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 3. Amphinemura hamiornata Li in Two new species and four unknown larvae of Amphinemurinae (Plecoptera, Nemouridae) from southern China
FIGURE 3. Amphinemura hamiornata Li & Yang, 2008 (female larva habitus) A. Dorsal view. B. Ventral view.
FIGURE 4. Amphinemura hamiornata Li in Two new species and four unknown larvae of Amphinemurinae (Plecoptera, Nemouridae) from southern China
FIGURE 4. Amphinemura hamiornata Li & Yang, 2008 (female larva) A. Head and pronotum, dorsal view. B. Gills, ventral view. C. Hind leg, lateral view. D. Abdominal segments I–VIII and hind femora, dorsal view. E. Terminalia, ventral view. F. Cercus, dorsal view.
FIGURE 18 in Two new species and four unknown larvae of Amphinemurinae (Plecoptera, Nemouridae) from southern China
FIGURE 18. Indonemoura scalprata (Li & Yang, 2007) (Pharate male larva). A. Abdomen, dorsal view. B. Abdomen, ventral view. C. Abdomen, lateral view. D. Right cercus, dorsal view. E. Basal half of right cercus, dorsal view. Scale bars: 0.5 mm.
FIGURE 15 in Two new species and four unknown larvae of Amphinemurinae (Plecoptera, Nemouridae) from southern China
FIGURE 15. Indonemoura scalprata (Li & Yang, 2007) (A–D male, E–F female) A. Head and pronotum, dorsal view. B. Terminalia, ventral view. C. Terminalia, lateral view. D. Terminalia, dorsal view. E. Terminalia, ventral view. F. Terminalia, ventral view. Scale bars: 0.1 mm.
FIGURE 2. Arachniodes vietnamensis Liang Zhang, N.T in Arachniodes libingii sp. nov. and A. vietnamensis sp. nov. (Dryopteridaceae), two new ferns from southern China and central Vietnam
FIGURE 2. Arachniodes vietnamensis Liang Zhang, N.T. Lu & T.T. Nguyen,—A. Abaxial surface of frond.—B. Portion of upper lamina.—C. Abaxial surface of pinnules.—D. Lateral pinnae.—E. Sori and portion of rachis showing densely appressed subulate/filiform scales.—F. Scales on stipe.—G. Scale on rachis.—H. Sparse, echinulate, perforate spore.—I. Perispore.—J. Indusia. Photo credit: Xinmao Zhou & Ngan Thi Lu.
FIGURE 1. Arachniodes libingii Liang Zhang, N.T in Arachniodes libingii sp. nov. and A. vietnamensis sp. nov. (Dryopteridaceae), two new ferns from southern China and central Vietnam
FIGURE 1. Arachniodes libingii Liang Zhang, N.T.Lu & T.T.Nguyen,—A. Habit.—B. Stipe base with darkish brown scales.—C. Young rhizome.—D. Upper pinnae with lamina apex.—E. Pinnules with young sori.—F. Pinnules with mature sori.—G. Portion of abaxial lamina with apex.—H. Portion of middle pinnae.—I. Portion of basal most pairs of pinnae. Photo credit: Liang Zhang.
Morphological and phylogenetic characterization of fungi within Hymenochaetales: Introducing two new species from southern China
<p>Two new wood-inhabiting fungal species, <i><span>Lyomyces </span></i><i><span>niveus</span></i> and <i><span>L</span></i>. <i><span>ochraceoalbus</span></i> spp. nov. are proposed based on a combination of morphological and molecular evidence. <i><span>Lyomyces</span></i> <i><span>ochraceoalbus</span></i> is characterised by resupinate basidiomata with tuberculate, cracking hymenial surface, clavate basidia with a median constriction, gathering numerous irregular crystals and thin-walled basidiospores with one or two globules. <i><span>Lyomyces</span></i> <i><span>niveus</span></i> is characterised by resupinate basidiomata, smooth to grandinioid hymenial surface, presence of three kinds of cystidia, and broadly ellipsoid basidiospores. Sequences of ITS and nLSU gene regions were generated, and phylogenetic analyses were performed with maximum likelihood, maximum parsimony and Bayesian inference methods. The phylogenetic reconstruction of Schizoporaceae based on a concatenated ITS+nLSU dataset showed that two new species nested in <i><span>Lyomyces</span></i>. A second phylogenetic analysis, of the genus <i><span>Lyomyces</span></i>, demonstrated that multiple isolates of <i><span>L</span></i>. <i><span>niveus</span></i> forms a monophyletic lineage and is sister to a clade comprising of <i><span>L</span></i>. <i><span>crustosus</span></i><span>,</span><i><span> L. </span></i><i><span>juniperi</span></i>, <i><span>L</span></i>. <i><span>ochraceoalbus</span></i><span>,</span><i> </i>and <i><span>L</span></i>. <i><span>vietnamensis</span></i>. Moreover, <i><span>L</span></i>. <i><span>ochraceoalbus</span></i> is closely related to <i><span>L</span></i>. <i><span>crustosus</span></i>.</p>
FIGURE 3 in A new oviraptorid (Dinosauria: Theropoda) from the Upper Cretaceous of southern China
FIGURE 3. Mandible and postcranial skeleton of the holotype of Ganzhousaurus nankangensis gen. et sp. nov., SDM 20090302. a, lateral side of mandible; b, medial side of mandible; c, line drawing of angular and surangular in lateral view, showing the groove present on the anterior ramus of angular; d, line drawing of dentary in lateral view; e, distal caudal vertebrae; f, anterior view of proximal ends of metatarsals II and III. Abbreviations: an, angular; ara, anterior ramus of angular; c, centrum; d, dentary; dp, depression; dt, distal tarsal; emf, external mandibular fenestra; g, groove; p, pit; pdb, posterodorsal branch of dentary; poz, postzygapophyses; prz, prezygapophyses; pvb, posteroventral branch of dentary; r, ridge; s, splenial; sa, surangular; M – II – III, metatarsal II – III. Scale bar = 2 cm.
FIGURE 2 in A new oviraptorid (Dinosauria: Theropoda) from the Upper Cretaceous of southern China
FIGURE 2. Photographs of holotype of Ganzhousaurus nankangensis gen. et sp. nov. (SDM 20090302). a, ventral view of right pes; b, reverse side of block, showing ilium, tibia, right mandible and caudal series. Abbreviations: ca, caudal series; d, dentary; dt, distal tarsal; il, ilium; t, tibia; MI-III, metatarsal I – III. Roman numerals I-IV identify pedal digits, and Arabic numerals 1 - 3 identify phalanges within each digit in order from proximal to distal. Scale bar = 2 cm.
FIGURE 5 in A new oviraptorid (Dinosauria: Theropoda) from the Upper Cretaceous of southern China
FIGURE 5. Camera lucida drawings of oviraptorosaur mandibles in lateral view: a, Oviraptor philoceratops; b, Ingenia yanshini; c, Khaan mckennai; d, Citipati osmolskae; e, Nemegtomaia barsboldi; f, Heyuannia huangi; g, Ganzhousaurus nankangensis gen. et sp. nov.; h, Chirostenotes pergracilis; i, cross-section of bar ventral to external mandibular fenestra in Ganzhousaurus nankangensis gen. et sp. nov. (SDM 20090302), located 20 mm posterior to anterior end of angular; j, crosssection of bar ventral to external mandibular fenestra of Chirostenotes pergracilis, located 20 mm posterior to anterior end of angular (after Sternberg 1940); red dashed lines in a and g represent approximate estimated outline of complete mandible; black dashed lines in i and j mark positions of cross-sections. a, d after Clark et al. (2002); b after Barsbold et al. (1990); c after Clark et al. (2001); f after Lü (2005) and h, j after Sternberg (1940) and Currie et al. (1993). Not to scale.
FIGURE 4 in A new oviraptorid (Dinosauria: Theropoda) from the Upper Cretaceous of southern China
FIGURE 4. Strict consensus of oviraptorosaur interrelationships. The phylogenetic analysis resulted in 9 most parsimonious trees of 338 steps, each with a consistency index of 0.645 and a retention index of 0.701. Values above nodes represent bootstrap percentages (%), values below nodes represent Bremer support values. Bootstrap values lower than 20 are not shown.
FIGURE 4. Bayesian posterior probability tree was reconstructed from 16S in A new species of the genus Gracixalus (Amphibia: Anura: Rhacophoridae) from Southern Guangxi, China
FIGURE 4. Bayesian posterior probability tree was reconstructed from 16S ribosomal RNA mitochondrial gene sequences with Philautus aurifasciatus, Kurixalus eiffingeri and K. odontotarsus as outgroups. Maximum-likelihood tree produced nearidentical topology. Two reliability indices are given on nodes: the Bayesian posterior probabilities/the maximum likelihood bootstrap percentages.
FIGURE 3 in A new species of the genus Gracixalus (Amphibia: Anura: Rhacophoridae) from Southern Guangxi, China
FIGURE 3. Ventral surface of right hand (A), and right foot (B) of the preserved holotype (NHMG 200809044) of Gracixalus nonggangensis sp. nov. Photos: Yunming Mo.
FIGURE 2 in A new species of the genus Gracixalus (Amphibia: Anura: Rhacophoridae) from Southern Guangxi, China
FIGURE 2. Color of holotype in life (NHMG200809044). (A) dorsal view, (B) dorsolateral view, (C) ventral view; Color of holotype in preservative. (D) dorsal view, (E) ventral view, (F) head from lateral view. Photos: Yunming Mo.
FIGURE 1 in A new species of the genus Gracixalus (Amphibia: Anura: Rhacophoridae) from Southern Guangxi, China
FIGURE 1. (A) Nonggang National Nature Reserve, (B) Type locality of Gracixalus nonggangensis sp. nov.
FIGURE 5 in Two new species of the genus Goniurosaurus (Squamata: Sauria: Eublepharidae) from southern China
FIGURE 5. The six known species of the Goniurosaurus luii species group from China. A: a female individual of G. kwangsiensis sp. nov. from Guangxi; B: paratype KFBG 140334 of G. kadoorieorum sp. nov. from Guangxi; C: adult female of G. araneus from Guangxi; D: subadult male of G. bawanglingensis from Hainan; E: adult female of G. luii from Guangxi; F: holotype SYS r000218 of G. liboensis from Guizhou.
FIGURE 2 in Two new species of the genus Goniurosaurus (Squamata: Sauria: Eublepharidae) from southern China
FIGURE 2. Goniurosaurus kadooireorum sp. nov.: A: sub-adult male paratype, KFBG 14034; B: juvenile male paratype, KFBG 14035.
FIGURE 4 in Two new species of the genus Goniurosaurus (Squamata: Sauria: Eublepharidae) from southern China
FIGURE 4. Goniurosaurus kwangsiensis sp. nov.: A: a sub-adult female from the type locality; B: adult female paratype, KFBG 14050; C: lateral view of the head of KFBG 14050.
FIGURE 49 in Three new Sinopoda species (Araneae: Sparassidae) from southern China
FIGURE 49. Distribution of the new Sinopoda species in Chongqing Municipality and Sichuan Province, P. R. China. ○ S. cochlearia; ■ S. globosa; ▲ S. longiducta.
FIGURES 35–37 in Three new Sinopoda species (Araneae: Sparassidae) from southern China
FIGURES 35–37. Sinopoda longiducta sp. nov., male holotype. 35 left palp, ventral; 36–37 embolus and embolic apophysis (36 ventral, 37 prolateral). Scale bars: 35: 1mm; 36–37: 0.2 mm.
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.