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.
1,968
datasets available to search
ShareScore release 0.9.0
Dataset results
1,968 results for “morphological taxonomy”
Figure 3 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
Figure 3 ML phylogenetic tree for the tribes Haematopotini and Heptatomini based on COI sequences of specimens sampled in this work and congeneric sequences from BOLD database of public records. The clades corresponding to MOTUs (as determined by species delimitation methods) are collapsed for simplicity; numbers on the nodes denote ML aLRT support (values lower than 0.70 are not shown). MOTUs containing sequences obtained in this study are marked in blue; the results of the species delineation methods for the newly sequenced samples are presented as vertical bars beside the respective MOTU clades (bPTP in red; ABGD in green; ASAP in yellow; classification into BOLDBINs as assigned by BIN-RESL, with newly established BINs marked in bold font).
Supplementary material 3 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
Figure S1. NJ tree for the tribe Chrysopsini
Figure 2 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
Figure 2 Maximum likelihood (ML) phylogenetic tree for the tribe Chrysopsini based on COI sequences of specimens sampled in this work and congeneric sequences from BOLD database of public records. The clades corresponding to MOTUs (as determined by species delimitation methods) are collapsed for simplicity; numbers on the nodes denote ML aLRT support (values lower than 0.70 are not shown). MOTUs containing sequences obtained in this study are marked in red; the results of the species delineation methods for the newly sequenced samples are presented as vertical bars beside the respective MOTU clades (bPTP in red; ABGD in green; ASAP in yellow; classification into BOLDBINs as assigned by BIN-RESL).
Supplementary material 5 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
Figure S3. NJ tree for the tribes Tabanini and Diachlorini
Supplementary material 2 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
COI multiple sequence alignments
Figure 4 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
Figure 4 ML phylogenetic tree for the tribes Tabanini and Diachlorini based on COI sequences of specimens sampled in this work and congeneric sequences from BOLD database of public records. The clades corresponding to MOTUs (as determined by species delimitation methods) are collapsed for simplicity; numbers on the nodes denote ML aLRT support (values < 0.70 are not shown). MOTUs containing sequences obtained in this study are marked in green; the results of the species delineation methods for the newly sequenced samples are presented as vertical bars beside the respective MOTU clades (bPTP in red; ABGD in green; ASAP in yellow; classification into BOLDBINs as assigned by BIN-RESL, with newly established BINs marked in bold font).
Figure 1 from: Krčmar S, Kučinić M, Pezzi M, Bruvo Mađarić B (2022) DNA barcoding of the horsefly fauna (Diptera, Tabanidae) of Croatia with notes on the morphology and taxonomy of selected species from Chrysopsinae and Tabaninae. ZooKeys 1087: 141-161. https://doi.org/10.3897/zookeys.1087.78707
Figure 1 Sampling sites of horseflies (Diptera: Tabanidae) in Croatia: 1 – Branjina, 2 – Desne, 3 – Djedovica (Papuk Mountain), 4 – Donje Maovice, 5 – Kutjevo, 6 – Normanci, 7 – Njivice (Krk Island), 8 – Peruča, 9 – Petrov vrh (Papuk Mountain), 10 – Seona (Našice), 11 – Tugare, 12 – Velika, 13 – Voćin, 14 – Zmajevac. The details about localities can be found in BOLD project CROTA. Acronyms for the countries: HR: Croatia; SLO: Slovenia; HU: Hungary; RS: Republic of Serbia; BH: Bosnia and Herzegovina: IT: Italy.
Supplementary material 4 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure S4
Supplementary material 3 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure S3
Supplementary material 2 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure S2
Supplementary material 1 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure S1
Figure 9 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 9 Plot of the results of discriminant function analysis of shell length, width, and height for individuals of Nipponacmea species.
Figure 5 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 5 Pigmentation of side of foot AN. gloriosa, RM31861, Manazuru, Kanagawa (14) BN. fuscoviridis, RM31847, Tateyama, Chiba (13) CN. boninensis, RM31816, Chichijima Is., Ogasawara (43) DN. schrenckii, RM31908, Kazamaura, Aomori (6) EN. concinna, RM31830, Omura, Nagasaki (34) FN. radula, RM31900, Nagato, Yamaguchi (31) GN. nigrans, RM32361, Kushimoto, Wakayama (20) HN. habei, RM31870, Otaru, Hokkaido (2) IN. teramachii, RM31917, Tateyama, Chiba (13). Scale bars: 5 mm.
Figure 1 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 1 Collection localities of the specimens used in this study. The numbers are shown in Table 1.
Figure 7 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 7 Scanning micrographs of radular teeth of of NipponacmeaAN. gloriosa, RM32355, Ibusuki, Kagoshima (41) BN. gloriosa, RM31860, Tateyama, Chiba (13) CN. fuscoviridis, RM31858, Kimotsukicho, Kagoshima (42) DN. fuscoviridis, RM32354, Akune, Kagoshima (39) EN. fuscoviridis, RM31834, Rumoi, Hokkaido (1) FN. boninensis, RM31817, Chichijima Is., Ogasawara (43) GN. boninensis, RM31815, Chichijima Is., Ogasawara (43) HN. schrenckii, RM31915, Suo-Oshima, Yamaguchi (30) IN. schrenckii, RM31906, Kazamaura, Aomori (6) JN. schrenckii, RM31916, Nagatamachi, Nagasaki (35) KN. concinna, RM31831, Omura, Nagasaki (34) LN. concinna, RM32353, Nagatamachi, Nagasaki (35) MN. concinna, RM31823, Tahara, Aichi (19) NN. radula, RM31898, Hamamatsu, Shizuoka (18) ON. radula, RM31904, Omura, Nagasaki (34) PN. radula, RM32363, Akune, Kagoshima (37) QN. nigrans, RM32360, Kushimoto, Wakayama (20) RN. nigrans, RM32359, Kushimoto, Wakayama (20) SN. nigrans, RM32358, Kushimoto, Wakayama (20) TN. habei, RM32364, Tateyama, Chiba (13) UN. habei, RM31872, Suttu, Hokkaido (3) VN. habei, RM31873, Usujiri, Hokkaido (5) WN. habei, RM32357, Usujiri, Hokkaido (5) XN. habei, RM32356, Tateyama, Chiba (13) YN. teramachii, RM31926, Sanuki, Kagawa (28) ZN. teramachii, RM31924, Ohira, Oita (25). Scale bars: 50 μm.
Figure 6 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 6 Configuration of radula sac of nine species of NipponacmeaAN. gloriosa, RM32355, Ibusuki, Kagoshima (41) BN. fuscoviridis, RM32354, Akune, Kagoshima (39) CN. boninensis, RM31817, Chichijima Is., Ogasawara (43) DN. schrenckii, RM31906, Kazamaura, Aomori (6) EN. concinna, RM32353, Nagatamachi, Nagasaki (35) FN. radula, RM32363, Akune, Kagoshima (37) GN. nigrans, RM32362, Kushimoto, Wakayama (20) HN. habei, RM32356, Tateyama, Chiba (13) IN. teramachii, RM31928, Suo-Oshima, Yamaguchi (30). Scale bars: 5 mm.
Figure 3 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 3 Shell morphology and color pattern of Nipponacmea gloriosa and four species of Clade A A–CN. gloriosa, RM31869, Ibusuki, Kagoshima (41) DN. gloriosa, RM31860, Tateyama, Chiba (13) EN. gloriosa, RM31862, Manazuru, Kanagawa (14) F–HN. fuscoviridis, RM31858, Kimotsuki, Kagoshima (42) IN. fuscoviridis, RM31846, Nikaho, Akita (10) JN. fuscoviridis, RM31859, Kimotsuki, Kagoshima (42) K–MN. boninensis, RM31817, Chichijima Is., Ogasawara (43) NN. boninensis, RM31815, Chichijima Is., Ogasawara (43) ON. boninensis, RM31816, Chichijima Is., Ogasawara (43) P–RN. schrenckii, RM31906, Kazamaura, Aomori (6) SN. schrenckii, RM31908, Kazamaura, Aomori (6) TN. schrenckii, RM31916, Nagatamachi, Nagasaki (35) U–WN. concinna, RM31820, Ofunato, Iwate (11) XN. concinna, RM31824, Mihamacho, Wakayama (21) YN. concinna, RM31828, Suo-Oshima, Yamaguchi (30). Scale bars: 5 mm.
Figure 2 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 2 Maximum likelihood phylogenetic tree generated from 1809 bp constructed from the concatenated COI, Cytb, 12S rRNA, and 16S rRNA gene sequences from Nipponacmea representatives. Numbers above or below the branches are ML bootstrap values and Bayesian posterior probabilities, respectively. See Table 2 for sample numbers.
Figure 4 from: Teruya S, Setiamarga DHE, Nakano T, Sasaki T (2022) Molecular phylogeny of Nipponacmea (Patellogastropoda, Lottiidae) from Japan: a re-evaluation of species taxonomy and morphological diagnosis. ZooKeys 1087: 163-198. https://doi.org/10.3897/zookeys.1087.78193
Figure 4 Shell morphology and color pattern of N. radula and three species of clade B A–CN. radula, RM31904, Omura, Nagasaki (34) DN. radula, RM31902, Omura, Nagasaki (34) EN. radula, RM31899, Nagato, Yamaguchi (31) F–HN. nigrans, RM31892, Nishiku, Fukuoka (32) IN. nigrans, RM31888, Kada, Wakayama (22) JN. nigrans, RM31895, Higashisonogi, Nagasaki (33) K–MN. nigrans, RM31887, Minamiizu, Shizuoka (15) NN. nigrans, RM31886, Minamiizu, Shizuoka (15) ON. nigrans, RM31897, Higashisonogi, Nagasaki (33) P–RN. habei, RM31874, Ishinomaki, Miyagi (12) SN. habei, RM31875, Tateyama, Chiba (13) TN. habei, RM31873, Usujiri, Hokkaido (5) U–WN. teramachii, RM31930, Nishiku, Fukuoka (32) XN. teramachii, RM31925, Sanuki, Kagawa (28) YN. teramachii, RM31922, Ainancho, Ehime (24). Scale bars: 5 mm.
FIGURE 105 in Revealing the diversity of ant-eating spiders in Colombia I: morphology, distribution and taxonomy of the barronus group of the genus Tenedos O. Pickard-Cambridge, 1897 (Araneae: Zodariidae)
FIGURE 105. General representation of the distribution of the barronus species group in Colombia.
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.