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972 results for “morphological barcode”
Fig. 40 in MORPHOLOGICAL REDESCRIPTION AND DNA BARCODING OF TORLEYA PADUNICA KAZLAUSKAS, 1963 (EPHEMEROPTERA, EPHEMERELLIDAE) FROM THE EAST PALAEARCTIC REGION
Fig. 40. Ultrametric Bayesian inference (BI) tree based on the cytochrome c oxidase I (COI) nucleotide sequence data of the genus Torleya Lestage. Bayesian posterior probabilities (higher than 0.7) are given above tree nodes. Specimens obtained in this study are in bold.
Figs 15–21 in MORPHOLOGICAL REDESCRIPTION AND DNA BARCODING OF TORLEYA PADUNICA KAZLAUSKAS, 1963 (EPHEMEROPTERA, EPHEMERELLIDAE) FROM THE EAST PALAEARCTIC REGION
Figs 15–21. Larvae of Torleya padunica. 15 – head; 16 – labrum; 17 –hypopharynx and superlinguas; 18, 19 – mandibles, ventral view (18 – right, 19 – left); 20 – maxilla; 21 – labium.
Figs 36–39. Torleya mikhaili, genitalia. 36 in MORPHOLOGICAL REDESCRIPTION AND DNA BARCODING OF TORLEYA PADUNICA KAZLAUSKAS, 1963 (EPHEMEROPTERA, EPHEMERELLIDAE) FROM THE EAST PALAEARCTIC REGION
Figs 36–39. Torleya mikhaili, genitalia. 36 – styliger and gonostyli; 37 – penis; 38 – penis and gonostyli; 39 – penis lobes. 36, 38–39 – ventral view; 37 – dorsal view.
Fig. 1 in Morphological description and DNA barcode information of seven newly reported nudibranch species from Korea
Fig. 1. Images of seven Nudibranchia species in Korea. A, Dendronotus primorjensis Martynov, Sanamyan & Korshunova, 2015; B, Doto japonica Odhner, 1936; C, Trinchesia ornata (Baba, 1937); D, E, Antiopella fusca (O'Donoghue, 1924); F, Cadlina paninae Korshunova, Fletcher, Picton, Lundin, Kashio, N. Sanamyan, K. Sanamyan, Padula, Schrödi & Martynov, 2020; G, Rostanga bifurcata Rudman & Avern, 1989; and H, Goniodoridella savignyi Pruvot-Fol, 1933.
Figures 1–4 in Halictus hedini hedini (Hymenoptera: Halictidae) newly recorded from Japan, revealed by DNA barcoding and morphology
Figures 1–4. Photographs of Halictus hedini hedini Blüthgen and H. rubicundus (Christ). 1–2. Lateral habitus of H. hedini hedini (1 female, 2 male). 3–4. 1st metasomal tergum of female (3 H. hedini hedini, 4 H. rubicundus).
Fig. 2 in First record of the sedge feeder Bactra verutana Zeller (Lepidoptera: Tortricidae) in Chile based on morphology and DNA barcodes
Fig. 2. Bayesian tree of Bactra verutana and congenerics based on sequences of the DNA barcode fragment (658 bp) of the cytochrome c oxidase subunit I (COI) gene. Node supports (posterior probability) indicated above branches.
Fig. 1 in First record of the sedge feeder Bactra verutana Zeller (Lepidoptera: Tortricidae) in Chile based on morphology and DNA barcodes
Fig. 1. Adult Bactra verutana collected in the Azapa Valley, northern Chile. (A) Male in dorsal view. (B) Female genitalia in ventral view. (C) Male genitalia in ventral view. Scale bars 1, 0.2 and 2.2 mm, respectively.
Figure 6 in New records of water mites (Acari, Hydrachnidia) from Iran and Türkiye based on morphology and DNA barcodes with description of one new species
Figure 6. Photographs of sampling sites: A – stream near Şirindere (TR6-2023), Aydin, Türkiye, locus typicus of Torrenticola eseni sp. nov. and sampling site of Lebertia variolata. B – Tabakhane stream near Kalfaköy (TR12-2023), Aydin, Türkiye, sampling site of T. eseni sp. nov. and T. baueri. C – Agh Sou stream (IR6-2022), Golestan, Iran, sampling site of Torrenticola ramini, Sperchon amuzgari, S. papillosus/compactilis-complex and Hygrobates persicus. D – canal (IR7-2022) Khorasan-e Razavi Iran, sampling site of Hygrobates angustipalpis and H. persicus. E – Kahne stream (IR13-2022), Khorasan-e Razavi, Iran, sampling site of Torrenticola baueri, Sperchon papillosus/compactilis and Atractides zagrosensis. F – canal from qanat (IR11-2022), North Khorasan, Iran, sampling site of Hygrobates persicus. G – stream (IR16-2022), North Khorasan, Iran, sampling site of H. angustipalpis. Photos by V. Pešić.
Figure 4 in New records of water mites (Acari, Hydrachnidia) from Iran and Türkiye based on morphology and DNA barcodes with description of one new species
Figure 4. Photographs of dorsal shields. A – Torrenticola laskai ♂ [CCDB 38559 G11], stream N of Col de Bavella, Corsica. B – T. laskai ♂ [CCDB 38559 F01], Riviere Casaluna, Corsica. C – T. dowlingi paratype ♂, river near Karaj, Iran. D – T. laskai, ♂, Crnovrška River, Serbia. E – T. eseni sp. nov., paratype ♀, stream near Şirindere. Photos by V. Pešić. Figs. A-B (from Pešić & Smit 2022; in Pešić & Smit 2020 fig. 3, the photographs of dorsal shield and ejaculatory complex for specimens [CCDB 38559 G11] and [CCDB 38559 F01] respectively, were mistakenly replaced, thus fig. 3c-d refers to [CCDB 38559 G11] and fig. 3f-g to [CCDB 38559 F01]), C-D (from Pešić et al. 2020b).
Figure 3 in New records of water mites (Acari, Hydrachnidia) from Iran and Türkiye based on morphology and DNA barcodes with description of one new species
Figure 3. Torrenticola eseni sp. nov., paratype ♀ [CCDB_39399_B10], Tabakhane stream near Kalfaköy, Türkiye. A – dorsal shield; B – palp, medial view (P-1 lacking). Scale bars = 100 μm.
Figure 1. Torrenticola ramini Bader, 1988 in New records of water mites (Acari, Hydrachnidia) from Iran and Türkiye based on morphology and DNA barcodes with description of one new species
Figure 1. Torrenticola ramini Bader, 1988, ♀ [CCDB_39399_E10], Agh Sou, Iran. A – dorsal shield; B – ventral shield; C – palp, medial view (P-1 lacking); D – gnathosoma and chelicera. Scale bars = 100 μm.
Figure 2 in New records of water mites (Acari, Hydrachnidia) from Iran and Türkiye based on morphology and DNA barcodes with description of one new species
Figure 2. Torrenticola eseni sp. nov., holotype ♂ [CCDB_39399_B06], stream near Şirindere, Türkiye. A – dorsal shield; B – ventral shield; C – I-Leg-5 and -6; D – palp, lateral view (P-1 lacking); D – gnathosoma and chelicera; F-G – ejaculatory complex. Scale bars = 100 μm.
Figure 3 in Sperchon milisai nov. sp., an overlooked new species of water mites (Acari, Hydrachnidia, Sperchontidae) from Montenegro and Croatia, based on morphological and DNA barcode evidence
Figure 3. Sperchon milisai sp. nov., holotype ♂, Rikavac, Montenegro: idiosoma, ventral view. Scale bar = 100 µm.
Figure 2 in Sperchon milisai nov. sp., an overlooked new species of water mites (Acari, Hydrachnidia, Sperchontidae) from Montenegro and Croatia, based on morphological and DNA barcode evidence
Figure 2. Results of ASAP analysis for COI sequences. (A) Distribution of pairwise differences, (B) Ranked pairwise differences.
Figure 1 in Sperchon milisai nov. sp., an overlooked new species of water mites (Acari, Hydrachnidia, Sperchontidae) from Montenegro and Croatia, based on morphological and DNA barcode evidence
Figure 1. Maximum-likelihood phylogeny of Sperchon (Hispidosperchon) spp. based on COI haplotypes and the results of species delimitation analyses. Values near branches show bootstrap support (BS). The results of species delimitation by ASAP procedure are indicated by vertical bars. Country codes (alpha-2 code): AT = Austria, CR = Croatia, GR = Greece, IR = Iran, NL = Netherlands, ME = Montenegro, MK = North Macedonia, KG = Kyrgyzia, RU = Russia.
Figure 5 in Sperchon milisai nov. sp., an overlooked new species of water mites (Acari, Hydrachnidia, Sperchontidae) from Montenegro and Croatia, based on morphological and DNA barcode evidence
Figure 5. Sperchon milisai sp. nov. (B-E, holotype ♂; A, paratype ♀), Rikavac, Montenegro: A-B – palp, medial view; C – IV-leg; D – ejaculatory complex; D – photograph of ejaculatory complex. Scale bars = 100 µm.
Figure 6 in Sperchon milisai nov. sp., an overlooked new species of water mites (Acari, Hydrachnidia, Sperchontidae) from Montenegro and Croatia, based on morphological and DNA barcode evidence
Figure 6. Rikavac stream in Montenegro - locus typicus of Sperchon milisai sp. nov. A – view from Old Bar. B – sample site.
FIGURE 4 in Integrative taxonomy reveals disjunct distribution and first record of Hoplias misionera (Characiformes: Erythrinidae) in the Amazon River basin: morphological, DNA barcoding and cytogenetic considerations
FIGURE 4 | Neighbor joining (NJ) tree of Hoplias inferred from partial COI (Cytochrome c Oxidase Subunit I gene) sequences using the Kimura 2-parameter model. The lateral bar indicates the partitions of species delimitation performed by the GMYC, ABGD and BIN analysis. The clade Hoplias misionera nested individuals from the La Plata and Amazon basins (blue tips).
FIGURE 7 in Integrative taxonomy reveals disjunct distribution and first record of Hoplias misionera (Characiformes: Erythrinidae) in the Amazon River basin: morphological, DNA barcoding and cytogenetic considerations
FIGURE 7 | Updated distribution map of Hoplias misionera showing former known localities in Argentina and southern Brazil (Rosso et al., 2016) and the new records from Amazon basin (triangles). Star = type locality.
FIGURE 1 in Integrative taxonomy reveals disjunct distribution and first record of Hoplias misionera (Characiformes: Erythrinidae) in the Amazon River basin: morphological, DNA barcoding and cytogenetic considerations
FIGURE 1 | Hoplias misionera, UFOPA AMTRA131-19, 237 mm SL, Amazonas River, Alenquer, Pará, Brazil. Lateral view. Scale bar = 1 cm. Photo by L.R.R. Rodrigues.
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.