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FIGURE 3. Cryptoplax larvaeformis, Spratly Islands. A–K in Chitons of the genus Cryptoplax (Mollusca: Polyplacophora) from the Spratly Islands, South China Sea
FIGURE 3. Cryptoplax larvaeformis, Spratly Islands. A–K. (ZIN 2449), BL 35.0 mm. A. Valve I, dorsal view. B. Valve II, dorsal view. C. Valve III, dorsal view. D. Valve IV, dorsal view. E. Valve V, dorsal view. F. Valve VI, dorsal view. G. Valve VII, dorsal view. H. Valve VIII, dorsal view. I. Valve V, detail of tegmentum in jugal and pleurolateral areas. J. Valve V, rostral view. K. Valve VIII, lateral view.
Figure 4. Amphinemura yadonga Li in Two new species of Amphinemura (Plecoptera: Nemouridae) from south-western China
Figure 4. Amphinemura yadonga Li, Yang and Li, sp. n. (a) male terminalia, dorsal view; (b) right paraproct, dorsal view; (c) epiproct, dorsal view; (d) epiproct apex, dorsal view.
Figure 2. Amphinemura bicolorata Li in Two new species of Amphinemura (Plecoptera: Nemouridae) from south-western China
Figure 2. Amphinemura bicolorata Li, Yang and Li, sp. n. (a) male terminalia, dorsal view; (b) right paraproct, dorsal view; (c) epiproct, dorsal view; (d) epiproct apex, dorsal view.
Figure 1. Amphinemura bicolorata Li in Two new species of Amphinemura (Plecoptera: Nemouridae) from south-western China
Figure 1. Amphinemura bicolorata Li, Yang and Li, sp. n. (a–c) male terminalia (dorsal view; ventral view; lateral view); (d) right paraproct, posterior view; (e) female terminalia, ventral view; (f) cleared female genital sclerites, dorsal view.
Figure 3. Amphinemura yadonga Li in Two new species of Amphinemura (Plecoptera: Nemouridae) from south-western China
Figure 3. Amphinemura yadonga Li, Yang and Li, sp. n. (a–c) male terminalia (dorsal view; ventral view; lateral view); (d) right paraproct, posterior view; (e) female terminalia, ventral view; (f) cleared female genital sclerites, dorsal view.
Figure 5. Amphinemura bicolorata Li in Two new species of Amphinemura (Plecoptera: Nemouridae) from south-western China
Figure 5. Amphinemura bicolorata Li, Yang and Li, sp. n. (a–f) and Amphinemura yadonga Li, Yang and Li, sp. n. (g–l). (a, g) male epiproct, dorsal view; (b, h) cleared male epiproct, dorsal view; (c, i) male terminalia, lateral view; (d, j) male right paraproct, posterior view; (e, k) female terminalia, ventral view; (f, l) cleared female genital sclerites, dorsal view.
Dataset for Co-benefit of forestation on ozone air quality and carbon storage in South China
<p>This folder includes three folders:</p> <p>The "Concentration_ppbv" folder includes hourly surface ozone (O3) concentrations (unit: ppbv) for April, July, and October 2015 from WRF-Chem simulations (one BASE simulation and ten sensitivity simulations as stated in Method).</p> <p>The "Concentration_ugm-3" folder includes hourly surface ozone (O3) concentrations (unit: ug/m3) for April, July, and October 2015 from WRF-Chem simulations (one BASE simulation and ten sensitivity simulations).</p> <p>The "GPP_damage" folder includes gross primary productivity (GPP) for the year 2015 from YIBs simulations. GGP_0, GPP_L, and GPP_H are results with no ozone damage, with low ozone damage, and with high ozone damage, respectively.</p> <p>Ten sensitivity simulations: Pre-greening, Canopy (Turbulence), Deposition, Emission, LAI2030, SSP126, SSP370, SSP126LAI2030, SSP370LAI2030, LAI2050.</p> <p>For any questions, please contact Zehui Liu<br>Email: liuzh18@pku.edu.cn</p> <p> </p>
FIGURE 3 in Spiradiclis danxiashanensis (Rubiaceae), a new species from South China
FIGURE 3. Micro-morphology of leaf and pollen of Spiradiclis danxiashanensis and S. guangdongensis. A–C. showing adaxial and abaxial epidermis and stomata of S. danxiashanensis (from R.-J. Wang & H.-Z. Wen 1549), respectively. D–F. showing those of S. guangdongensis (from R.-J. Wang, X. Guo, S.-J. Deng 1689), respectively. G–I. showing equatorial and polar views and microreticulate surface of pollen grains of long-styled flowers of S. danxiashanensis (from R.-J. Wang & H.-Z. Wen 1547), J–L. showing those of short-styled flowers of S. danxiashanensis (from R.-J. Wang & H.-Z. Wen 1546), and M–O. showing those of long-styled flowers of S.
FIGURE 1. Spiradiclis danxiashanensis. A. Habit. B in Spiradiclis danxiashanensis (Rubiaceae), a new species from South China
FIGURE 1. Spiradiclis danxiashanensis. A. Habit. B. Stipules, adaxial (left) and abaxial (right) views. C. Dissected short-styled flower, showing stamens and hairy corolla throat. D. Style of short-styled flower, showing the linear bilobed stigma. E. Dissected long-styled flower, showing the stamens and hairy throat. F. Style of long-styled flower, showing the capitate stigma. G. Inflorescence of long-styled flowers. H. Capsule (A–D, H from the type; E, F, and G from R.-J. Wang & H.-Z. Wen 1547). Drawn by Ms Yun-Xiao Liu.
FIGURE 2. Strict consensus tree derived from a in Hedyotis nanlingensis (Rubiaceae), a new species from South China
FIGURE 2. Strict consensus tree derived from a simultaneous analysis of nrITS and petD, with Bayesian Posterior Probabilities (PP) indicated above branches. The field collection number after the taxon indicates different populations or individuals.
FIGURE 1. Hedyotis nanlingensis. A. Habit. B. C, D in Hedyotis nanlingensis (Rubiaceae), a new species from South China
FIGURE 1. Hedyotis nanlingensis. A. Habit. B. C, D. Short-styled flower, with its style and adaxial side of the corolla, respectively. E, F, G. long-styled flowers, with its style and adaxial side of the corolla, respectively. H. Young capsule. I. Seeds, showing the abaxial (up) and adaxial (down) surface, respectively. Drawn from the holotype (long-styled flowers) and Ruijiang Wang & Shujun Deng 2189 (shortstyled flowers) by Ms Yun-Xiao Liu.
FIGURE 2 in Spiradiclis danxiashanensis (Rubiaceae), a new species from South China
FIGURE 2. Morphological characters of Spiradiclis danxiashanensis (A–E) and S. guangdongensis (F–J). A, F. Habit. B, G. Leaves. C, H. Long-styled flowers. D, I. Short-styled flowers. E, J. Young capsules. Photos by Rui-Jiang Wang
FIGURE 25 in Morphology and phylogeny of Halamphora yongxingensis sp. nov. (Bacillariophyta), a new marine benthic diatom isolated from Yongxing Island, South China Sea
FIGURE 25. Molecular phylogenetic tree based on rbcL gene sequences (692 positions included). The tree shown was resulted from Bayesian inference using GTR + I + G model. Nodal support values (NJ/ML/BI) greater than 50% (NJ, ML) and 0.50 (BI) were shown. Both of NJ and ML bootstrap analyses were performed with 1000 replicates.
FIGURE. 24 in Morphology and phylogeny of Halamphora yongxingensis sp. nov. (Bacillariophyta), a new marine benthic diatom isolated from Yongxing Island, South China Sea
FIGURE. 24. Molecular phylogenetic tree based on 18S rDNA sequences (1184 positions included). The tree shown was resulted from Bayesian inference using GTR + I + G model. Outgroup taxon was excluded. Nodal support values (NJ/ML/BI) greater than 50% (NJ, ML) and 0.50 (BI) were shown. Both of NJ and ML bootstrap analyses were performed with 1000 replicates.
FIGURES 19–23 in Morphology and phylogeny of Halamphora yongxingensis sp. nov. (Bacillariophyta), a new marine benthic diatom isolated from Yongxing Island, South China Sea
FIGURES 19–23. Halamphora yongxingensis sp. nov.,SEM micrographs. Fig. 19. Valve in internal view. Scale bar = 2 μm. Fig. 20. Central part of the valve in internal view. Note the proximal raphe ends terminate at a tongue-like expansion, the continuous striae on the ventral side of the valve (arrow a). A single row of elongated areolae close to the raphe-sternum is delimited by an internal longitudinal rib (arrow b) and not interrupted at the centre. Scale bar = 1 μm. Fig. 21. Valve apex in internal view showing distal raphe ending at a poorly developed helictoglossa (arrow). Scale bar = 1 μm. Fig. 22. Girdle bands on dorsal side of the frustule composed of two rows of ovoid or round poroids. Scale bar = 2 μm.
FIGURES 12–18 in Morphology and phylogeny of Halamphora yongxingensis sp. nov. (Bacillariophyta), a new marine benthic diatom isolated from Yongxing Island, South China Sea
FIGURES 12–18. Halamphora yongxingensis sp. nov.,SEM micrographs. Fig. 12. Frustule in dorsal view. Note the valve mantles and the girdle bands. Scale bar = 2 μm. Fig. 13. Frustule in ventral view. Note the small central area, girdle bands and uniseriate areolae on the valve dorsal striae. Scale bar = 2 μm. Fig. 14. Valve in external view showing the uniseriate dorsal striae, continuous ventral striae, the narrow conopeum and the raphe. Scale bar = 2 μm. Fig. 15. Valve in external view showing the high mantle on dorsal side. Scale bar = 2 μm. Figs 16, 17. Central part of the valve in external view. Scale bar = 1 μm. Fig. 16. Note the proximal raphe fissures bent dorsally, teardrop-shaped central pores. Fig. 17. Note the dorsal striae composed of uniseriate areolae throughout (arrow). Fig. 18. Detail of the valve apex in external view. Note the distal raphe fissure bent dorsally (arrow a). Also note the conopeum broadens at the poles and then tapers abruptly, forming a V-shape at the ends (arrow b). Scale bar = 2 μm.
FIGURES 1–11 in Morphology and phylogeny of Halamphora yongxingensis sp. nov. (Bacillariophyta), a new marine benthic diatom isolated from Yongxing Island, South China Sea
FIGURES 1–11. Halamphora yongxingensis sp. nov. Fig. 1. Untreated material showing the plastid structure. LM micrographs. Scale bar = 5 μm. Figs 2–11. Valve view showing the outline of the valve and size and shape variation. Fig. 8. Holotype. Fig. 9. The longest one. Fig. 10. The widest one. Fig. 11. The one with densest dorsal striae. Figs 2–8. LM micrographs. Figs 9–11. SEM micrographs. Scale bar = 5 μm.
FIGURE 3 in Polyphasic characterization of Stigonema dinghuense, sp. nov. (Cyanophyceae, Nostocophycidae, Stigonemaceae), from Dinghu Mountain, south China
FIGURE 3. Maximum likelihood (ML) phylogenetic tree of cyanobacteria based on 16S rRNA sequences (928 bp) representing the current GenBank data on heterocytous cyanobacteria. Bootstrap values greater than 50% with distance/ parsimony methods are indicated at the nodes in this form: NJ/ML/Bayers. Sequences from GenBank are indicated by accession numbers. The main clades are indicated by numbers. Sequences from this study are denoted with solid circles.
FIGURE 5 in Polyphasic characterization of Stigonema dinghuense, sp. nov. (Cyanophyceae, Nostocophycidae, Stigonemaceae), from Dinghu Mountain, south China
FIGURE 5. Maximum likelihood (ML) phylogenetic tree of cyanobacteria based on rbcLX nucleic sequences (769 bp) representing the current GenBank data on heterocytous cyanobacteria. Bootstrap values greater than 50% with distance/ parsimony methods are indicated at the nodes in this form: NJ/ML/Bayers. Sequences from GenBank are indicated by accession numbers. Sequences from this study are denoted with solid circles.
FIGURE 4 in Polyphasic characterization of Stigonema dinghuense, sp. nov. (Cyanophyceae, Nostocophycidae, Stigonemaceae), from Dinghu Mountain, south China
FIGURE 4. Maximum likelihood (ML) phylogenetic tree of cyanobacteria based on nifH nucleic sequences (205 bp) representing the current GenBank data on heterocytous cyanobacteria. Bootstrap values greater than 50% with distance/ parsimony methods are indicated at the nodes in this form: NJ/ML/Bayers. Sequences from GenBank are indicated by accession numbers. Sequences from this study are denoted with solid circles.
ScienceDex guides
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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.