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.
2,510
datasets available to search
ShareScore release 0.9.0
Dataset results
2,510 results for “South China”
Figure 3 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 3 Phylograms obtained from ML analysis of β-tubulin A and elongation factor B sequences of Esteya, showing fungal associates with pines infected by Tomicusyunnanensis in Yunnan Province, China. Novel sequences obtained in this study are printed in bold type. Bootstrap values ≥ 70% for ML and MP are indicated above branches. Bootstrap values < 70% are indicated by the symbol *. Strains representing ex-type sequences are marked with 'T'; ML, maximum likelihood; MP, maximum parsimony and the final alignment of 320 (A), 856 (B) positions, including gaps.
Figure 15 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 15 Morphological characters of Sporothrixmacroconidia sp. n. A, B Upper and reverse of cultures on 2% MEA 20 d after inoculation C–H conidiogenous cells of Sporothrix-like asexual state and conidia. Scale bars: 10 μm (C–H).
Figure 12 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 12 Morphological characters of LeptographiumyunnanenseA, B upper and reverse of cultures on 2% MEA 8 d after inoculation D, I conidiophore on 2% MEA C, E–H conidiogenous cells of Leptographium-like asexual state and conidia. Scale bars: 50 μm (D, I); 10 μm (C, E–H).
Figure 11 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 11 Morphological characters of Graphilbumanningense sp. n. A, B Upper and reverse of cultures on 2% MEA 8 d after inoculation C, D, G conidiogenous cells of Pesotum-like macronematal asexual state and conidia E, F, H conidiogenous cells of Hyalorhinocladiella-like asexual state and conidia. Scale bars: 50 μm (C); 20 μm (D); 10 μm (E–H).
Figure 1 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 1 A Map showing the 11 species of ophiostomatoid fungi detected from Yunnan Province, China B, D disease symptoms on Pinusyunnanensis and P.kesiya trees infested by Tomicus spp. (T.yunnanensis, T.minor and T.brevipilosus) and ophiostomatoid fungi C, G, H exposed branches of Tomicus spp. on P.yunnanensis and P.kesiya E, F, I–K galleries of Tomicus spp. on P.yunnanensis and P.kesiya.
Figure 10 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 10 A–H Morphological characters of EsteyavermicolaA, B upper and reverse of cultures on 2% MEA 20 d after inoculation C–H conidiogenous cells with lunate conidia I–M the cuticle of a nematode attached by many lunate conidia. Scale bars: 20 μm (I, K, L); 10 μm (C–H, J, M).
Figure 4 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 4 Phylograms obtained from ML analysis of ITS sequences A and β-tubulin sequences B of Graphilbum showing fungal associates with pines infected by Tomicusyunnanensis and T.minor in Yunnan Province, China. Novel sequences obtained in this study are printed in bold type. Bootstrap values ≥ 70% for ML and MP are indicated above branches. Bootstrap values < 70% are indicated by the symbol *. Strains representing ex-type sequences are marked with 'T'; ML, maximum likelihood; MP, maximum parsimony and the final alignment of 515 (A), 481 (B) positions, including gaps.
Figure 8 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 8 Phylograms obtained from ML analysis of ITS sequences of Sporothrix, showing fungal associates with pines infected by Tomicusyunnanensis, T.minor and T.brevipilosus in Yunnan Province, China. Novel sequences obtained in this study are printed in bold type. Bootstrap values ≥ 70% for ML and MP are indicated above branches. Bootstrap values < 70% are indicated by the symbol *. Strains representing ex-type sequences are marked with 'T'; ML, maximum likelihood; MP, maximum parsimony and the final alignment of 546 positions, including gaps.
Figure 16 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 16 Morphological characters of Sporothrixpseudoabietina sp. n. A, B upper and reverse of cultures on 2% MEA 20 d after inoculation C, D ostiolar hyphae present E, F perithecium G ascospores of sexual state H–I conidiogenous cells of Sporothrix-like asexual state and conidia. Scale bars: 20 μm (C, D); 50 μm (E, F); 10 μm (G–I).
Figure 2 from: Wang HM, Wang Z, Liu F, Wu CX, Zhang SF, Kong XB, Decock C, Lu Q, Zhang Z (2019) Differential patterns of ophiostomatoid fungal communities associated with three sympatric Tomicus species infesting pines in south-western China, with a description of four new species. MycoKeys 50: 93-133. https://doi.org/10.3897/mycokeys.50.32653
Figure 2 Phylograms obtained from ML analysis of LSU sequences, showing fungal associates with pines infected by Tomicusyunnanensis, T.minor and T.brevipilosus in Yunnan Province, China. Novel sequences obtained in this study are printed in bold type. Bootstrap values ≥ 70% for ML and MP are indicated above branches. Bootstrap values < 70% are indicated by the symbol *. Strains representing ex-type sequences are marked with 'T'; ML, maximum likelihood; MP, maximum parsimony and the final alignment of 743 positions, including gaps.
FIGURE 4 in New species and records of Colurella (Rotifera: Lepadellidae) from South China, with a key to Chinese Colurella
FIGURE 4. Variations in abundance of Colurella ovalis sp. nov. in the type locality
Figure 6 from: Hosen MI, Zhong X-J, Gates G, Orihara T, Li T-H (2019) Type studies of Rossbeevera bispora, and a new species of Rossbeevera from south China. MycoKeys 51: 1-14. https://doi.org/10.3897/mycokeys.51.32775
Figure 6 SEM of basidiospores of Rossbeevera species. a, bRossbeeverabispora (aGDGM 45612 bGDGM 45639) c, dRossbeeveragriseobrunnea (cGDGM 45266 dGDGM 45913, holotype).
Figure 3 from: Hosen MI, Zhong X-J, Gates G, Orihara T, Li T-H (2019) Type studies of Rossbeevera bispora, and a new species of Rossbeevera from south China. MycoKeys 51: 1-14. https://doi.org/10.3897/mycokeys.51.32775
Figure 3 Basidiomata of Rossbeeverabispora (new collections). a Dull white to grayish brown pileus with blue tinges in some portion (GDGM 45612) b Bluing hymenophore (after injured) and pileus surface (GDGM 46631) c Bluing pileus with reduced stipe (GDGM 46638) d Bluing hymenophore (after injured) and pileus surface (GDGM 46638).
Figure 2 from: Hosen MI, Zhong X-J, Gates G, Orihara T, Li T-H (2019) Type studies of Rossbeevera bispora, and a new species of Rossbeevera from south China. MycoKeys 51: 1-14. https://doi.org/10.3897/mycokeys.51.32775
Figure 2 Type specimen of Rossbeeverabispora (as Chamonixiabispora, GDGM 5688, holotype) a dried basidiomata of Rossbeeverabisporab basidiospores.
Figure 1 from: Hosen MI, Zhong X-J, Gates G, Orihara T, Li T-H (2019) Type studies of Rossbeevera bispora, and a new species of Rossbeevera from south China. MycoKeys 51: 1-14. https://doi.org/10.3897/mycokeys.51.32775
Figure 1 Phylogenetic relationships of Rossbeevera and its allied genera inferred from multi-locus (ITS+nrLSU+tef1-α+rpb2) analyses. Rossbeeverabispora and R.griseobrunnea are highlighted in bold on the tree. RAxML bootstrap (BS) support values (MLBS>50%) are indicated on the branches at nodes. Voucher number/collection number are provided after each species followed by country name.
Figure 4 from: Hosen MI, Zhong X-J, Gates G, Orihara T, Li T-H (2019) Type studies of Rossbeevera bispora, and a new species of Rossbeevera from south China. MycoKeys 51: 1-14. https://doi.org/10.3897/mycokeys.51.32775
Figure 4 Basidiomata of Rossbeeveragriseobrunnea. a Unchanged pileus surface with reduced stipe (GDGM 45266) b Unchanged pileus surface and pale blue (in some patches) hymenophore when injured (GDGM 45266) c Pale bluing hymenophore (after injured) with reduced stipe (GDGM 45913, holotype) d Dark brownish hymenophore after exposed to air (GDGM 45913, holotype).
Figure 5 from: Hosen MI, Zhong X-J, Gates G, Orihara T, Li T-H (2019) Type studies of Rossbeevera bispora, and a new species of Rossbeevera from south China. MycoKeys 51: 1-14. https://doi.org/10.3897/mycokeys.51.32775
Figure 5 Microscopic features of Rossbeeveragriseobrunnea. a Basidia and basidioles development at different stages (GDGM 45266) b Basidiospores in different views (star-shaped in side view and quadrangular in polar view) (GDGM 45913, holotype).
Figure 9 from: Liu Z, Jiang S-h (2019) The genus Sternocampsus Fleutiaux, 1927 (Coleoptera, Elateridae, Oxynopterinae), with description of a new species from South China. ZooKeys 852: 111-124. https://doi.org/10.3897/zookeys.852.31611
Figure 9 Sternocampsusvillosus Fleutiaux, 1927, a–e syntype, male: a dorsal view b ventral view c lateral view d aedeagus, dorsal view e labels of type f–h syntype, female: f dorsal view g ventral view c labels of syntype. (Copyright © Antoine Mantilleri. All rights reserved MNHN/A. Mantilleri).
Figure 7 from: Liu Z, Jiang S-h (2019) The genus Sternocampsus Fleutiaux, 1927 (Coleoptera, Elateridae, Oxynopterinae), with description of a new species from South China. ZooKeys 852: 111-124. https://doi.org/10.3897/zookeys.852.31611
Figure 7 Sternocampsuscoriaceus sp. nov., a–c dorsal, ventral and lateral view of aedeagus d bursa copulatrix and thorny plates.
Figure 5 from: Liu Z, Jiang S-h (2019) The genus Sternocampsus Fleutiaux, 1927 (Coleoptera, Elateridae, Oxynopterinae), with description of a new species from South China. ZooKeys 852: 111-124. https://doi.org/10.3897/zookeys.852.31611
Figure 5 Sternocampsuscoriaceus sp. nov., holotype, male: a head, dorsal view b head, frontal view c pronotum, dorsal view d antenna, dorsal view e surface of pronotum, dorsal view f scutellar shield, dorsal view g surface of elytra, dorsal view.
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.