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972 results for “morphological barcode”
FIGURES 14–20 in Morphological description and DNA barcoding of Hydrobaenus golovinensis sp. nov. (Diptera: Chironomidae: Orthocladiinae) from the Russian Far East
FIGURES 14–20. Larva of fourth instar of Hydrobaenus golovinensis sp. nov. 14, SI and labral lamella; 15, antenna; 16, antennal segments 2–6; 17, mentum; 18, distal part of mandible; 19, premandible; 20, middle teeth of mentum. Scale bars 20 µm.
FIGURES 1–6 in Morphological description and DNA barcoding of Hydrobaenus golovinensis sp. nov. (Diptera: Chironomidae: Orthocladiinae) from the Russian Far East
FIGURES 1–6. Adult male of Hydrobaenus golovinensis sp. nov. 1, hypopygium in dorsal view; 2, inferior volsellae; 3–4, gonocoxite and gonostylus; 5–6, TSA and phallapodemes. Scale bars 50 µm.
FIGURES 7–13 in Morphological description and DNA barcoding of Hydrobaenus golovinensis sp. nov. (Diptera: Chironomidae: Orthocladiinae) from the Russian Far East
FIGURES 7–13. Pupa of Hydrobaenus golovinensis sp. nov. 7–9, thoracic horn; 10, tergites II–III; 11, tergites IV–V; 12, tergites VI–VII; 13, tergite VIII and anal segment. Scale bars: Figs. 7–9 – 50 µm; Figs. 10–13 – 200 µm.
FIGURE 5 in First record of the genus Bunops Birge, 1893 (Cladocera: Macrothricidae) in the Neotropical highlands of Mexico with a detailed study of morphology and DNA barcodes
FIGURE 5. Bunops cf. serricaudata from Chipila, Tlaxcala State, Mexico, adult male. A, habitus. B, A1, external view. C, A1, internal view. D, detail of the internal anterior part with two leaf-shape aesthetascs, A1. E, posterior internal part of A1, with one seta and rows of spines. F, internal part of the valves, middle part. G, postabdomen. H, claws. I, hook in thoracic limb I. J, detail of the tip in the hook of limb I, with three rows of spines.
FIGURE 1 in First record of the genus Bunops Birge, 1893 (Cladocera: Macrothricidae) in the Neotropical highlands of Mexico with a detailed study of morphology and DNA barcodes
FIGURE 1. Bunops cf. serricaudata from Chipila, Tlaxcala State, Mexico. A, habitus, parthenogenetic female. B, habitus, ephippial female. C, antennules (scale bar 80 µm). D, tip of antennulae with aesthetascs (scale bar 40 µm).
FIGURE 6 in First record of the genus Bunops Birge, 1893 (Cladocera: Macrothricidae) in the Neotropical highlands of Mexico with a detailed study of morphology and DNA barcodes
FIGURE 6. Neighbor Joining simplified tree of all macrotricids found in BOLD. The country of collection (when known) and the BIN number in this database are listed after the species or genus name.
FIGURE 2 in First record of the genus Bunops Birge, 1893 (Cladocera: Macrothricidae) in the Neotropical highlands of Mexico with a detailed study of morphology and DNA barcodes
FIGURE 2. Bunops cf. serricaudata from Chipila, Tlaxcala State, Mexico. A, antenna (scale bar: 310 µm). B, detail of the distal part of the basipod from A (scale bar: 80 µm). C, postabdomen (scale bar: 200 µm). D, seta natatoria (scale bar 80 µm). E, detail of the armature in the margin of the valves (scale bar 40 µm).
Fig. 2 in Use of Morphology and CO1 Barcoding to Test the Validity ofTetraopes huetheriSkillman (Coleoptera: Cerambycidae)
Fig. 2. Neighbor-Joining tree of 22 Tetraopes specimens and data from Farrell (2001). Scale indicates 1% difference.
FIGURE 6 in Eucosma subvittana (Staudinger 1892) stat. rev., a Mediterranean species resurrected by DNA barcodes and morphology (Lepidoptera, Tortricidae)
FIGURE 6. Forewing of Eucosma subvittana ♂. A. Elements of the wing pattern. B. Venation. The subcostal vein is located in the area of the costal fold and is not visible in the photograph. Legend: (3–9) pairs of costal strigulae; (cf) costal fold; (ifs) interfascial spot; (mf) median fascia; (mif) median interfascia; (oc) ocellus; (pmf) postmedian fascia; (pmif) postmedian interfascia; (pt) pre-terminal fascia; (ptif) pre-terminal interfascia; (sbf) sub-basal fascia; (sbif) sub-basal interfascia.
FIGURE 4. Sternite 7 in Eucosma subvittana (Staudinger 1892) stat. rev., a Mediterranean species resurrected by DNA barcodes and morphology (Lepidoptera, Tortricidae)
FIGURE 4. Sternite 7 and sterigma, diagnostic characters of E. subvittana and E. cana. A. E. subvittana, Crete, Agia Galini, 25.iv.2022. B. E. cana, Bulgaria, Sredna Gora Mts, 720 m, 28.vii.2012. Note the different ratio length/width of sternite 7 and lateral incisions of sterigma (arrows). Scale bar 500 μm, both to scale.
FIGURE 3 in Eucosma subvittana (Staudinger 1892) stat. rev., a Mediterranean species resurrected by DNA barcodes and morphology (Lepidoptera, Tortricidae)
FIGURE 3. Eucosma subvittana (A–C) and E. cana (D–H), female genitalia. A. subvittana, Crete, Agia Galini, 25.iv.2022. B. E. subvittana, Crete, Georgioupoli, 4.v.2022. C. E. subvittana, Crete, Agia Galini, 25.iv.2022. D. E. cana, Bulgaria, Sredna Gora Mts, 720 m, 28.vii.2012. E. E. cana, Bulgaria, Shumen distr., 20.vi.2007. F. E. cana, Bulgaria, Petrich distr., 14.vi.2010. G. E. cana, Bulgaria, Emen Gorge, 16.vii.2011. H. E. cana, Bulgaria, Belasitsa Mts, 600 m, 28.viii.2010. Scale bar 500 μm, all to scale.
FIGURE 2 in Eucosma subvittana (Staudinger 1892) stat. rev., a Mediterranean species resurrected by DNA barcodes and morphology (Lepidoptera, Tortricidae)
FIGURE 2. Eucosma subvittana (A–G) and E. cana (H–R), male genitalia. A. E. subvittana, Crete, Agia Galini, 25.iv.2022. B. E. subvittana, ibid. C. subvittana, ibid. D. E. subvittana, Crete, Georgioupoli, 4.v.2022. E. E. subvittana ibid. F. subvittana, ibid. G. E. subvittana, ibid. H. E. cana, Bulgaria, Balchik, 27.vi.2013. I. E. cana, Bulgaria, Petrich distr., 5.v.2013. J. E. cana, Bulgaria, Slavyanka Mts, 1550 m, 23.vii.2010. K. E. cana, Bulgaria, Yambol reg., 29.vi.2012. L. E. cana, Bulgaria, Belasitsa Mts, 1500 m, 6.vii.2010. M. E. cana, Turkey, Iğneada, 6.vii.2009. N. E. cana, Bulgaria, Black Sea coast, Karadere, 4.vii.2013. O. E. cana, Bulgaria, Pirin Mts, 1850 m, 8.viii.2013. P. E. cana, Bulgaria, Black Sea coast, Veleka, 6.vii.2013. Q. E. cana, Bulgaria, Pirin Mts, 1950 m, 21.vii.2010. R. E. cana, Bulgaria, Black Sea coast, Kranevo, 23.vii.2011. Scale bar 500 μm, all to scale.
FIGURE 1. Eucosma subvittana and E. cana. A in Eucosma subvittana (Staudinger 1892) stat. rev., a Mediterranean species resurrected by DNA barcodes and morphology (Lepidoptera, Tortricidae)
FIGURE 1. Eucosma subvittana and E. cana. A. Lectotype ♂of E. subvittana, Tunisia. B–I Wing pattern. B. E. subvittana lectotype. C. E. subvittana paralectotype ♂, Spain, Barcelona (left wings mirrored digitally). D. E. subvittana paralectotype ♀, Italy, Sardinia. E. E. subvittana ♀, Crete, Agia Galini, 25.iv.2022. F. E. subvittana ♀, ibid. G. E. subvittana ♂, ibid. H. E. subvittana ♂, Crete, Georgioupoli, 4.v.2022. I. E. cana ♂, Bulgaria, Pirin Mts, 1730 m, 17.vii.2010. J. E. cana ♀, Bulgaria, Sredna Gora Mts, 720 m, 28.vii.2012. K. E. cana ♂, Bulgaria, Black Sea coast, 6.vi.2013. L. E. cana ♂, Bulgaria, Yambol reg., 29.vi.2012. Scale bars 5 mm, B–L to scale; A–D (c) Museum für Naturkunde Berlin, with permission.
FIGURES 7–11. C in Morphological description and DNA barcoding of Ceratophysella gracilimucronata sp. nov. (Collembola: Hypogastruridae) from China, with a key to species of the C. armata group of the Sino-Japanese Region
FIGURES 7–11. C. gracilimucronata sp. nov.: 7, furca; 8, chaetotaxy of Abd. V; 9, chaetotaxy of Abd. I–VI; 10, chaetotaxy of head; 11, chaetotaxy of Th. I–III.
FIGURES 1–6. C in Morphological description and DNA barcoding of Ceratophysella gracilimucronata sp. nov. (Collembola: Hypogastruridae) from China, with a key to species of the C. armata group of the Sino-Japanese Region
FIGURES 1–6. C. gracilimucronata sp. nov.: 1, chaetotaxy of Ant. I–IV, dorsal side; 2, chaetotaxy of Ant. III–IV, ventral side; 3, postantennal organ and ocelli; 4, labial palp; 5, claw I with empodial appendage; 6, labrum.
Supplementary material 9 from: Mahima K, Umapathy S, Sudhakar JV, Sathishkumar R (2021) Systematic reinstatement of highly sacred Ficus krishnae based on differences in morphology and DNA barcoding from Ficus benghalensis (Moraceae). PhytoKeys 186: 121-138. https://doi.org/10.3897/phytokeys.186.74086
Figure S4. Maximum Clade Credibility (MCC) tree from Bayesian analysis using the ITS2 DNA barcode marker with posterior probabilities values in percentage that are shown at nodes
Supplementary material 10 from: Mahima K, Umapathy S, Sudhakar JV, Sathishkumar R (2021) Systematic reinstatement of highly sacred Ficus krishnae based on differences in morphology and DNA barcoding from Ficus benghalensis (Moraceae). PhytoKeys 186: 121-138. https://doi.org/10.3897/phytokeys.186.74086
Figure S5. Maximum Clade Credibility (MCC) tree from Bayesian analysis using the trnH-psbA DNA barcode marker with posterior probabilities values in percentage that are shown at nodes.
Supplementary material 8 from: Mahima K, Umapathy S, Sudhakar JV, Sathishkumar R (2021) Systematic reinstatement of highly sacred Ficus krishnae based on differences in morphology and DNA barcoding from Ficus benghalensis (Moraceae). PhytoKeys 186: 121-138. https://doi.org/10.3897/phytokeys.186.74086
Figure S3. Parsimony distribution of the morphological characters and their status on the MCC Bayesian tree
FIGURE 6 in New records of water mites (Acari, Hydrachnidia) from Iran with the description of one new species based on morphology and DNA barcodes
FIGURE 6. Neighbor-joining tree based on studied Monatractides COI sequences. The optimal tree with the sum of branch length = 0.33301736 is shown. The analysis involved 9 nucleotide sequences. There were a total of 669 positions in the final dataset.
FIGURE 5 in New records of water mites (Acari, Hydrachnidia) from Iran with the description of one new species based on morphology and DNA barcodes
FIGURE 5. Partial NJ trees calculated with COI sequences of Sperchon papillosus and S. compactilis with BIN assignment. The optimal tree with the sum of branch length = 0.06613391 is shown. The analysis involved 7 nucleotide sequences. There were a total of 669 positions in the final dataset.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.