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.
727
datasets available to search
ShareScore release 0.9.0
Dataset results
727 results for “molecular taxonomy”
FIGURE 3 in Integrative taxonomy base on morphology and molecular phylogeny with description of a new genus, Progoniogryllus gen. nov. and two new species (Orthoptera: Grylloidea: Gryllidae; Gryllinae)
FIGURE 3. Copulation of P. directus sp. nov. (female above male).
FIGURE 14 in Integrative taxonomy of Malagasy treefrogs: combination of molecular genetics, bioacoustics and comparative morphology reveals twelve additional species of Boophis 2383
FIGURE 14. Male Boophis obscurus (UADBA uncatalogued) from Ranomafanakely.
FIGURE 2 in Integrative taxonomy of Malagasy treefrogs: combination of molecular genetics, bioacoustics and comparative morphology reveals twelve additional species of Boophis 2383
FIGURE 2. Male holotype of Boophis piperatus sp. nov. (ZSM 377/2004) from Ranomafana.
FIGURE 13 in Integrative taxonomy of Malagasy treefrogs: combination of molecular genetics, bioacoustics and comparative morphology reveals twelve additional species of Boophis 2383
FIGURE 13. Male holotype of Boophis spinophis sp. nov. (ZSM 376/2004) from Ambatolahy.
FIGURE 17 in Integrative taxonomy of Malagasy treefrogs: combination of molecular genetics, bioacoustics and comparative morphology reveals twelve additional species of Boophis 2383
FIGURE 17. Female holotype of Boophis praedictus sp. nov. (ZMA 20131) from Vevembe.
Figure 4 in Morphological and molecular taxonomy of a new Daptonema (Nematoda, Xyalidae) with comments on the systematics of some related taxa
Figure 4. Drawing of Daptonema matrona sp. nov. allotype: A, habitus; B, cephalic region; C, tail.
Figure 10 in Molecular taxonomy reveals an overlooked cryptic species of the tiger moth genus Murzinowatsonia Dubatolov (Lepidoptera, Arctiinae) from Sichuan, China
Figure 10. China, West Sichuan, near Litang. Habitat of M. x-album (Photos by A. Saldaitis).
Figure 2 from: Novo M, Fernández R, Fernández Marchán D, Gutiérrez M, Diaz Cosin D (2012) Compilation of morphological and molecular data, a necessity for taxonomy: The case of Hormogaster abbatissae sp. n. (Annelida, Clitellata, Hormogastridae). ZooKeys 242: 1-17. https://doi.org/10.3897/zookeys.242.3996
Figure 2 - Top, part of the parsimony tree recovered by Novo et al. (2011), showing the clade where Hormogaster abbatissae was placed (in that work it is named sp n.). Bottom, network representation for 16S-tRNA and COI recovered by SplitsTree4 of the closest species (surrounded by a black square in the tree above) and Hormogaster elisae and Aporrectodea trapezoides as distant references.The number of specimens used is indicated in parenthesis.
Figure 1 from: Novo M, Fernández R, Fernández Marchán D, Gutiérrez M, Diaz Cosin D (2012) Compilation of morphological and molecular data, a necessity for taxonomy: The case of Hormogaster abbatissae sp. n. (Annelida, Clitellata, Hormogastridae). ZooKeys 242: 1-17. https://doi.org/10.3897/zookeys.242.3996
Figure 1 - External morphology of Hormogaster abbatissae. An illustration of nephridial bladders in segments 14 and 50 is shown in the upper right corner.
Figure 5 from: Spodek M, Ben-Dov Y, Ghanim M, Mendel Z (2012) Morphological and molecular taxonomy of Nidularia balachowskii Bodenheimer (Hemiptera, Coccoidea, Kermesidae) with notes on its life history in Israel. ZooKeys 254: 23-45. https://doi.org/10.3897/zookeys.254.3959
Figure 5 - Maximum likelihood trees of 28S (a) and COI (b) nucleotide sequences of Nidularia balachowskii and other Coccoidea species. Acyrthosiphon pisum (Aphididae) sequences are used as outgroup species for both trees. Trees were constructed using K2P distance model and numerical values are bootstrap support, based on 1000 replicates (n= number of replicates, * = sequences derived from GenBank).
Figures 44-55 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 44-55 - Male genitalia of Platerodrilus: 44–45 Platerodrilus wongi 46–47 Platerodrilus foliaceus 48–49 Platerodrilus major 50–51 Platerodrilus wittmeri 52–53 Platerodrilus talamauensis 54–55 Platerodrilus ranauensis. Scales 0.25 mm.
Figures 4-17 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 4-17 - Adult male, general appearance: 4 Platerodrilus foliaceus 5 Platerodrilus wongi 6 Platerodrilus robinsoni 7 Platerodrilus maninjauensis 8 Platerodrilus luteus 9 Platerodrilus ranauensis 10 Platerodrilus sibayakensis 11 Platerodrilus sinabungensis 12 Platerodrilus tujuhensis 13 Platerodrilus montanus 14 Platerodrilus ijenensis 15 Platerodrilus talamauensis 16 Platerodrilus palawanensis 17 Platerodrilus wittmeri. Scales 2 mm.
Figures 2-3 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 2-3 - 2 Female larvae of Platerodrilus. 3 Platerodrilus sp. from Gn. Sinabung, Sumatra, ditto from Gn. Apo, Mindanao.
Figures 35-43 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 35-43 - Larvae of Platerodrilus and Macrolibnetis: 35–38 Platerodrilus spp. 39 Platerodrilus ruficollis 40 Platerodrilus foliaceus 41 Platerodrilus tujuhensis 42 Macrolibnetis depressus 43 Platerodrilus ngi. Scales 5 mm.
Figure 1 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figure 1 - Phylogenetic hypothesis for Platerodrilus Pic, 1921 based on a maximum likelihood analysis of the Muscle alignment. Numbers at the branches are maximum likelihood bootstrap values and Bayesian posterior probabilities. The red dots designate GMYC species clusters.
Figures 18-34 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 18-34 - Male pronotum of Platerodrilus. 18 Platerodrilus ijenensis 19 Platerodrilus robinsoni 20 Platerodrilus maninjauensis 21 Platerodrilus montanus 22 Platerodrilus foliaceus 23 Platerodrilus luteus 24 Platerodrilus ranauensis 25 Platerodrilus sibayakensis 26 Platerodrilus sinabungensis 27 Platerodrilus tujuhensis 28 Platerodrilus wongi 29 Platerodrilus talamauensis 30 Platerodrilus wittmeri 31 Platerodrilus palawanensis. Larva, general appearance: 32 Platerodrilus maninjauensis 33 Platerodrilus montanus 34 Platerodrilus paradoxus. Scales 0.5 mm (Figs 18–31); Scales 5 mm (32–34).
Figures 67-72 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 67-72 - Male genitalia of Platerodrilus: 67–68 Platerodrilus luteus 69–70 Platerodrilus palawanensis 71–72 Platerodrilus sibayakensis. Scales 0.25 mm.
Figures 56-66 from: Bocak L, Masek M (2014) The taxonomy and diversity of Platerodrilus (Coleoptera, Lycidae) inferred from molecular data and morphology of adults and larvae. ZooKeys 426: 29-63. https://doi.org/10.3897/zookeys.426.7398
Figures 56-66 - Male genitalia of Platerodrilus: 56–57 Platerodrilus tujuhensis 58–59 Platerodrilus sinabungensis 60–61 Platerodrilus maninjauensis 62–63 Platerodrilus robinsoni 64–65 Platerodrilus ijenensis 66 Platerodrilus montanus. Scales 0.25 mm.
Figure 1 from: Dimitriou AC, Taiti S, Schmalfuss H, Sfenthourakis S (2018) A molecular phylogeny of Porcellionidae (Isopoda, Oniscidea) reveals inconsistencies with present taxonomy. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 163-176. https://doi.org/10.3897/zookeys.801.23566
Figure 1 Dated phylogram based on concatenated data set including five genes (COI, 16s, 18s, 28s, NAK), generated using a relaxed lognormal clock in BEAST. BI posterior probabilities (>0.9) and ML bootstrap values (>60) are presented above the nodes. Estimated mean divergence time is given below the nodes only where nodes are statistically supported or the topology was identical between BI, ML and BEAST analyses. Subclades including individuals from more than one species have been collapsed to genus level, since all (except Porcellio) were monophyletic. Abbreviations: P. Porcellionidae, T. Trachelipodidae, A. Agnaridae, R. Armadillidiidae. Numbers in parentheses after each taxon name refer to numbering of taxa in Table 1.
FIG. 3 in Molecular characterization and morpho-taxonomy of Gambierdiscus caribaeus Vandersea, Litaker, M.A.Faust, Kibler, W.C.Holland & P.A.Tester (Dinophyceae) from Mauritius Island, South-West Indian Ocean
FIG. 3. — Scanning electron micrographs of Gambierdiscus caribaeus Vandersea, Litaker, M.A.Faust, Kibler, W.C.Holland & P.A.Tester (ISOG4): A, elliptical Po plate with pores and a large fishhook-shaped opening; B, inside top view of broken cell showing the elliptical Po plate with pores and a large fishhook shaped open- ing; C, ventral view showing the gradually ascend and then sharp descend of the right part of the cingulum near the sulcus; D, thecal pores on the smooth cell surface. Scale bars: A, B, 1 µm; C, D, 10 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.