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.
955
datasets available to search
ShareScore release 0.9.0
Dataset results
955 results for “Subtropical”
FIGURES 2–7 in Envekadea metzeltinii sp. nov., a new diatom (Bacillariophyta) species from the subtropical karstic wetlands of the Florida Everglades, U.S.A.
FIGURES 2–7: Envekadea metzeltinii. LM images. Fig 2: Specimen from Water Conservation Area 3A, Florida, U.S.A. (25°52.761, -80°41.476) collected by F. Tobias on November 17, 2009 (refer to Fig. 1). Figs 3–7: Specimens from holotype material. Scale bar represents 10 µm.
FIGURES 13–17. Fig. 13 in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
FIGURES 13–17. Fig. 13. Posterior trochanters of Dasymutilla males. 13A. Posterior trochanters produced into a blunt tooth internally. 13B. Posterior trochanters not produced into a blunt tooth internally. Fig. 14. Sternum II of Dasymutilla males. 14A. Sternum II lacking a median pit densely filled with setae. 14B. Sternum II with a median pit densely filled with setae. Fig. 15. Positioning of pit on sternum II of Dasymutilla males. 15A. Sternal pit anterior of center. 15B. Sternal pit median in position. 15C. Sternal pit posterior of center. Fig. 16. Pygidium of Dasymutilla males. 16A. Pygidium with an apical fringe of setae. 16B. Pygidium lacking an apical fringe of setae. Fig. 17. Posterolateral angles of last sternum of Dasymutilla males. 17A. Posterolateral angles dentate. 17B. Posterolateral angles rounded.
FIGURES 10–12. Fig. 10. Sternum II in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
FIGURES 10–12. Fig. 10. Sternum II of Dasymutilla. 10A. Sternum II scabrous at sides and apex. 10B. Sternum II not scabrous at sides and apex, merely punctate. Fig. 11. Scutellum of Dasymutilla males. 11A. Axillae of scutellum short and blunt. 11B. Axillae of scutellum long and pointed. 11C. Axillae of scutellum long, joined posteriorly, and with a median arm projecting anteriorly to form a "W"-shaped structure. Fig. 12. Wings of Dasymutilla males. 12A. Wings banded. 12B. Wings not banded, color uniform.
PLATE 3 in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
PLATE 3. Male genitalia of Dasymutilla. A. D. nocticaro. B. D. sinaloa. C. D. spiniscapula. D. D. truxali. E. D. sleipniri. F. D. veracruz. G. D. wasbaueri.
FIGURES 1–3. Fig. 1. Antennal scrobes. 1A. Antennal scrobes carinate. 1B. Antennal scrobes ecarinate. Fig. 2 in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
FIGURES 1–3. Fig. 1. Antennal scrobes. 1A. Antennal scrobes carinate. 1B. Antennal scrobes ecarinate. Fig. 2. Mandibles of Dasymutilla. 2A. Mandible bidentate. 2B. Mandible tridentate. Fig. 3. Apex of hind femur. 3A. Apex truncate and sulcate. 3B. Apex rounded and not sulcate.
FIGURE 5–9. Fig. 5. Antennal flagellomeres. 5A. Flagellomere I long, about 2X in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
FIGURE 5–9. Fig. 5. Antennal flagellomeres. 5A. Flagellomere I long, about 2X as long as wide, and about as long as III and IV united. 5B. Flagellomere I shorter, less than 2X as long as wide, and shorter than III and IV united. Fig. 6. Genae of Dasymutilla. 6A. Genal carina present. 6B. Gena ecarinate. Fig. 7. Posterolateral angles of head of Dasymutilla. 7A. Posterolateral angles bearing glabrous tubercles directed outward towards the compound eyes. 7B. Posterolateral angles lacking glabrous tubercles. Fig. 8. Shape of mesosoma of Dasymutilla females. 8A. Mesosoma long and narrow, longer than broad. 8B. Mesosoma short and broad, as broad as long. Fig. 9. Scutellar scale of Dasymutilla females. 9A. Scutellar scale present. 9B. Scutellar scale absent.
PLATE 1 in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
PLATE 1. Male genitalia of Dasymutilla. A. D. atrata. B. D. baylegi. C. D. bimaculata. D. D. boharti. E. D. brazilia. F. D. chamela. G. D. chillcotti. H. D. fimbriata. I. D. guanacaste.
PLATE 2 in Tropical and Subtropical Velvet Ants of the Genus Dasymutilla Ashmead (Hymenoptera: Mutillidae) with Descriptions of 45 New Species
PLATE 2. Male genitalia of Dasymutilla. A. D. impressa. B. D. ionothorax. C. D. loreto. D. D. mazatlanorum. E. D. mirabilis. F. D. mirapenis. G. D. modgudi. H. D. naranjo.
FIGURE 4 in Psilocybe chuxiongensis, a new bluing species from subtropical China
FIGURE 4. Psilocybe chuxiongensis (holotype) A, B: Basidiomata. C: Pileipellis. D: Basidiospores. E: Basidia. F: Pleurocystidia. G: Cheilocystidia. H: Caulocystidia. Scal bar: 10 µm.
FIGURES 1–3 in Psilocybe chuxiongensis, a new bluing species from subtropical China
FIGURES 1–3. Phylogenetic relationships of the new species and other bluing Psilocybe species obtained from GenBank, inferred from ITS, nrLSU, and combined rpb2-tef1-α sequences, respectively. Values above and below branches are MP bootstrap (≥50%) and posterior probabilities (≥0.80) values, respectively. Terminal taxa represent individual specimens with GenBank accession numbers; new species and new sequences (KF586470–KF586483) are labeled in bold. FIGURE 1. nrLSU parsimonious majority-rule consensus tree (L = 114, CI = 0.693, RI = 0.843, RC = 0.584, HI = 0.307). FIGURE 2. ITS parsimonious majority-rule consensus tree (L = 372, CI = 0.772, RI = 0.901, RC = 0.695, HI = 0.228). FIGURE 3. Combined rpb2-tef1-α nucleotide Bayesian 50% majority-rule consensus tree.
FIGURE 6 in New species of Phallus from a subtropical forest in Xishuangbanna, China
FIGURE 6. Plate of the Phallus species. A: Phallus mengsongensis (HKAS78343), B: Phallus drewesii (photograph source: http:// www.sciencedaily.com/releases/2009/06/090615144215.htm) and C: Phallus sp. 1 (HKAS78339).
FIGURE 5 in New species of Phallus from a subtropical forest in Xishuangbanna, China
FIGURE 5. Morphological characters of Phallus sp. 1. A. Basidocarp B. Hyphae of volva C. Basidiospores. Scale bars: A=5 cm, B= 50 µm, C=10 µm.
FIGURE 3 in New species of Phallus from a subtropical forest in Xishuangbanna, China
FIGURE 3. Morphological characters of P. mengsongensis. A. Basidiocarp B. Hyphae of volva C. Basidiospores. Scale bars: A=3 cm, B=20 µm, C=10µm.
FIGURE 2 in New species of Phallus from a subtropical forest in Xishuangbanna, China
FIGURE 2. Plate of the Phallus species. A1–A2: Phallus sp. 1 (HKAS78339), B1: P. serrata (HKAS78341), B2: P. serrata (HKAS78340), C1–C2: P. mengsongensis (HKAS78343). Red arrow in B-1: the serrated margin within holes of indusium of P. serrata (HKAS78340). Red circle in C-1: the remarkable well-developed apical opening of P. mengsongensis (HKAS78343).
FIGURE 1 in New species of Phallus from a subtropical forest in Xishuangbanna, China
FIGURE 1. Maximum parsimony phylogram based on ITS2 rDNA sequence data showing the phylogenetic position of P. mengsongensis, P. serrata and Phallus sp. 1 with some selected Phallus species. Data were analysed with random addition sequence, unweighted parsimony and gaps were treated as missing data. Values above the branches are parsimony bootstrap (≥ 50%). The tree is rooted with Ramaria stricta.
Figure 3 in Autumn community structure in the shallow mixed layer of the subtropical South China Sea reveals a peculiar copepod and zooplankton assemblage
Figure 3. Vertical variation of temperature (A), salinity (B) and chlorophyll a (C) of the six sampling stations.
Figure 6 in Autumn community structure in the shallow mixed layer of the subtropical South China Sea reveals a peculiar copepod and zooplankton assemblage
Figure 6. Clustering dendrogram of different samples using Bray–Curtis similarity and clustering strategy of flexible links in the northern South China Sea.
Figure 2 in Autumn community structure in the shallow mixed layer of the subtropical South China Sea reveals a peculiar copepod and zooplankton assemblage
Figure 2. Monthly averaged information derived from NOAA for sea surface temperature of September 1999.
Figure 1 in Autumn community structure in the shallow mixed layer of the subtropical South China Sea reveals a peculiar copepod and zooplankton assemblage
Figure 1. Map of sampling stations during Ocean Research Vessel III cruise 563, from 27 September to 2 October 1999. Station A6 is the South-East Asia Time Series (SEATS) station in the South China Sea.
Figure 3 in Lek phenology of the White-bearded Manakin (Manacus manacus, Aves: Passeriformes: Pipridae) in a subtropical region
Figure 3. Within daily variation in the frequency of male displays (resident adults and juveniles) and frequency of female visits to courts of Manacus manacus over a 1-year period. Vertical lines represent standard deviations. Nine courts were observed each at 2-month intervals.
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.