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.
1,254
datasets available to search
ShareScore release 0.9.0
Dataset results
1,254 results for “PANs”
Figure 2 from: Song Z-Q, Yao G, Pan B, Li J-W, Huang X-X, Tan Y-H, Xu D-X (2019) Return Verdesmum menglaense to the genus Hylodesmum (Fabaceae) based on morphological and molecular evidence. PhytoKeys 126: 1-12. https://doi.org/10.3897/phytokeys.126.34599
Figure 2 Phylogenetic relationships amongst 53 species from 30 genera of the tribe Desmodieae based on the trnL-F sequence data using Maximum Likelihood analysis. Numbers at the nodes are posterior probabilities and bootstrap percentages (PP, BP) from Bayesian and Maximum Likelihood analysis, respectively. A dash (--) indicates PP < 0.5 or BP < 50%. The grey cover shows the representative of Hylodesmum within which Verdesmummenglaense (indicated by bold font) was deeply embedded.
Figure 3 from: Li S, Xin Z-B, Chou W-C, Huang Y, Pan B, Maciejewski S, Wen F (2019) Five New Species of the Genus Primulina (Gesneriaceae) from Limestone Areas of Guangxi Zhuangzu Autonomous Region, China. PhytoKeys 127: 77-91. https://doi.org/10.3897/phytokeys.127.35445
Figure 3 Primulinacerina F.Wen, Yi Huang & W.Chuen Chou sp. nov. A plant in flower, cultivated in GCCCB cyme with flowers C front view of corolla D lateral view of corolla E dorsal view of corolla F opened corolla for showing stamens G pistil and calyx lobes for showing their adaxial surfaces H disc and one of calyx lobes for showing its abaxial surface I pistil without calyx lobes for showing ovary and style and their indumentum. Photographed by Fang Wen, charted by Wen-Hua Xu.
Figure 6 from: Li S, Xin Z-B, Chou W-C, Huang Y, Pan B, Maciejewski S, Wen F (2019) Five New Species of the Genus Primulina (Gesneriaceae) from Limestone Areas of Guangxi Zhuangzu Autonomous Region, China. PhytoKeys 127: 77-91. https://doi.org/10.3897/phytokeys.127.35445
Figure 6 The morphologically similar congeners of the five new species of Primulina1 habit 2 flowers. AP.leprosa, the congener of P.purpureokylinBP.gongchengensis, the congener of P.persicaCP.renifolia, the congener of P.cerinaDP.repanda, the congener of P.niveolanosaEP.longgangensis, the congener of P.leiyyi. Photographed by Fang Wen, charted by Wen-Hua Xu.
Figure 2 from: Li S, Xin Z-B, Chou W-C, Huang Y, Pan B, Maciejewski S, Wen F (2019) Five New Species of the Genus Primulina (Gesneriaceae) from Limestone Areas of Guangxi Zhuangzu Autonomous Region, China. PhytoKeys 127: 77-91. https://doi.org/10.3897/phytokeys.127.35445
Figure 2 Primulinapersica F.Wen, Yi Huang & W.Chuen Chou sp. nov. A habitat B habit C plant in flower, cultivated in GCCCD adaxial surface of leaf E abaxial surface of leaf F cyme and flowers G front view of corolla H lateral view of corolla I opened corolla for showing stamens J dorsal view of corolla K adaxial surface of calyx lobes L pistil. Photographed by Fang Wen, charted by Wen-Hua Xu.
Figure 1 from: Li S, Xin Z-B, Chou W-C, Huang Y, Pan B, Maciejewski S, Wen F (2019) Five New Species of the Genus Primulina (Gesneriaceae) from Limestone Areas of Guangxi Zhuangzu Autonomous Region, China. PhytoKeys 127: 77-91. https://doi.org/10.3897/phytokeys.127.35445
Figure 1 Primulinapurpureokylin F.Wen, Yi Huang & W.Chuen Chou sp. nov. A habit B cyme C frontal view of corolla D lateral view of corolla E dorsal view of corolla F ventral view of corolla G opened corolla for showing stamens, with pistil and calyx. Photographed by Wei-Chuen Chou and Yi Huang, charted by Wen-Hua Xu.
Figure 5 from: Li S, Xin Z-B, Chou W-C, Huang Y, Pan B, Maciejewski S, Wen F (2019) Five New Species of the Genus Primulina (Gesneriaceae) from Limestone Areas of Guangxi Zhuangzu Autonomous Region, China. PhytoKeys 127: 77-91. https://doi.org/10.3897/phytokeys.127.35445
Figure 5 Primulinaleiyyi F.Wen, Z.B. Xin & W.Chuen sp. nov. A habit B cyme and flowers C plant in flower collected in the field D extended branches after growing for one or some years E adaxial and abaxial view of leaf blades F cyme with one flower near top of stem G pubescent hairs on the surface of stem H different cymes with variable numbers of flowers I bracts J lateral view of bud K opened corolla for showing stamens and staminodes L pistil without calyx lobes M adaxial surfaces of calyx lobes N mature capsules. Photographed by Fang Wen, charted by Wen-Hua Xu.
Figure 4 from: Li S, Xin Z-B, Chou W-C, Huang Y, Pan B, Maciejewski S, Wen F (2019) Five New Species of the Genus Primulina (Gesneriaceae) from Limestone Areas of Guangxi Zhuangzu Autonomous Region, China. PhytoKeys 127: 77-91. https://doi.org/10.3897/phytokeys.127.35445
Figure 4 Primulinaniveolanosa F.Wen, S. Li & W.Chuen sp. nov. A plant in flower, cultivated in GCCCB cyme with flowers C close look of cyme and flowers D front view of corolla E lateral view of corolla F lateral view of corolla, bracts and bracteoles G dorsal view of corolla H lateral view of corolla with scale I opened corolla for showing stamens and staminodes J pistil with two calyx lobes for showing ovary and style and their indumentum K adaxial surface of calyx lobes. Photographed by Fang Wen, charted by Wen-Hua Xu.
Figure 6 from: Shi W, Liu P-L, Wen J, Feng Y, Pan B (2019) New morphological and DNA evidence supports the existence of Calligonum jeminaicum Z. M. Mao (Calligoneae, Polygonaceae) in China. PhytoKeys 132: 53-73. https://doi.org/10.3897/phytokeys.132.34981
Figure 6 Bayesian inference tree of the concatenated plastid DNA sequence data (psbA-trnH, ycf6-psbM, rpl32-trnL, rbcL, and trnL-F) showing Calligonum jeminaicum and its congeners. Bayesian posterior probabilities and maximum likelihood bootstrap support values are given above the branches.
Figure 3 from: Shi W, Liu P-L, Wen J, Feng Y, Pan B (2019) New morphological and DNA evidence supports the existence of Calligonum jeminaicum Z. M. Mao (Calligoneae, Polygonaceae) in China. PhytoKeys 132: 53-73. https://doi.org/10.3897/phytokeys.132.34981
Figure 3 Quantitative comparisons of fruit and flower characters in Calligonum mongolicum and C. jeminaicum.
Figure 2 from: Shi W, Liu P-L, Wen J, Feng Y, Pan B (2019) New morphological and DNA evidence supports the existence of Calligonum jeminaicum Z. M. Mao (Calligoneae, Polygonaceae) in China. PhytoKeys 132: 53-73. https://doi.org/10.3897/phytokeys.132.34981
Figure 2 Measurements of fruit characters (A) and flower traits (B form of perianth segments C pedicel), and the distinction of the form of perianth segments in Calligonum jeminaicum and C. mongolicum fruits (D).
Figure 4 from: Shi W, Liu P-L, Wen J, Feng Y, Pan B (2019) New morphological and DNA evidence supports the existence of Calligonum jeminaicum Z. M. Mao (Calligoneae, Polygonaceae) in China. PhytoKeys 132: 53-73. https://doi.org/10.3897/phytokeys.132.34981
Figure 4 Bayesian inference tree of the concatenated nuclear ITS and ETS sequence data showing Calligonum jeminaicum and its congeners. Bayesian posterior probabilities and maximum likelihood bootstrap support values are given above the branches.
Figure 5 from: Shi W, Liu P-L, Wen J, Feng Y, Pan B (2019) New morphological and DNA evidence supports the existence of Calligonum jeminaicum Z. M. Mao (Calligoneae, Polygonaceae) in China. PhytoKeys 132: 53-73. https://doi.org/10.3897/phytokeys.132.34981
Figure 5 Neighbor-net analyses based on uncorrected p-distances of the nuclear ITS and ETS sequence data. Numbers indicate bootstrap values over 1,000 replicates.
Figure 1 from: Shi W, Liu P-L, Wen J, Feng Y, Pan B (2019) New morphological and DNA evidence supports the existence of Calligonum jeminaicum Z. M. Mao (Calligoneae, Polygonaceae) in China. PhytoKeys 132: 53-73. https://doi.org/10.3897/phytokeys.132.34981
Figure 1 Fruit characters in the members of the four sections in Calligonum (A, sect. Calliphysa (Fisch. & C. A. Mey.) Borszcz.; B, sect. Pterococcus (Pall.) Borszcz.; C, sect. Calligonum ; D, sect. Medusa Sosk. & Alexandr.).
Figure 2 from: Pan B, Tang G-D, Do TV, Maciejewski S, Deng C-L, Wen F (2019) Oreocharis tetrapterus (Gesneriaceae), a new species from East Guangxi, China. PhytoKeys 131: 83-89. https://doi.org/10.3897/phytokeys.131.35434
Figure 2 Oreocharis tetrapterus F.Wen, B.Pan & T.V.Do sp. nov. in its natural habitat A habitat B flowering plant C plant with flowering cymes D frontal view of corolla E lateral view of corolla F top view of corolla. Photographed by Bo Pan and Fang Wen, charted by Wen-Hua Xu.
Figure 1 from: Pan B, Tang G-D, Do TV, Maciejewski S, Deng C-L, Wen F (2019) Oreocharis tetrapterus (Gesneriaceae), a new species from East Guangxi, China. PhytoKeys 131: 83-89. https://doi.org/10.3897/phytokeys.131.35434
Figure 1 Oreocharis tetrapterus F.Wen, B.Pan & T.V.Do sp. nov. A habit B lateral view of flower C adaxial surfaces of calyx lobes D opened corolla for showing the two fertile stamens in posterior position E pistil with disc, sepals removed F stigma G anthers in side view. Drawn by Wen-Hong Lin from the holotype.
Figure 4 from: Pan B, Tang G-D, Do TV, Maciejewski S, Deng C-L, Wen F (2019) Oreocharis tetrapterus (Gesneriaceae), a new species from East Guangxi, China. PhytoKeys 131: 83-89. https://doi.org/10.3897/phytokeys.131.35434
Figure 4 Some species in Oreocharis with typically four corolla lobes AOreocharis tetrapterus F.Wen, B.Pan & T.V.Do sp. nov. BO. sinensis (Oliv.) Mich.Möller & A.Weber (1 Lateral view of flowering cyme 2 Frontal view of flowering cyme) DO. esquirolii Léveillé (1 Corolla with four lobes and four stamens 2 Corolla with five lobes and five stamens). Photographed by Fang Wen and Bo Pan, charted by Wen-Hua Xu.
Figure 3 from: Pan B, Tang G-D, Do TV, Maciejewski S, Deng C-L, Wen F (2019) Oreocharis tetrapterus (Gesneriaceae), a new species from East Guangxi, China. PhytoKeys 131: 83-89. https://doi.org/10.3897/phytokeys.131.35434
Figure 3 Oreocharis tetrapterus F.Wen, B.Pan & T.V.Do sp. nov. A lateral view of flower B top view of flower C lateral view of corolla and pistil and calyx lobes D adaxial surface of calyx lobes E abaxial surface of calyx lobes F pistil, sepals removed G opened corolla for showing stamens in posterior position H anthers, abaxial view? I adaxial leaf surface J abaxial leaf surface K peduncle indumentum. Photographed by Fang Wen and Bo Pan in the field, charted by Wen-Hua Xu.
Figure 2 from: Wu L, Wang B-M, Pan B, Yu X-L (2019) Spiradiclis tubiflora (Rubiaceae), a new cave-dwelling species from southern China. In: Cai J, Yu W-B, Zhang T, Li D-Z (Eds) Revealing of the plant diversity in China's biodiversity hotspots. PhytoKeys 130: 217-224. https://doi.org/10.3897/phytokeys.130.34625
Figure 2 Spiradiclis tubiflora. A Habitat (the arrow shows the place of growth) B Habit C Stipule D Inflorescence, lateral view E Flower, lateral view F Corolla opened to show floral parts G Capsules, frontal view H Capsules, lateral view I Matured capsules with four valves. Flowers of selected Spiradiclis species, lateral views: JS. longipedunculataKS. fuscaLS. malipoensisMS. baishaiensisNS. glabraOS. coccinea. Scale bars: 1 cm (B, D, E, F, K, L, M, N, O); 3 mm (C, G, H, I, J). Photos by Bo Pan, Jing Liu and Lei Wu.
Figure 1 from: Wu L, Wang B-M, Pan B, Yu X-L (2019) Spiradiclis tubiflora (Rubiaceae), a new cave-dwelling species from southern China. In: Cai J, Yu W-B, Zhang T, Li D-Z (Eds) Revealing of the plant diversity in China's biodiversity hotspots. PhytoKeys 130: 217-224. https://doi.org/10.3897/phytokeys.130.34625
Figure 1 Spiradiclis tubiflora. A Habit B Enlarged leaf blade (adaxial) C Stipule D Style E Opened corolla F Infructescence, lateral view G Capsule before dehiscence H Matured capsules split into four valves. Scale bars: 1 cm (A, D, E); 3 mm (C, F–H). Drawn from the holotype by Zheng-Meng Yang.
Figure 3 from: Wu X-F, Ye D-P, Pan B, Lin X-Q, Jiang H, Liu Q (2019) Validation of Gastrochilus prionophyllus (Vandeae, Orchidaceae), a new species from Yunnan Province, China. In: Cai J, Yu W-B, Zhang T, Li D-Z (Eds) Revealing of the plant diversity in China's biodiversity hotspots. PhytoKeys 130: 161-169. https://doi.org/10.3897/phytokeys.130.34555
Figure 3 AGastrochilus corymbosus (A-1 Plant A-2 Inflorescence and flowers) BG. distichus (B-1 Plant B-2 Inflorescence and flowers) CG. prionophyllus (C-1 Plant C-2 Inflorescence and flowers) (Photographed by Q. Liu).
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.