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525 results for “white species”
FIG. 10 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 10. — Anatomical review of Scrophularia deserti Delile:A, stem indumentum;B, blade structure; C, leaf stomata,subsidiary cells hollowed out (Kermanshah:Tazeh Abad to Javanrud, 15 km to Javanrud, 1255 m, 6.V.2017, Ranjbar 41143, BASU). Scale bars: A (left), B (left), 200 µm; A (right), 50 µm; B (right), 100 µm; C, 20 µm.
FIG. 11 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 11. — Anatomical review of Scrophularia marginata Boiss.: A, stem indumentum; B, blade structure; C, leaf stomata, subsidiary cells hollowed out (Hamedan: Tuyserkan, 6.V.2016, Ranjbar & Rahchamani 59063, BASU). Scale bars: A (left), B (left), 200 µm; A (right), 50 µm; B (right), 100 µm; C, 20 µm.
FIG. 1 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 1. — Scrophularia deserti Delile: A, habit; B, basal and cauline leaves; C, D, flower in front and side views; E, basal leaves (Kermanshah: Tazeh Abad to Javanrud, 15 km to Javanrud, 1255 m, 6.V.2017, Ranjbar 41143, BASU, Photographed by M. Ranjbar). Scale bars: A, B, 2 cm; C, D, 1 mm; E, 1 cm.
FIG. 1. — Cosmonotus mclaughlinae n in A new species of the crab genus Cosmonotus Adams & White in White, 1848 (Crustacea, Podotremata, Raninidae) from the Indo-West Pacific Ocean
FIG. 1. — Cosmonotus mclaughlinae n. sp., ♂ holotype, Philippines (MNHN-B 29929): A, B, lateral and dorsal view of the carapace; C, detail of fronto-orbital margin of the carapace, setae excluded; D, dorsal surface of carpus of right cheliped. Notice the absence of median rostral process (A), presence of only one supraorbital notch (C), and carpus of cheliped densely ornamented with rounded tubercles (D). Scale bars: A, B, 4 mm; C, D, 1 mm.
FIGURE 5 A in The evolutionary history of the white wagtail species complex, (Passeriformes: Motacillidae: Motacilla alba)
FIGURE 5 A) Geographical distribution of haplotypes based on clades. B) Geographical distribution of haplotypes based on haplotypes diversity in PopART 1.7.
FIGURE 4 in The evolutionary history of the white wagtail species complex, (Passeriformes: Motacillidae: Motacilla alba)
FIGURE 4 Estimates of phylogenetic tree, divergence times and LAGRANGE ancestral area reconstructions of the M. alba complex. The chronogram tree is based on BEAST analysis of the combined dataset. Colour pies indicate the origin of a given node based on four zoogeographical areas followed by LAGRANGE analysis.
FIGURE 2 in The evolutionary history of the white wagtail species complex, (Passeriformes: Motacillidae: Motacilla alba)
FIGURE 2 Ecological niche modelling pattern of white wagtail during the present, Holocene, and LGM. Red, orange and yellow colours represent more suitable areas for the species; green indicates less suitable areas.
Data from: Evolutionary and demographic history of the Californian scrub white oak species complex: an integrative approach
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Balancing carnivore conservation and sustainable hunting of a key prey species: a case study on the Florida panther and white-tailed deer
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Fig. 3 in A White Stork (Ciconia ciconia (Linnaeus, 1758)) nest - an unique case of multiple nesting commensalism of five species from Dragoman (W Bulgaria)
Fig. 3. Spanish sparrows nesting in a nest of White Stork, Dragoman, 19.05.2019. Photo: Z. Boev.
Fig. 2 in A White Stork (Ciconia ciconia (Linnaeus, 1758)) nest - an unique case of multiple nesting commensalism of five species from Dragoman (W Bulgaria)
Fig. 2. House sparrows nesting in a nest of White Stork, Dragoman, 19.05.2019. Photo: Z. Boev.
FIGURE 1 in Riparian and valley-margin hardwood species of pre-colonial Piedmont forests: A preliminary study of subfossil leaves from White Clay Creek, southeastern Pennsylvania, USA
FIGURE 1. Location of the White Clay Creek leaf mat site, Chester County, Pennsylvania.
FIG. 13 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 13. — Lectotype of Scrophularia cabulica Benth. (Griffith 623, P03412686).
FIG. 4 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 4. — Holotype of Scrophularia moniliformis Pennell (Qazilbash s.n., PH00022890).
FIG. 3 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 3. — Lectotype of Scrophularia sinaica Benth. (Aucher-Eloy s.n. and Bové 73, G-DC[G00672020]).
FIG. 6 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 6. — Lectotype of Scrophularia marginata Boiss. (Aucher-Eloy 2898, G-DC[G00673693]).
FIG. 2 in The species of Scrophularia L. (Scrophulariaceae) with white margined leaves in Flora Iranica
FIG. 2. — Holotype of Scrophularia deserti Delile (Delile s.n., MPU007068).
Genomic data resolve long-standing uncertainty by distinguishing white marlin (Kajikia albida) and striped marlin (K. audax) as separate species
<p>Large pelagic fishes are often broadly and continuously distributed and capable of long-distance movements. These factors can promote gene flow that makes it difficult to disentangle intra- vs. inter-specific levels of genetic differentiation. Here, we assess the relationship of two istiophorid billfishes, white marlin (<em>Kajikia</em> <em>albida</em>) and striped marlin (<em>K</em>. <em>audax</em>), presently considered sister species inhabiting separate ocean basins. Previous studies report levels of genetic differentiation between white marlin and striped marlin that are <a>smaller</a> than those observed among populations of other istiophorid species. To determine whether white marlin and striped marlin comprise separate species or populations of a single globally distributed species, we surveyed 2<a>520</a> single nucleotide polymorphisms (SNPs) in 62 white marlin and 242 striped marlin sampled across the Atlantic, Pacific, and Indian oceans. Multivariate analyses resolved white marlin and striped marlin as distinct groups, and a species tree composed of separate lineages was strongly supported over a single lineage tree. Genetic differentiation between white marlin and striped marlin (<em>F</em><sub>ST</sub> = 0.5384) was also substantially larger than between populations of striped marlin (<em>F</em><sub>ST</sub> = 0.0192–0.0840), and we identified SNPs that allow unambiguous species identification. Our findings indicate that white marlin and striped marlin comprise separate species, which we estimate diverged at approximately 2.38 Mya.</p>
Genomic data resolve long-standing uncertainty by distinguishing white marlin (Kajikia albida) and striped marlin (K. audax) as separate species
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Pairwise distance demarcation of species in the family Coronaviridae. a, Diagonal matrix of PPDs of 2,505 viruses clustered according to 49 coronavirus species, 39 established and 10 pending or tentative, and ordered from the most to least populous species, from left to right; green and white, PPDs smaller and larger than the inter-species threshold, respectively. Areas of the green squares along the diagonal are proportional to the virus sampling of the respective species, and virus prototypes of the five most sampled species are specified to the left; asterisks indicate species that include viruses whose intra-species PPDs crossed the inter-species threshold (threshold 'violators'). b, Maximal intra-species PPDs (x axis, linear scale) plotted against virus sampling (y axis, log scale) for 49 species (green dots) of the Coronaviridae. Indicated are the acronyms of virus prototypes of the seven most sampled species. Green and blue plot sections represent intra-species and intra-subgenera PPD ranges. The vertical black line indicates the inter-species threshold. c, Shown are the PDs of non-identical residues (y axis) for four viruses representing three major phylogenetic lineages (clades) of the species Severe acute respiratorysyndrome-related coronavirus (panel b) and all pairs of the 256 viruses of this species ('all pairs'). The PD values were derived from pairwise distances in the MSA that were calculated using an identity matrix. Panels a and b were adopted from the DEmARC v.1.4 output. in The species Severe acute respiratory syndromerelated coronavirus: classifying 2019-nCoV and naming it SARS-CoV-2
Pairwise distance demarcation of species in the family Coronaviridae. a, Diagonal matrix of PPDs of 2,505 viruses clustered according to 49 coronavirus species, 39 established and 10 pending or tentative, and ordered from the most to least populous species, from left to right; green and white, PPDs smaller and larger than the inter-species threshold, respectively. Areas of the green squares along the diagonal are proportional to the virus sampling of the respective species, and virus prototypes of the five most sampled species are specified to the left; asterisks indicate species that include viruses whose intra-species PPDs crossed the inter-species threshold (threshold 'violators'). b, Maximal intra-species PPDs (x axis, linear scale) plotted against virus sampling (y axis, log scale) for 49 species (green dots) of the Coronaviridae. Indicated are the acronyms of virus prototypes of the seven most sampled species. Green and blue plot sections represent intra-species and intra-subgenera PPD ranges. The vertical black line indicates the inter-species threshold. c, Shown are the PDs of non-identical residues (y axis) for four viruses representing three major phylogenetic lineages (clades) of the species Severe acute respiratorysyndrome-related coronavirus (panel b) and all pairs of the 256 viruses of this species ('all pairs'). The PD values were derived from pairwise distances in the MSA that were calculated using an identity matrix. Panels a and b were adopted from the DEmARC v.1.4 output.
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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.