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.
2,256
datasets available to search
ShareScore release 0.9.0
Dataset results
2,256 results for “Southern China”
FIGURE 2. Crepidomanes shenzhenense.—A. Habit.—B in Crepidomanes shenzhenense (subg. Crepidomanes; Hymenophyllaceae), a new filmy fern species from Guangdong, southern China
FIGURE 2. Crepidomanes shenzhenense.—A. Habit.—B. Portion of ultimate segment showing internal false veinlets and retused apex.— C. Internal false veinlets.—D. Hairs on the stipe.—E. Sorus with sporangia.—F. Sorus without sporangia. (Drown by Cui Ding-han based on holotype)
FIGURE 4 in Viola miaolingensis (Violaceae), a new species from southern China
FIGURE 4. Photomicrographs of chromosome in Viola miaolingensis (2n=48, Y. S. Chen 5028, PE). Scale bar=5μm.
FIGURE 1. Viola miaolingensis, A in Viola miaolingensis (Violaceae), a new species from southern China
FIGURE 1. Viola miaolingensis, A. habit; B. flower in front view; C. petals; D. fruit; E. flower in side view; F. stipule. (Based on Y. S. Chen 5028; illustrated by Mr. Ying-Bao Sun).
FIGURE 1. Crepidomanes shenzhenense.—A–B in Crepidomanes shenzhenense (subg. Crepidomanes; Hymenophyllaceae), a new filmy fern species from Guangdong, southern China
FIGURE 1. Crepidomanes shenzhenense.—A–B. Habits of the new species in situ.—C. Fronds with sori.—D–F. Sori from different individuals.—F. Internal false veinlets.—H. Portion of stipe showing hairs.
FIGURE 2. Viola miaolingensis, A in Viola miaolingensis (Violaceae), a new species from southern China
FIGURE 2. Viola miaolingensis, A. habit (Y. S. Chen 6030; from Guangxi); B. flower in side view (Y. S. Chen 6030; from Guangxi); C. living plants (Y. S. Chen et al. 180823; from Hunan); D. flower in front view (Y. S. Chen 6030; from Guangxi); E. living plants in the wild (Y. S. Chen 4179; from Guizhou); F. living plants in the wild (Y. S. Chen et al. 180823; from Hunan).
FIGURE 7. The trnL-F in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 7. The trnL-F maximum likelihood phylogenetic trees with BI posterior probability/ML bootstrap support values (>0.5 or 50%) shown below and above the branch around the corresponding node. The accessions of Semiaquilegia danxiashanensis are highlighted in bold.
FIGURE 6 in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 6. The ITS maximum likelihood phylogenetic trees with BI posterior probability/ML bootstrap support values (>0.5 or 50%) shown below and above the branch around the corresponding node. The accessions of Semiaquilegia danxiashanensis are highlighted in bold.
FIGURE 8 in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 8. The Bayesian phylogenetic trees from the analyses of the combined data of the ITS and chloroplast trnL-F regions. BI posterior probability/ML bootstrap support values (>0.5 or 50%) are shown below and above the branch respectively around the corresponding node. The accessions of Semiaquilegia danxiashanensis are highlighted in bold.
FIGURE 5 in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 5. Semiaquilegia adoxoides in the wild (Yuelu Mountain, Changsha, China). A, B. Habit; C. Tuber; D. Flower; E. Sepals; F. Petals; G. Stamens; H. Staminodes; I. Inflorescence; J. Pistils; K. Follicles (immature); L. Follicles (mature). Photos by J.J. Zhou and L. Wu).
FIGURE 3 in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 3. Semiaquilegia danxiashanensis in the wild (Danxia Shan, Renhua, Guangdong, China). A, B. Habitat; C. Habit; D. Tuber; E. Flower; F. Flower with two sepals removed; G. Petals; H. Sepals; I. Stamens; J. Staminodes; K. Follicles; L. Seeds. Photos by J.J. Zhou and L. Wu.
FIGURE 4 in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 4. Semiaquilegia guangxiensis in the wild (Jiangyue village, Yongfu, Guangxi, China). A. Habitat; B. Habit; C. Flowers; D. Sepals; E. Petals; F. Follicles. Photos by Y.S. Huang and Y. Liu.
FIGURE 1. Semiaquilegia danxiashanensis. A in Semiaquilegia danxiashanensis (Ranunculaceae), a new species from Danxia Shan in Guangdong, southern China
FIGURE 1. Semiaquilegia danxiashanensis. A. Habit; B. Flower; C. Pistils; D. Petal; E. Stamens; F. Staminodes; G. Follicles; H. Seeds. Drawn by X.Y. Zeng.
FIGURE 2 in Phytopythium nanjingense sp. nov. (Pythiaceae, Peronosporales) from southern China based on morphological and molecular characters
FIGURE 2. Colony of Phytopythium nanjingense (Chen 218) on 10% V8A at 25°C after five days incubation.
FIGURE 3 in Phytopythium nanjingense sp. nov. (Pythiaceae, Peronosporales) from southern China based on morphological and molecular characters
FIGURE 3. Asexual and sexual reproductive bodies of Phytopythium nanjingense (Chen 218). a: Mycelium. b: Ovoid-obpyriform sporangium with conspicuous apical papillae. c: Ellipsoid sporangium with conspicuous apical papillae. d: Obpyriform sporangium. e: Internally nested proliferation. f: Internal proliferation. g-h: Globose, smooth and terminal oogonia. i: Clustering of several filamentous antheridial cells around the oogonium. j: Plerotic oospore. Scale bars: 10 μm.
FIGURE 1 in Phytopythium nanjingense sp. nov. (Pythiaceae, Peronosporales) from southern China based on morphological and molecular characters
FIGURE 1. Phylogeny of species in Phytopythium and related species generated by maximum parsimony based on ITS-Cox1-Cox2 sequence data. Branches are labeled with parsimony bootstrap proportions (before slanting line) high than 50% and Bayesian posterior probabilities (after slanting line) more than 0.90. Pp. refers to Phytopythium, and Py. refers to Pythium.
FIGURES 10–13 in Morphology and ultrastructure of Sellaphora constrictum sp. nov. (Bacillariophyta), a new diatom from southern China
FIGURES 10–13. Sellaphora constrictum sp. nov. SEM, external views. Fig. 10. Valve view of entire valve, showing constriction in the middle of the margins, undulation of raphe, two types of areolae (arrow I and arrow II), conopeum (arrow A), the trough borders the conopeum (arrow B) and the ridge borders the trough (arrow C). Fig. 11. Valve view of entire valve, showing the ridge near the valve margin (arrow A) and the ridge along the border of the valve face and the mantle (arrow B), the mantle (arrow C) and the girdle (arrow D). Fig. 12. Central part of the valve, showing dilated proximal raphe ends, two types of areolae, the trough borders the conopeum (arrow A), the ridge borders the trough (arrow B) and expanded conopeum (arrow C). Fig. 13. Valve apex, showing distal raphe end curved on the mantle and arrangement of striae at apices. Scale bar =2 μm.
FIGURES 1–9 in Morphology and ultrastructure of Sellaphora constrictum sp. nov. (Bacillariophyta), a new diatom from southern China
FIGURES 1–9. Sellaphora constrictum sp. nov., light microscopy. Valve view, size diminution series. Figure 1 is of the Holotype. Fig. 1– 3, 5–9 are from samples of Maolan Nature Reserve, Fig. 4 is from sample of Wuzhishan Mountain. Arrow in Fig. 5 shows the longitudinal ridge borders the trough. Scale bar =10 μm.
FIGURES 14–17 in Morphology and ultrastructure of Sellaphora constrictum sp. nov. (Bacillariophyta), a new diatom from southern China
FIGURES 14–17. Sellaphora constrictum sp. nov. SEM, internal views. Fig. 14. Valve view of entire valve, showing straight raphe and arrangement of striae. Fig. 15. Central part of the valve, showing asymmetric proximal raphe ends deflected in the same direction and arrangement of striae. Note there is only a single type of areolae evident internally. Fig. 16. Valve apex, showing larger foramen-like (pit) that does not penetrate to the exterior. Fig. 17. Valve apex, showing the long helicotoglossa. Scale bar =2 μm.
FIGURE 3 in Phallus fuscoechinovolvatus (Phallaceae, Basidiomycota), a new species with a dark spinose volva from southern China
FIGURE 3. Phylogenetic relationship and placement of Phallus fuscoechinovolvatus with selected Phallus species inferred from nrLSU sequences. Bootstrap support values (ML BS ≥50%, left; MP BS ≥50%, middle; PP ≥0.95, right) are indicated on branches. Mutinus zenkeri is rooted as outgroup. Newly generated sequences for P. fuscoechinovolvatus are highlighted in bold. Species voucher numbers are provided after the species names. The bar represents the distance between species.
FIGURE 2 in Phallus fuscoechinovolvatus (Phallaceae, Basidiomycota), a new species with a dark spinose volva from southern China
FIGURE 2. Microscopic features of Phallus fuscoechinovolvatus (GDGM 48589, holotype). A: Basidiospores. B: Cells of indusium. C: Hyphae of volva. D: Line drawing of basidiospores. E: Line drawing of hyphae of volva. Scale bars: A, B, C, E = 10 μm, D = 5μm. Structures B and C were mounted in Congo Red mixed with the 5% KOH. Photo by: Ting Li. Line drawings by: Ting Li.
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.