well as the evolution of particular traits related to symbiotic interactions. <em>Cladosporium cladosporioides </em>is an extremely widespread fungus involved in associations ranging from mutualistic to pathogenic, and is the most represented <em>Cladosporium</em> species in genetic sequence databases, such as Genbank. Although the taxonomy of <em>Cladosporium</em> species is subjected to frequent revisions, which nowadays mostly rely on molecular data, few studies explored cryptic diversity of this genus using the recently developed species delimitation methods. Considering a previous study which reported several hypothetical species within <em>C. cladosporioides</em>, here we try to fill the gap of knowledge about phylogenetic relationships for this species and tested four different methods of species delimitation using the combined DNA barcodes ITS, <em>translation elongation factor 1</em> and <em>actin</em>. The analyses involved 105 isolates revealing that currently available sequences of <em>C. cladosporioides</em> in GenBank actually represent more than one species. Moreover, we reported the erroneous taxonomical assignment of several isolates that should be ascribed to <em>C. anthropophilum</em>. Our results revealed a certain degree of discordance among species delimitation methods, which can be efficiently treated using conservative approaches, in order to minimize the risk of considering false positives.</p>
Figure 15-16. Rank abundance chart for Phanaeini species. 15 in Diversity and distribution of the scarab beetle tribe Phanaeini in the northern states of the Brazilian Northeast (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 15-16. Rank abundance chart for Phanaeini species. 15) Recorded in Ceará during February-June 2008. Light grey indicates specimens observed in Atlantic forest; dark grey indicates specimens observed in caatinga. 16) Recorded in Maranhão during February and May 2008. All specimens were broadly observed in cerrado habitat (see species accounts for details).
FIG. 8 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 8. — Map of diversity of Annonaceae species in Tanzania. Regional administrative boundaries are indicated. Symbols: light grey patches, land above 1400 m; dark grey patches, water.
FIG. 4 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 4. — Isolona linearis Couvreur: A, flowering branch; B, lobe variation within I. linearis; C, androecium and gynoecium; D, stamen; E, fruit. Drawing by Wil Wessel-Brand. Scale bars: A, B, E, 1 cm; C, D, 1 mm.
FIG. 3 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 3. — Monodora hastipetala Couvreur: A, flowering branch; B, mature flower (top view), outer petals opened; C, pedicel with sepals; D, androecium and gynoecium; E, stamen; F, fruiting pedicel and fruit. Drawing by Wil Wessel-Brand. Scale bars: A-C, F, 1 cm; D, E, 1 mm.
FIG. 7 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 7. — SEM of pollen grains and tectum structure: A, B, Monodora carolinae Couvreur; C, D, M. globiflora Couvreur; E, F, M. hastipetala Couvreur; G, H, Isolona hexaloba Engl. & Diels from Ivory Coast; I, J, Isolona linearis Couvreur. A, B, Phillipson 4940 (C); C, D, Luke 3136 (MO); E, F, Phillipson 4958 (MO); G, H, de Wilde et al. 839 (WALKB, WAG); I, J, Frimodt-Møller et al. TZ59 (C). Scale bars: A, C, E, G, I, 10 µm; B, D, F, H, J, 1 µm.
FIG. 9 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 9. — Map of diversity of Annonaceae genera in Tanzania. Regional administrative boundaries are indicated. Symbols: light grey patches, land above 1400 m; dark grey patches, water.
FIG. 2 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 2. — Monodora globiflora Couvreur: A, flowering branch; B, leaf; C, pedicel with sepals; D, mature flower (top view); E, detail of inner petal (inside view); F, androecium and gynoecium; G, stamen; H, fruiting pedicel and fruit. Drawing by Wil Wessel-Brand. Scale bars: A, C-E, H, 1 cm; F, G, 1 mm.
FIG. 1 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 1. — Monodora carolinae Couvreur: A, flowering branch; B, leaf; C, mature flower; D, detail of inner petal (inside view); E, androecium and gynoecium (stigma missing); F, stamen. Drawing by Wil Wessel-Brand. Scale bars: A-C, 1 cm; D-F, 1 mm.
FIG. 5 in Description of four new species of Monodora and Isolona (Annonaceae) from Tanzania and an overview of Tanzanian Annonaceae diversity
FIG. 5. — Distribution of the new species of Monodora in Tanzania and Mozambique. Symbols: grey patches, land above 1400 m; ■, M. carolinae Couvreur; ●, M. globiflora Couvreur;▲, M. hastipetala Couvreur.
Figure 3 in Morphological diversity of habrobathynellids (Parabathynellidae, Bathynellacea) in India, with the description of a new species
Figure 3. Habrobathynella indica sp. n., male, Th. VIII. (a) Lateral external view, in situ; (b) apical view. Scale bar: 25 Mm.
Figure 2 in Morphological diversity of habrobathynellids (Parabathynellidae, Bathynellacea) in India, with the description of a new species
Figure 2. Habrobathynella indica sp. n., female. (a) Th. I; (b) Th. II; (c) Th. III; (d) Th. IV; (e) Th. V; (f) Th. VI; (g) Th. VII; (h) Th. VIII male (lateral external). Scale bars: 50 Mm.
Figure 10 in Species diversity of the genus Phortica Schiner in Yunnan, China, with descriptions of nine new species (Diptera, Drosophildae)
Figure 10. Phortica pangi Chen and Wen, sp. nov., ". (A) Epandrium, cercus and surstylus (lateral view); (B) 10th sternite and additional plate (frontal view); (C) hypandrium, gonopod, parameres and aedeagal median rod (lateral view). Scale bars: 0.1 mm.
Figure 6 in Species diversity of the genus Phortica Schiner in Yunnan, China, with descriptions of nine new species (Diptera, Drosophildae)
Figure 6. Phortica glabtabula Chen and Gao, sp. nov., ". (A) Epandrium, cercus and surstylus (lateral view); (B) 10th sternite and additional plate (frontal view); (C) hypandrium, gonopod, parameres and aedeagal median rod (lateral view). Scale bars: 0.1 mm.
Figure 2 in Species diversity of the genus Phortica Schiner in Yunnan, China, with descriptions of nine new species (Diptera, Drosophildae)
Figure 2. Phortica sagittaristula Chen and Wen, sp. nov., ". (A) Arista; (B) epandrium, cercus and surstylus (lateral view); (C) hypandrium, gonopod and parameres (ventral view); (D) paramere (lateral view). Scale bars: 0.1 mm.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.