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599 results for “Guangdong”
Figure 1 from: Tu W-H, Wang B-M, Huang Y, Yao G, Huang J-X, Li Y-L (2020) Begonia guangdongensis, a new species of Begonia (Begoniaceae) from Guangdong, China. PhytoKeys 162: 29-36. https://doi.org/10.3897/phytokeys.162.51913
Figure 1 Begonia guangdongensisA plant B1 close up of adaxial surface of leaf B2 close up of abaxial surface of leaf C stipule D bract E1 and E2 staminate flower F androecium G1 and G2 pistillate flower H style and stigma I cross section of ovary in the middle part J immature capsule. Drawn by Zheng-meng Yang.
Figure 4 from: Qi S, Wang J, Grismer LL, Chen H-H, Lyu Z-T, Wang Y-Y (2020) The Stoor Hobbit of Guangdong: Goniurosaurus gollum sp. nov., a cave-dwelling Leopard Gecko (Squamata, Eublepharidae) from South China. ZooKeys 991: 137-153. https://doi.org/10.3897/zookeys.991.54935
Figure 4 Comparisons of iris color with three closely related congeners AGoniurosaurus gollum sp. nov. (holotype, SYS r002420) BGoniurosaurus varius (holotype, SYS r002333) CGoniurosaurus yingdeensis (holotype SYSr000504) DGoniurosaurus zhelongi (holotype, SYS r000770). Photographs by Shuo Qi and Ying-Yong Wang.
Figure 3 from: Qi S, Wang J, Grismer LL, Chen H-H, Lyu Z-T, Wang Y-Y (2020) The Stoor Hobbit of Guangdong: Goniurosaurus gollum sp. nov., a cave-dwelling Leopard Gecko (Squamata, Eublepharidae) from South China. ZooKeys 991: 137-153. https://doi.org/10.3897/zookeys.991.54935
Figure 3 Type series of Goniurosaurus gollum sp. nov. A holotype, male, SYS r002420 B paratype, male, SYS r002421 C paratype, female, SYS r002421; (1) dorsal view; (2) dorsal view of head; (3) ventral view of head; (4) close-up of the precloacal region, the Arabic number refer to the number of precloacal pores. Photographs by Shuo Qi.
Figure 2 from: Qi S, Wang J, Grismer LL, Chen H-H, Lyu Z-T, Wang Y-Y (2020) The Stoor Hobbit of Guangdong: Goniurosaurus gollum sp. nov., a cave-dwelling Leopard Gecko (Squamata, Eublepharidae) from South China. ZooKeys 991: 137-153. https://doi.org/10.3897/zookeys.991.54935
Figure 2 A The general aspect of the adult male holotype of Goniurosaurus gollum sp. nov. (SYS r002420) in life B scalation and coloration characters of the head of the holotype. Photographs by Shuo Qi.
Figure 1 from: Qi S, Wang J, Grismer LL, Chen H-H, Lyu Z-T, Wang Y-Y (2020) The Stoor Hobbit of Guangdong: Goniurosaurus gollum sp. nov., a cave-dwelling Leopard Gecko (Squamata, Eublepharidae) from South China. ZooKeys 991: 137-153. https://doi.org/10.3897/zookeys.991.54935
Figure 1 Bayesian inference tree of 14 species of Goniurosaurus, based on the partial DNA sequences of the mitochondrial 16S rRNA and Cytb genes. Hemitheconyx taylori is the outgroup. Numbers before slash indicate Bayesian posterior probabilities (BPP) and numbers after slash are bootstrap support for ML (1000 replicates) analyses.
Figure 5 from: Qi S, Wang J, Grismer LL, Chen H-H, Lyu Z-T, Wang Y-Y (2020) The Stoor Hobbit of Guangdong: Goniurosaurus gollum sp. nov., a cave-dwelling Leopard Gecko (Squamata, Eublepharidae) from South China. ZooKeys 991: 137-153. https://doi.org/10.3897/zookeys.991.54935
Figure 5 The holotype of Goniurosaurus gollum sp. nov. (SYS r002420) at its habitat: a barren limestone cave of Guangdong, China. Photograph by Shuo Qi.
Figure 6 from: Wang C-Q, Zhang M, Li T-H (2020) Three new species from Guangdong Province of China, and a molecular assessment of Hygrocybe subsection Hygrocybe. MycoKeys 75: 145-161. https://doi.org/10.3897/mycokeys.75.59600
Figure 6 Microscopic features Hygrocybe rubroconica (GDGM45213) A basidiospores B basidia C Hymenophoral trama cells D terminal cells of pileipellis.
Figure 3 from: Wang C-Q, Zhang M, Li T-H (2020) Three new species from Guangdong Province of China, and a molecular assessment of Hygrocybe subsection Hygrocybe. MycoKeys 75: 145-161. https://doi.org/10.3897/mycokeys.75.59600
Figure 3 Basidiomes of Hygrocybe species AHygrocybe debilipes (GDGM59314) BHygrocybe debilipes (GDGM57013) CHygrocybe griseonigricans (GDGM73527) DHygrocybe griseonigricans (GDGM81394) EHygrocybe rubroconica (GDGM45213) FHygrocybe rubroconica (GDGM45214).
Figure 2 from: Wang C-Q, Zhang M, Li T-H (2020) Three new species from Guangdong Province of China, and a molecular assessment of Hygrocybe subsection Hygrocybe. MycoKeys 75: 145-161. https://doi.org/10.3897/mycokeys.75.59600
Figure 2 Maximum-likelihood tree of sect. Hygrocybe based on ITS matrix, rooted with members of subsect. Macrosporae. The newly generated sequences in this study are indicated in bold face. GenBank accession number of downloaded sequence or voucher number of newly generated sequence and place of origin are given after the species name of each sequence. Bootstrap values more than 50% are shown around the branches.
Figure 1 from: Wang C-Q, Zhang M, Li T-H (2020) Three new species from Guangdong Province of China, and a molecular assessment of Hygrocybe subsection Hygrocybe. MycoKeys 75: 145-161. https://doi.org/10.3897/mycokeys.75.59600
Figure 1 Maximum Likelihood phylogram of genus Hygrocybe based on LSU matrix, rooted with Hygroaster albellus (EF551314), H. nodulisporus (EF561625) and H. andersonii (KF291171). The newly generated sequences in this study are showed in bold. GenBank accession numbers of downloaded sequences or voucher numbers of new sequences are given after the species names. Bootstrap values more than 50% are shown around the branches.
Figure 5 from: Wang C-Q, Zhang M, Li T-H (2020) Three new species from Guangdong Province of China, and a molecular assessment of Hygrocybe subsection Hygrocybe. MycoKeys 75: 145-161. https://doi.org/10.3897/mycokeys.75.59600
Figure 5 Microscopic features Hygrocybe griseonigricans (GDGM73527) A basidiospores B basidia C terminal cells of hymenophoral trama D terminal cells of pileipellis.
Figure 4 from: Wang C-Q, Zhang M, Li T-H (2020) Three new species from Guangdong Province of China, and a molecular assessment of Hygrocybe subsection Hygrocybe. MycoKeys 75: 145-161. https://doi.org/10.3897/mycokeys.75.59600
Figure 4 Microscopic features Hygrocybe debilipes (GDGM59314) A basidiospores B basidia C terminal cells of hymenophoral trama D terminal cells of pileipellis.
FIGURE 25–26 in Description of Chlorogomphus auripennis spec. nov. from Guangdong Province, with new records of Chlorogomphidae from Yunnan Province, China (Odonata: Chlorogomphidae)
FIGURE 25–26. Chloropetalia selysi (Fraser, 1929), photos of live females, photos by Haomiao Zhang.
FIGURE 2 in Description of Chlorogomphus auripennis spec. nov. from Guangdong Province, with new records of Chlorogomphidae from Yunnan Province, China (Odonata: Chlorogomphidae)
FIGURE 2. Chlorogomphus auripennis spec. nov., paratype female, golden wing morph, general habitus.
FIGURE 1 in Description of Chlorogomphus auripennis spec. nov. from Guangdong Province, with new records of Chlorogomphidae from Yunnan Province, China (Odonata: Chlorogomphidae)
FIGURE 1. Chlorogomphus auripennis spec. nov., hototype male, general habitus.
FIGURE 7 in Loropetalum axillare (Hamamelidaceae), a new species from Guangdong, China
FIGURE 7. Distribution of Loropetalum axillare (red circle).
Figure 4 from: Zhang X-Y, Dai J-M, Fan Q, Chen Z-X, Tang G-D, Liao W-B (2024) Lysimachia danxiashanensis, a new species of Primulaceae from Guangdong, China. PhytoKeys 237: 257-268. https://doi.org/10.3897/phytokeys.237.114484
Figure 4 Morphological differences between L. congestiflora and L. danxiashanensisAL. congestifloraBL. danxiashanensis1 plants 2 corolla lobes 3 calyx lobes 4 petiole (Photographers: A–1 by Wan-Yi Zhao A2–4 by Xin-Xin Zhu B1, 2, 4 by Xing-Yue Zhang B–3 by Qiang Fan).
Figure 3 from: Zhang X-Y, Dai J-M, Fan Q, Chen Z-X, Tang G-D, Liao W-B (2024) Lysimachia danxiashanensis, a new species of Primulaceae from Guangdong, China. PhytoKeys 237: 257-268. https://doi.org/10.3897/phytokeys.237.114484
Figure 3 Lysimachia danxiashanensis W.B.Liao, Q.Fan & G.D.Tang, sp. nov. A habit B abaxial (left) and adaxial (right) views of leaf C adaxial side of corolla lobes D lateral view of flower E dorsal view of flower F stamens G pistil and stigma H fruit I adaxial (left) and abaxial (right) views of calyx (Drawn by Rong-En Wu).
Figure 2 from: Zhang X-Y, Dai J-M, Fan Q, Chen Z-X, Tang G-D, Liao W-B (2024) Lysimachia danxiashanensis, a new species of Primulaceae from Guangdong, China. PhytoKeys 237: 257-268. https://doi.org/10.3897/phytokeys.237.114484
Figure 2 Lysimachia danxiashanensis W.B.Liao, Q.Fan & G.D.Tang, sp. nov. A habit B flowering branch C inflorescence D abaxial and adaxial views of leave E lateral view of flower F dorsal view of flower G adaxial side of corolla lobes H stamens I immature capsule J abaxial (1st, 2nd, 5th) and adaxial (3rd, 4th) views of calyx lobes K pistil and densely pilose pedicel L stigma M cross-section of ovary (Photographers: A, C, D, I by Xing-Yue Zhang; B, E, F by Qiang Fan; G, H, J–M by Jing-Min Dai).
Figure 3 from: Lin M, Ye Q-L, Zhang Z-J, Liao W-B, Fan Q (2024) Camellia zijinica (Theaceae), a new species endemic to Danxia landscape from Guangdong Province, China. PhytoKeys 237: 245-255. https://doi.org/10.3897/phytokeys.237.114768
Figure 3 Camellia zijinica sp. nov. A habit B, C flowering branch D leaf shape E flower in front view F flower in back view G pistil and ovary H flowering branch, showing the stamens I flowering branch, showing the bracteoles and sepals J fruits, showing young to ripe (a-c) K bracteoles, sepals and petals. Photographed by Zhi-Ming Zhong, Qiang Fan and Min Lin.
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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.