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866 results for “closely related species”
FIG. 4 in A New Species of Snailfish (Cottiformes: Liparidae) Closely Related to Careproctus melanurus of the Eastern North Pacific
FIG. 4. (A) Right medial view of pectoral girdle of Careproctus ambustus, new species, UW 119240, 150 mm; (B) Right medial view of pectoral girdle of Careproctus melanurus, UW 47479, 125 mm. Shaded areas represent cartilage.
Table ̚: Diagnostic morphological characteristics of the Hipposideros armiger captured in cave of the Sadar Upazila subdistrict (Bandarban district, Bangladesh) and closely related species of the genus Hipposideros in South Asia according to Srinivasulu et al. (2010). in First record of Great Himalayan leaf-nosed bat, Hipposideros armiger (Hipposideridae) from Bangladesh
<p><b>Table ̚:</b> Diagnostic morphological characteristics of the <i>Hipposideros armiger</i> captured in cave of the Sadar Upazila subdistrict (Bandarban district, Bangladesh) and closely related species of the genus <i>Hipposideros</i> in South Asia according to Srinivasulu et al. (2010).</p><table><tbody><tr><th><b>External characters</b></th><th><b>This study</b></th><th><i>H. armiger</i></th><th><i>H. speoris</i></th><th><i>H. larvatus</i></th><th><i>H. lankadiva</i></th></tr></tbody><tbody><tr><th><b>(mm)</b></th><td></td><td><b>(Hodgson, ̚s̒ƽ)</b></td><td><b>(Schneider, ̚see)</b></td><td><b>(Horsfield, ̚sz̒)</b></td><td><b>(Kellart, ̚sƽe)</b></td></tr><tr><th>Forearm length</th><td>90.1</td><td>85.4–95.0</td><td>45.6–54.0</td><td>61.2–64.8</td><td>75.0–99.0</td></tr><tr><th>Head body length</th><td>98.3</td><td>82.0–105.0</td><td>46.0–62.0</td><td>74.0–78.0</td><td>87.0–106.0</td></tr><tr><th>Tail length</th><td>49.9</td><td>50.0–64.0</td><td>20.0–29.0</td><td>37.0–44.0</td><td>35.0–58.0</td></tr><tr><th>Ear length</th><td>26.6</td><td>26.0–34.0</td><td>12.5–19.0</td><td>23.0–26.0</td><td>19.5–30.0</td></tr><tr><th>No. of supplementary</th><td>4 (4th much</td><td>4 (4th much reduced)</td><td>3 (3rd much reduced)</td><td>4 (4th much reduced)</td><td>4 (4th sometimes</td></tr><tr><th>leaflets</th><td>reduced)</td><td></td><td></td><td></td><td>absent)</td></tr></tbody></table>
Data from: Adaptation to seasonal drought in two closely related species of Neotropical Costus (Costaceae)
Seasonal drought has been shown to greatly influence the distributions and species composition of plants in tropical rainforests. By conducting a series of field, greenhouse, and growth chamber experiments, we examined how Costus villosissimus, a forest edge species, has adapted to drought and differentiated from C. allenii, its closely related species in the understory. We hypothesize that delayed seed germination and high drought tolerance may lead to habitat differentiation and thus reproductive isolation between closely related plant species in the tropics.
FIGURE 11 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 11. Pupal exuviae of the taxa of the Elachista zigzagger complex, in ventral view. A: A1; B: A2; C: A3; D: A4; E: A5; F: A6; G: B1; H: B2; I: B3.
FIGURE 10 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 10. Ostium bursae of the female of the taxa of the Elachista zigzagger complex. A: ' A1; B: ' A2; C: A3; D: A4; E: A5; F: A6; G: B1; H: B2; I: B3.
FIGURE 8 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 8. Female genitalia of the taxa of the Elachista zigzagger complex. A: A1; B: A2; C: A3; D: A4; E: A5; F: A6.
FIGURE 7 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 7. Male genitalia of Elachista taxa, in ventral view. A: Elachista zigzagger complex B1; B: Elachista zigzagger complex B2; C: Elachista zigzagger complex B3: D: Elachista 'Cleland sp.'.
FIGURE 6 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 6. Male genitalia of the taxa of the Elachista zigzagger complex, in ventral view. A: A1; B: A2; C: A3; D: A4; E: A5; F: A6.
FIGURE 1 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 1. Strict consensus cladogram (length 293 steps, CI 0.75, RI 0.92) of the two equally parsimonious cladograms based on parsimony analysis of 705 nt 3' end of the COI gene for 47 ingroup specimens belonging to 14 morphospecies and two outgroup taxa. Bremer support values are given below, and Jackknife values above the branches. Black dots indicate unique synapomorphies, open circles homoplastic synapomorphies.
FIGURE 3 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 3. Male genitalia of Elachista taxa, in ventral view. A: Elachista Ficinia complex 1; B: Elachista Ficinia complex 2; C: Elachista yellow complex 1; D: Elachista yellow complex 2.
FIGURE 4 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 4. Female genitalia of Elachista spp. A: Elachista Ficinia complex 1; B: Elachista Ficinia complex 2; C: Elachista Cleland sp.; D: Elachista yellow complex 1; E: Elachista yellow complex 2.
FIGURE 2 in DNA barcodes: Evaluating the potential of COI to diffentiate closely related species of Elachista (Lepidoptera: Gelechioidea: Elachistidae) from Australia
FIGURE 2. External appearance of Elachista spp. A: Elachista Ficinia complex 1 male (Australia: SA Adelaide); B: Elachista Ficinia complex 1 male (Australia: NSW Burrewarra Point); C: E lachista Ficinia complex 1 female (Australia: SA: Normanville); D and E: Elachista Ficinia complex 2 male (Australia: WA Myalup Beach); F: Elachista Ficinia complex 2 female (Australia: WA Myalup Beach); G: Elachista yellow complex 1 male; H: Elachista yellow complex 1 female; I: Elachista yellow complex 2 male; J: Elachista yellow complex 2 female; K: Elachista Cleland sp. male; L: Elachista Cleland sp. female.
FIGURE 2 in Phenotypical variation and taxonomic correlates of five closely related Andean species of Poa (Poaceae) along geographic and climatic gradients
FIGURE 2. Plots of PC1 × PC2 and PC1 × PC3 from principal components analysis (PCA) of all specimens in the study. ANFA: P. anfamensis; JUJ: P. jujuyensis; LILL: P. lilloi; PARV: P. parviceps; SCAB: P. scaberula.
FIGURE 1 in Phenotypical variation and taxonomic correlates of five closely related Andean species of Poa (Poaceae) along geographic and climatic gradients
FIGURE 1. DIVA-GIS map of environmental variables and 150 collection sites of Poa specimens from the Andes in South American. A. Elevation. B. Annual mean precipitation. C. Annual mean temperature. D. Annual maximum temperature. E. Annual minimum temperature. Symbols for the Poa species are described in E.
FIGURE 4 in Phenotypical variation and taxonomic correlates of five closely related Andean species of Poa (Poaceae) along geographic and climatic gradients
FIGURE 4. Box plots representing the mean, median, interquartile range, adjacent values (lines), and outliers (dots) of quantitative characters in P. lilloi and P. scaberula.
FIGURE 3 in Phenotypical variation and taxonomic correlates of five closely related Andean species of Poa (Poaceae) along geographic and climatic gradients
FIGURE 3. Plot of discriminant analysis (DA) along the first two discriminant axes obtained from all specimens pertaining to a priori defined species. ANFA: P. anfamensis; JUJ: P. jujuyensis; LILL: P. lilloi; PARV: P. parviceps; SCAB: P. scaberula.
Figure 2 in Pnigalio agraules (Walker) and Pnigalio mediterraneus Ferrière and Delucchi (Hymenoptera: Eulophidae): two closely related valid species
Figure 2. Comparison of shape (length/width) of eggs newly laid by females of Pnigalio agraules (PA_TE) and Pnigalio mediterraneus (PA_BO and PA_PM). Different letters show significant differences to analysis of variance tests.
Figure 1 in Pnigalio agraules (Walker) and Pnigalio mediterraneus Ferrière and Delucchi (Hymenoptera: Eulophidae): two closely related valid species
Figure 1. Comparison of parsimony tree topologies for the two gene regions. (A) One of 28 most parsimonious trees found for the cytochrome oxidase subunit I (COI) dataset; (B) one of four most parsimonious trees found for the 28S-D2 dataset. Bootstrap values>70% are shown in bold above branches.
Figure 5 in Reclassification of Bracon mendocinus, a gall-associated doryctine wasp, and description of a new closely related species of Allorhogas (Hymenoptera: Braconidae)
Figure 5 (A) Original illustration of galls on Lycium chilense from Jörgensen (1917); (B) gall found on L. chilense.
Figure 4 in Reclassification of Bracon mendocinus, a gall-associated doryctine wasp, and description of a new closely related species of Allorhogas (Hymenoptera: Braconidae)
Figure 4 (A,B) Allorhogas mendocinus: (A) forewing; (B) hindwing. (C,D) Allorhogas joergenseni sp. nov.: (C) forewing; (D) hindwing. Scale: 0.5 mm.
ScienceDex guides
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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.