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972 results for “morphological barcode”

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zenodo32/100

FIGURES 18–23 in Validation of Heterocerus heydeni Kuwert, 1890 based on morphology and DNA barcoding, with notes on the problems of classification of the Heteroceridae (Coleoptera)

FIGURES 18–23. Male genitalia of Heterocerus spp. 18—aedeagus H. heydeni, ventrally; 19—tegmen apex H. heydeni, dorsally; 20—tegmen sclerotization H. heydeni, dorsal; 21—aedeagus H. flexuosus, ventrally; 22—tegmen apex H. flexuosus, dorsally; 23—tegmen sclerotization H. flexuosus, dorsal. On Figs. 18 & 21 most of the sclerites and membranes connecting the lateral lobes of tegmen and penis base are omitted. Scale bar = 0.1 mm.

opennotspecifiedJun 2019View details →
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FIGURE 4 in DNA barcodes and morphology revealed three species masquerading in Xiphydria camelus of authors (Hymenoptera, Xiphydriidae) in Northeast Asia: X. eborata sp. rev. and X. albopicta sp. nov.

FIGURE 4. Xiphydria camelus (A, F), X. albopicta (B, G) and X. eborata (C–E, H), females (A–D) and males (E–H).—A, Kangaslampi, Finland; B, holotype; C, syntype of X. eborata; D, Sounkyo, Hokkaido, Japan; E, H, lectotype of X. jozana; F, Satsunaigawa, Hokkaido, Japan; G, Pirikaneppu, Hokkaido, Japan.

opennotspecifiedMay 2019View details →
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FIGURE 3 in DNA barcodes and morphology revealed three species masquerading in Xiphydria camelus of authors (Hymenoptera, Xiphydriidae) in Northeast Asia: X. eborata sp. rev. and X. albopicta sp. nov.

FIGURE 3. Xiphydria camelus (A, B), X. albopicta (C–E) and X. eborata (F–I), heads in dorsofrontal view, females.—A, Hikawa-rindo, Honshu, Japan; B, Kangaslampi, Finland; C, holotype; D, Fuuren, Hokkaido, Japan; E, Ashibetsu, Hokkaido, Japan; F, Sounkyo, Hokkaido, Japan; G, syntype of X. eborata; H, lectotype of X. kawakamii; I, lectotype of X. kuccharonis.

opennotspecifiedMay 2019View details →
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FIGURE 18 in Morphological description and DNA barcoding of Hydrobaenus laticaudus Saether 1976 (Diptera: Chironomidae: Orthocladiinae) from Amur River basin (Russian Far East)

FIGURE 18. Bayesian phylogenetic tree of the genus Hydrobaenus and Parakifferiella sp. as outgroup based on the mitochondrial cytochrome c oxidase I (COI) barcode gene sequences (657-658 bp). The phylogenetic reconstruction was performed with using SYM+I, F81+I and GTR+G for each codon position. Bayesian posterior probabilities (PP) given in tree nodes. Specimens obtained in this study are in bold.

opennotspecifiedSep 2019View details →
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FIGURES 7–17 in Morphological description and DNA barcoding of Hydrobaenus laticaudus Saether 1976 (Diptera: Chironomidae: Orthocladiinae) from Amur River basin (Russian Far East)

FIGURES 7–17. Pupa (7–10) and larva of fourth instar (11–17) of Hydrobaenus laticaudus Saether. 7–8, thoracic horn; 9,

opennotspecifiedSep 2019View details →
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FIGURES 1–6 in Morphological description and DNA barcoding of Hydrobaenus laticaudus Saether 1976 (Diptera: Chironomidae: Orthocladiinae) from Amur River basin (Russian Far East)

FIGURES 1–6. Adult male of Hydrobaenus laticaudus Saether. 1, anal lobe of wing; 2, 4, gonocoxite and gonostylus; 3, hypopygium in dorsal view; 5–6, gonostylus.

opennotspecifiedSep 2019View details →
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FIGURES 7–17 in Morphological description and DNA barcoding of Hydrobaenus laticaudus Saether 1976 (Diptera: Chironomidae: Orthocladiinae) from Amur River basin (Russian Far East)

FIGURES 7–17. Pupa (7–10) and larva of fourth instar (11–17) of Hydrobaenus laticaudus Saether. 7–8, thoracic horn; 9, tergite II; 10, tergites VII–VIII and anal segment; 11, SI of labrum; 12, distal part of mandible; 13, premandible; 14–15, antenna; 16–17, mentum. Scale bars: Figs. 7–8—100 µm; Figs. 9–10—200 µm; Figs. 11–17—20 µm.

opennotspecifiedSep 2019View details →
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FIGURES 1–4 in Morphological description and DNA barcodes of adult males of Tanytarsus heliomesonyctios Langton, 1999 (Diptera, Chironomidae) in northeast of Russia

FIGURES 1–4. Details of the structure of hypopygium the male T. heliomesonyctios Langton. 1—total view of hypopygium, dorsal view; 2, 3—volsellae of gonocoxite; 4—superior volsella, lateral view. Scale bar 50 μm.

opennotspecifiedOct 2019View details →
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Fig. 2 in DNA barcoding in Dorcadionini (Coleoptera, Cerambycidae) uncovers mitochondrial-morphological discordance and the hybridogenic origin of several subspecies

Fig. 2 Maximum clade credibility ultrametric tree generated with Bayesian inference in BEAST from 162 Dorcadionini COI sequences (152 from this study, 10 from GenBank). Clades with numerous sequences and no delimitation issues are collapsed, with numbers

opennotspecifiedNov 2021View details →
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Fig. 6 in DNA barcoding in Dorcadionini (Coleoptera, Cerambycidae) uncovers mitochondrial-morphological discordance and the hybridogenic origin of several subspecies

Fig. 6 North-western distribution limit of D. equestre. Black circles: D. equestre equestre, red circles: D. equestre transsilvanicum. Yellow crosses: localities for the barcoded specimens. Distribution based on published localities, first author collection and other public collections

opennotspecifiedNov 2021View details →
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Fig. 7 in DNA barcoding in Dorcadionini (Coleoptera, Cerambycidae) uncovers mitochondrial-morphological discordance and the hybridogenic origin of several subspecies

Fig. 7 Habitus of voucher specimens (from left to right): Dorcadion lugubre lugubre (luKe1001 and luKe0801), D. lugubre × D. lineatocolle (linPro1001) and D. lineatocolle (linAng1001). All at the same

opennotspecifiedNov 2021View details →
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Fig. 4 in DNA barcoding in Dorcadionini (Coleoptera, Cerambycidae) uncovers mitochondrial-morphological discordance and the hybridogenic origin of several subspecies

Fig. 4 Comparison between interspecific and intraspecific pairwise genetic distances in Dorcadionini based on the DNA barcode. Distances were calculated once with all sequences from a species included (graphs on left side) or after excluding taxa resulted from introgression and mitochondrial capture (graphs on right side). With introgression removed, the grey area of overlap between intraspecific and interspecific distances decreases, the number of uncertain cases dropping from 16 to 4 (one square represents one mean pairwise distance)

opennotspecifiedNov 2021View details →
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FIGURES 2–7. Adults. 2–3 in DNA barcodes and morphological evidence reveal a new genus of Nygmiini (Lepidoptera: Erebidae: Lymantriinae) from China

FIGURES 2–7. Adults. 2–3. Aurivalva yunnanpina comb. nov. (2. male; 3. female); 4–5. Aurivalva telephanes comb. nov. (4. male; 5. female); 6. Aurivalva conistica comb. nov. (male); 7. Nygmia icilia Stoll (type species of Nygmia, holotype, male, copyright from Natural History Museum in London). Scale bars = 10 mm.

opennotspecifiedAug 2024View details →
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FIGURES 12–13. Female genitalia. 12 in DNA barcodes and morphological evidence reveal a new genus of Nygmiini (Lepidoptera: Erebidae: Lymantriinae) from China

FIGURES 12–13. Female genitalia. 12. Aurivalva yunnanpina comb. nov.; 13. Aurivalva telephanes comb. nov. Scale bars = 1 mm.

opennotspecifiedAug 2024View details →
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FIGURES 8–11. Male genitalia. 8 in DNA barcodes and morphological evidence reveal a new genus of Nygmiini (Lepidoptera: Erebidae: Lymantriinae) from China

FIGURES 8–11. Male genitalia. 8. Aurivalva yunnanpina comb. nov.; 9. Aurivalva telephanes comb. nov.; 10. Aurivalva conistica comb. nov.; 11. Nygmia icilia Stoll (type species of Nygmia, holotype, male, copyright from Natural History Museum in London). Scale bars = 1 mm.

opennotspecifiedAug 2024View details →
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FIGURE 1 in DNA barcodes and morphological evidence reveal a new genus of Nygmiini (Lepidoptera: Erebidae: Lymantriinae) from China

FIGURE 1. Phylogenetic tree inferred from ML analysis of COI gene of Nygmiini species. Bootstrap (BS) values are given near the clade nodes.

opennotspecifiedAug 2024View details →
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FIGURE 16. Neighborjoiningtreesbasedonthe COI-5P in Morphological description and DNA barcoding of Thalassomya paraskevae sp. nov. (Diptera: Chironomidae: Telmatogetoninae) from coast of the Black Sea

FIGURE 16. Neighborjoiningtreesbasedonthe COI-5P (A) and COI-3P (B) nucleotidesequencedataof thegenus Thalassomya Schiner with Telmatogeton Schiner as an outgroup. Bootstrap support values (higher than 70%) are given above tree nodes. The sequences obtained in this study are in bold.

opennotspecifiedSep 2024View details →
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FIGURES 12–15 in Morphological description and DNA barcoding of Thalassomya paraskevae sp. nov. (Diptera: Chironomidae: Telmatogetoninae) from coast of the Black Sea

FIGURES 12–15. Habitats of Thalassomya paraskevae sp. nov. on the coast of the Black Sea near New Athos (Abkhazia) (12– 13, type locality) and Cape Kadosh in the vicinity of Tuapse (Krasnodar Territory, Russia) (14–15). Arrows indicate collection points.

opennotspecifiedSep 2024View details →
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FIGURES 1–8 in Morphological description and DNA barcoding of Thalassomya paraskevae sp. nov. (Diptera: Chironomidae: Telmatogetoninae) from coast of the Black Sea

FIGURES 1–8. Adult male of Thalassomya paraskevae sp. nov. 1, head; 2, antenna; 3, wing; 4, claws of mid leg; 5, claws of hind leg; 6, endomeres and phallapodemes; 7–8, hypopygium, in dorsal view; 9, part of hypopygium, in ventral view; 10, dorsobasal lobe of gonocoxite; 11, gonostylus.

opennotspecifiedSep 2024View details →
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FIGURE 19 in Alpha-taxonomy and phylogeny of African Junoniini butterflies based on morphological data, with an emphasis on genitalia, and COI barcode (Lepidoptera Nymphalidae)

FIGURE 19. Maximum Parsimony tree based on morphological characters. The left value is the Bremer support, and the right value is the Bootstrap support.

opennotspecifiedJun 2021View details →

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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.

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Last verified 2026-04-29Open record