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4,937 results for “Endemic species”
Figure 3 from: Hershler R, Liu H-P, Simpson JS (2015) Assembly of a micro-hotspot of caenogastropod endemism in the southern Nevada desert, with a description of a new species of Tryonia (Truncatelloidea, Cochliopidae). ZooKeys 492: 107-122. https://doi.org/10.3897/zookeys.492.9246
Figure 3 - Bayesian tree based on COI data delineating the phylogenetic relationships of the Blue Point Spring Tryonia (lineage highlighted by arrow). Posterior probabilities for nodes are indicated when >95%. GenBank accession numbers for haplotypes are given in parentheses.
Figure 1 from: Hershler R, Liu H-P, Simpson JS (2015) Assembly of a micro-hotspot of caenogastropod endemism in the southern Nevada desert, with a description of a new species of Tryonia (Truncatelloidea, Cochliopidae). ZooKeys 492: 107-122. https://doi.org/10.3897/zookeys.492.9246
Figure 1 - Map showing the location of Blue Point Spring relative to other geographic areas discussed in the text. The collecting localities for specimens of Pyrgulopsis sanchezi and Tryonia clathrata (sister taxa of Blue Point Spring endemics) used in the molecular phylogenetic analyses are also shown.
Figure 5 from: Hershler R, Liu H-P, Simpson JS (2015) Assembly of a micro-hotspot of caenogastropod endemism in the southern Nevada desert, with a description of a new species of Tryonia (Truncatelloidea, Cochliopidae). ZooKeys 492: 107-122. https://doi.org/10.3897/zookeys.492.9246
Figure 5 - Penis (dorsal surface), Tryonia infernalis, USNM 1248362. Scale bar: 500 µm. Db distal bulb Pa distal papilla Pd penial duct.
Figure 2 from: Hershler R, Liu H-P, Simpson JS (2015) Assembly of a micro-hotspot of caenogastropod endemism in the southern Nevada desert, with a description of a new species of Tryonia (Truncatelloidea, Cochliopidae). ZooKeys 492: 107-122. https://doi.org/10.3897/zookeys.492.9246
Figure 2 - Bayesian tree based on COI data delineating the phylogenetic relationships of Pyrgulopsis coloradensis (sequence identified by arrow). Posterior probabilities for nodes are indicated when >95%. GenBank accession numbers for haplotypes are given in parentheses.
Plate 1 from: Clark VR, Schrire BD, Barker NP (2015) Two new species of Indigofera L. (Leguminosae) from the Sneeuberg Centre of Floristic Endemism, Great Escarpment (Eastern and Western Cape, South Africa). PhytoKeys 48: 29-41. https://doi.org/10.3897/phytokeys.48.4798
Plate 1 - Indigofera magnifica Schrire & V.R. Clark, plants in situ on the Koudeveldberge, Sneeuberg (Western Cape Province; Clark VR & Moholwa TT 206) A inflorescence B fruits C typical prostrate growth habit D mountain summit habitat. Photographs by V.R. Clark.
Figure 1 from: Clark VR, Schrire BD, Barker NP (2015) Two new species of Indigofera L. (Leguminosae) from the Sneeuberg Centre of Floristic Endemism, Great Escarpment (Eastern and Western Cape, South Africa). PhytoKeys 48: 29-41. https://doi.org/10.3897/phytokeys.48.4798
Figure 1 - Analytical drawings of Indigofera magnifica Schrire & V.R. Clark, all drawn from the type collection (Clark VR & Moholwa TT 206) A growth habit B stoloniferous habit C trifoliolate leaf with stipules D terminal leaflet, underside E flower, front view F bud, side view G calyx H standard petal I wing petal J keel K staminal sheath L pistil M infructescence N pod O dehiscent pod P seed. Drawings by M. Tebbs.
Plate 2 from: Clark VR, Schrire BD, Barker NP (2015) Two new species of Indigofera L. (Leguminosae) from the Sneeuberg Centre of Floristic Endemism, Great Escarpment (Eastern and Western Cape, South Africa). PhytoKeys 48: 29-41. https://doi.org/10.3897/phytokeys.48.4798
Plate 2 - Indigofera asantasanensis Schrire & V.R. Clark, plants in situ on the slopes above 'Suurkloof', Asante Sana Private Game Reserve, Sneeuberg (Eastern Cape Province; Clark VR & Moholwa TT 211) A inflorescence from the front B inflorescence from the side C infructescence D close up of a single pod E the digitately foliolate leaves F growth habit G Escarpment mountain habitat. Photographs by V.R. Clark.
Figure 3 from: Clark VR, Schrire BD, Barker NP (2015) Two new species of Indigofera L. (Leguminosae) from the Sneeuberg Centre of Floristic Endemism, Great Escarpment (Eastern and Western Cape, South Africa). PhytoKeys 48: 29-41. https://doi.org/10.3897/phytokeys.48.4798
Figure 3 - Analytical drawings of Indigofera asantasanensis Schrire & V.R. Clark, all drawn from the type collection (Clark VR & Moholwa TT 211) A growth habit B digitately foliolate leaf with stipules C growth habit D stipule E calyx F standard petal G wing petal H keel I staminal sheath J pistil K infructescence L dehiscent pod M seed. Drawings by M. Tebbs.
Figure 2 from: Clark VR, Schrire BD, Barker NP (2015) Two new species of Indigofera L. (Leguminosae) from the Sneeuberg Centre of Floristic Endemism, Great Escarpment (Eastern and Western Cape, South Africa). PhytoKeys 48: 29-41. https://doi.org/10.3897/phytokeys.48.4798
Figure 2 - Known distributions of Indigofera magnifica Schrire & V.R. Clark (△) and Indigofera asantasanensis Schrire & V.R. Clark (○).
Figure 2 from: Byng JW, Florens FBV, Baider C (2015) Syzygium pyneei (Myrtaceae), a new critically endangered endemic species from Mauritius. PhytoKeys 46: 61-66. https://doi.org/10.3897/phytokeys.46.9039
Figure 2 - Floral and fruit characters. A and B Sole recorded images of flowering event C Close-up of dried inflorescence D Close-up of two fruits. (A–C D'Argent & Pynee MAU 25014; D D'Argent & K. Pynee MAU 26448; A and B courtesy of Kersley Pynee). Scale bar = 1 cm.
Figure 1 from: Byng JW, Florens FBV, Baider C (2015) Syzygium pyneei (Myrtaceae), a new critically endangered endemic species from Mauritius. PhytoKeys 46: 61-66. https://doi.org/10.3897/phytokeys.46.9039
Figure 1 - Vegetative characters. A and B bark C close-up of branchlet D lower leaf surface E upper leaf surface F petioles G leaf venation. (A and G Byng 83; B–F Byng 84).
Figure 3 from: Meerow AW, Jost L, Oleas N (2015) Two new species of endemic Ecuadorean Amaryllidaceae (Asparagales, Amaryllidaceae, Amarylloideae, Eucharideae). PhytoKeys 48: 1-9. https://doi.org/10.3897/phytokeys.48.4399
Figure 3 - Eucharis ruthiana. A Plant in cultivation B–C Leaves B Adaxial view C Abaxial view D–H Flowers D Upper portion of inflorescence showing flower habit E Flower cut and spread to show staminal corona F Dorsal-ventral view of limb showing the spread of the androecium G Lateral view H Lateral view with three tepals removed to show androecium I Ovary dissected to show numerous, superposed, globose ovules J Distribution of Eucharis ruthiana in Ecuador (black stars). Map courtesy of www.freeworldmaps.net.
Figure 2 from: Meerow AW, Jost L, Oleas N (2015) Two new species of endemic Ecuadorean Amaryllidaceae (Asparagales, Amaryllidaceae, Amarylloideae, Eucharideae). PhytoKeys 48: 1-9. https://doi.org/10.3897/phytokeys.48.4399
Figure 2 - Species closely related to the new taxa described in this paper. A Stenomesson miniatum (Meerow 1148, FTG) B Stenomesson campanulatum (Meerow 2445 (NA) C Eucharis moorei (Meerow & Meerow 1141, FLAS).
Figure 1 from: Meerow AW, Jost L, Oleas N (2015) Two new species of endemic Ecuadorean Amaryllidaceae (Asparagales, Amaryllidaceae, Amarylloideae, Eucharideae). PhytoKeys 48: 1-9. https://doi.org/10.3897/phytokeys.48.4399
Figure 1 - Stenomesson ecuadorense. A–C Plants in habit on limestone cliff D–G Inflorescence and flowers. Arrow in G denotes androecial teeth interposed between the free filaments H Plants in fruit in habitat I Distribution in Ecuador (black star). Map courtesy of www.freeworldmaps.net. The apparent yellowish stripes in Fig. 1F are artifacts of camera flash reflectance and are not visible by eye.
Figure 11 from: Wu S-P, Huang C-C, Tsai C-L, Lin T-E, Jhang J-J, Wu S-H (2016) Systematic revision of the Taiwanese genus Kurixalus members with a description of two new endemic species (Anura, Rhacophoridae). ZooKeys 557: 121-153. https://doi.org/10.3897/zookeys.557.6131
Figure 11 - Geographic distribution and genetic structures of Kurixalus eiffingeri and the two newly discovered cryptic species from Taiwan and its two adjacent islands. Red: Kurixalus eiffingeri; Green: Kurixalus berylliniris sp. n.; B: Kurixalus wangi sp. n. Bold lines mark the boundaries of each species' distribution, dotted lines discriminate different genetic groups intra species. Below: a consensus ML tree to show the variation between haplotypes. GenBank number accession numbers KT259055–KT259131.
Figure 9 from: Wu S-P, Huang C-C, Tsai C-L, Lin T-E, Jhang J-J, Wu S-H (2016) Systematic revision of the Taiwanese genus Kurixalus members with a description of two new endemic species (Anura, Rhacophoridae). ZooKeys 557: 121-153. https://doi.org/10.3897/zookeys.557.6131
Figure 9 - PCA morphometric comparisons of four Kurixalus species from Taiwan. Scatterplots of (A) principal components 1 and 2, and (B) principal components 2 and 3 of size-adjusted morphometric data for male frogs of the four Kurixalus species. The 95% confidence ellipses for each population (ELM) are shown.
Figure 3 from: Wu S-P, Huang C-C, Tsai C-L, Lin T-E, Jhang J-J, Wu S-H (2016) Systematic revision of the Taiwanese genus Kurixalus members with a description of two new endemic species (Anura, Rhacophoridae). ZooKeys 557: 121-153. https://doi.org/10.3897/zookeys.557.6131
Figure 3 - Four Kurixalus species of Taiwan. A Kurixalus berylliniris sp. n.(holotype, adult, dark morph) B Kurixalus wangi sp. n. (holotype) C Kurixalus berylliniris sp. n. (sub-adult) D Kurixalus berylliniris sp. n. (adult, light morph) E Kurixalus eiffingeri F Kurixalus idiootocus.
Figure 4 from: Wu S-P, Huang C-C, Tsai C-L, Lin T-E, Jhang J-J, Wu S-H (2016) Systematic revision of the Taiwanese genus Kurixalus members with a description of two new endemic species (Anura, Rhacophoridae). ZooKeys 557: 121-153. https://doi.org/10.3897/zookeys.557.6131
Figure 4 - Nesting sites of three tree-hole breeding Kurixalus species (a nest is made by the animal). A eggs of Kurixalus berylliniris sp. n. B eggs of Kurixalus wangi sp. n.; note that the parents were present with eggs C eggs of Kurixalus eiffingeri.
Figure 7 from: Wu S-P, Huang C-C, Tsai C-L, Lin T-E, Jhang J-J, Wu S-H (2016) Systematic revision of the Taiwanese genus Kurixalus members with a description of two new endemic species (Anura, Rhacophoridae). ZooKeys 557: 121-153. https://doi.org/10.3897/zookeys.557.6131
Figure 7 - Advertisement calls of four Kurixalus species from Taiwan. A. Kurixalus berylliniris sp. n. "slow call" B. Kurixalus berylliniris sp. n. "rapid call" C. Kurixalus wangi sp. n. "slow call" D Kurixalus wangi sp. n. "rapid call" E Kurixalus eiffingeri F Kurixalus idiootocus.
Figure 2 from: Wu S-P, Huang C-C, Tsai C-L, Lin T-E, Jhang J-J, Wu S-H (2016) Systematic revision of the Taiwanese genus Kurixalus members with a description of two new endemic species (Anura, Rhacophoridae). ZooKeys 557: 121-153. https://doi.org/10.3897/zookeys.557.6131
Figure 2 - Holotype of Kurixalus berylliniris sp. n. Dorsal (A), ventral (B), and ventral view of hand (C) and foot (D). Scale bars: 10 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.