Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
3,292
datasets available to search
ShareScore release 0.9.0
Dataset results
3,292 results for “DNA barcodes”
Figure 1 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 1. Map of the study area with sampling stations. Names and corresponding abbreviations of the stations are listed in Table 1.
Figure 3 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 3. MDS analysis of caddisfly fauna similarity at stations on the Cetina, the Ruda, the Grab and the Rumin rivers.
Figure 2 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 2. Cluster analysis of caddisfly fauna similarity at stations on the rivers Cetina, Ruda, Grab and Rumin.
Figure 4 in First DNA barcoding of a new alien species Glycaspis brimblecombei Moore, 1964 (Hemiptera: Aphalaridae) in Croatia with a distribution note
Figure 4. Neighbor-joining phylogenetic tree constructed by sequences of the mtCOI-3P of Glycaspis brimblecombei Lokrum, Croatia of Glycaspis species from BOLD and GenBank databases, based on Kimura-2-parameter distance model. Numbers at nodes are NJ bootstrap support values calculated from 2000 bootstrap replicates.
Figure 1 in First DNA barcoding of a new alien species Glycaspis brimblecombei Moore, 1964 (Hemiptera: Aphalaridae) in Croatia with a distribution note
Figure 1. Distribution of species Glycaspis brimblecombei. A. Spread of the species G. brimblecombei. The coloration of the lines shows the spread of the species in the temporal scale (excluding localities for which the year of occurrence of the species is not known), B. and C. Location of sampling – Botanical Garden of the Institute for Marine and Coastal Research on the island of Lokrum.
Figure 3 in First DNA barcoding of a new alien species Glycaspis brimblecombei Moore, 1964 (Hemiptera: Aphalaridae) in Croatia with a distribution note
Figure 3. Developmental stages of Glycaspis brimblecombei: A. lerps, nymphs and egg cluster, B. adult (scale: 1 mm).
Figure 4 in DNA barcoding and a new taxonomic status of the Triaenodes ochreellus lefkas Malicky, 1974 (Insecta, Trichoptera) with new distribution data
Figure 4. Distribution of Triaenodes ochreellus ochreellus (green field) and Triaenodes ochreellus lefkas (blue field) with new data in Albania, Croatia and Montenegro (red points).
Figure 3 in DNA barcoding and a new taxonomic status of the Triaenodes ochreellus lefkas Malicky, 1974 (Insecta, Trichoptera) with new distribution data
Figure 3. Maximum likelihood (Ml) phylogram based on the 658 bp long fragment of the DNA barcode region showing the relationships among the species of the genus Triaenodes. Numbers above the branches represent bootstrap support (bs) for Neighbor-Joining (NJ) and Ml analysis (NJ/Ml). BS values less than 70 are not shown. The groups delineated by Automatic Barcode Gap Discovery (ABGD) approach are shown on the right side of the tree.
Figure 4 in A surprising finding of Ecclisopteryx asterix Malicky, 1979 (Insecta, Trichoptera) in Croatia with notes to DNA barcoding and new distributional data of the subfamily Drusinae
Figure 4. Spatial distribution of the Drusinae species in Croatia, literature data supplemented with new records.
Figure 3 in A surprising finding of Ecclisopteryx asterix Malicky, 1979 (Insecta, Trichoptera) in Croatia with notes to DNA barcoding and new distributional data of the subfamily Drusinae
Figure 3. Maximum likelihood phylogram based on the COI sequences of Ecclisopteryx asterix from Croatia and haplotypes of Ecclisopteryx species available in BOLD database. Numbers at the nodes indicate maximum likelihood (ML) bootstrap support values (BS). Terminal codes represent BOLD Process IDs.
Figure 2. A in A surprising finding of Ecclisopteryx asterix Malicky, 1979 (Insecta, Trichoptera) in Croatia with notes to DNA barcoding and new distributional data of the subfamily Drusinae
Figure 2. A Larva of Ecclisiopteryx asterix in its case; B morphological character important for identification: shape of the pronotum (p); C pronotum (p), mesonotum (me), and sclerites at metanotum (mt) in dorsal view; D abdominal segments I-VI with gills (g) and lateral fringe (lf), right lateral view.
Figure 1. A in A surprising finding of Ecclisopteryx asterix Malicky, 1979 (Insecta, Trichoptera) in Croatia with notes to DNA barcoding and new distributional data of the subfamily Drusinae
Figure 1. A New record of Ecclisopteryx asterix Malicky, 1979 in Croatia (red dot) and hitherto known range in Austria, Slovenia and Italy (yellow area) (Robert, 2015); B the crenal reach of the Šumi Spring, and C a close up of the habitat where E. asterix larvae were collected.
Figure 1 in An updated checklist of water mites (Acari, Hydrachnidia) of Serbia with new records revealed by DNA barcodes
Figure 1. Photographs of selected sampling sites: A – Visočica river, Pirot, Eastern Serbia (sampling site of Lebertia glabra, Torrentcola barsica, T. laskai and Atractides glandulosus). B – Vlasina, Milovanci, pond (sampling site of Arrenurus bruzelii and A. virens). C – Vlasina, Murinska reka, helocrenic springs and stream (sampling site of Hydryphantes parmulatus and Lebertia stigmatifera). Photos by V. Pešić.
Figure 2 in New records and first DNA barcodes of water mites (Acari, Hydrachnidia) from Georgia
Figure 2. Photographs of selected sampling sites: A – unnamed pond (Javakheti); B – Lake Saghamo; C – pond near Ozaani; D – Paravani Lake. Photos by L. Mumladze.
Figure 1 in New records and first DNA barcodes of water mites (Acari, Hydrachnidia) from Georgia
Figure 1. Thyasides dentatus (Thor, 1897), ♀, unnamed Pond (Javakheti), Georgia. Photographs of genital field (A) and palp (B).
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.
ScienceDex guides
Understand access before you commit
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.