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2,256 results for “Southern China”
FIGURE 2. Briggsia leiophylla. A in Briggsia leiophylla, a new species of Gesneriaceae from southern Guizhou, China
FIGURE 2. Briggsia leiophylla. A) Habitat. B) Habit. C) Top view of corolla. D) Frontal view of corolla. E) Lateral view of corolla. F) Frontal view of corolla for showing anthers. G) Pedicel and peduncle. H) Calyx lobes. I) Pistil. J) Stigma.
FIGURE 1. Briggsia leiophylla. A in Briggsia leiophylla, a new species of Gesneriaceae from southern Guizhou, China
FIGURE 1. Briggsia leiophylla. A) Habit. B) Different shape of leaf blades. C) Frontal view of corolla. D) Top view of corolla. E) Lateral view of corolla. F) Back view of corolla for showing calyx lobes. G) Opened corolla. H) Stamens and filaments. I) Pistil. J) Stigma.
FIGURE 2 in Morphological and molecular evidence for a new species of Russula (Russulaceae) from southern China
FIGURE 2 Russula subrutilans (Holotype RITF1874). A Basidiomata; B Basidia; C Cheilocystidia; D Pleurocystidia; E Caulocystidia; F Pileipellis; G Pileocystidia
FIGURE 1 in Morphological and molecular evidence for a new species of Russula (Russulaceae) from southern China
FIGURE 1 One of 100 RAxML likelihood trees (–In L 5048.098170) based on the ITS dataset. Support values in boldface are RAxML likelihood bootstrap (≥70%). Values in normal type are Bayesian posterior probabilities (≥0.95).
FIGURE 2. Oreocharis tsaii. A. Habit. B in Oreocharis tsaii, a new species of Gesneriaceae from southern Yunnan, China
FIGURE 2. Oreocharis tsaii. A. Habit. B. Leaf (abaxial). C. Flower, lateral view. D–F. Corolla shapes. G–I. Opened corolla showing stamens and staminode. J–M. Calyx. N. Stamen. O–P. Pistil. Q. Capsule. Illustration by Bi-Dan Lai based on the holotype Yun-Hong Tan 3308.
FIGURE 1. Oreocharis tsaii. A. Habit. B. Leaf. C–F. Corolla shapes. G–J. Opened corolla showing stamens and staminode. K–L. Calyx. M. Pistil. N in Oreocharis tsaii, a new species of Gesneriaceae from southern Yunnan, China
FIGURE 1. Oreocharis tsaii. A. Habit. B. Leaf. C–F. Corolla shapes. G–J. Opened corolla showing stamens and staminode. K–L. Calyx. M. Pistil. N. Capsule. Photographed by Yun-Hong Tan.
FIGURES 17–20 in Gyrosigma rostratum sp. nov. (Bacillariophyta) from the low intertidal zone, Xiamen Bay, southern China
FIGURES 17–20. Gyrosigma rostratum, sp. nov., internal views, SEM. 17–18. Two types of valve. 19. Detail of Fig. 17, showing helictoglossa, axial costa (arrow) more markedly developed on one side of raphe and apical pores (black arrow). 20. A detail of Fig. 17, showing central bars (arrows) and T-shaped proximal raphe endings. Scale bars = 10 μm (in Figs. 17–18), 1 μm (in Figs. 19–20).
FIGURES 2–11 in Gyrosigma rostratum sp. nov. (Bacillariophyta) from the low intertidal zone, Xiamen Bay, southern China
FIGURES 2–11. Gyrosigma rostratum, sp. nov., LM. 2. One cell with two girdle-appressed chloroplasts per cell. 3. Photograph of holotype specimen with discernable conopeum (arrow). 4. Photograph of isotype specimen with two discernable conopea (two arrows). 3–6. Four valves belonging to one type of valves, either epitheca or hypotheca. 7–11. Five valves belonging to the other type of valves, either epitheca or hypotheca. Scale bars = 10 μm (Figs. 3–11 are in the same scale).
FIGURE 1 in Gyrosigma rostratum sp. nov. (Bacillariophyta) from the low intertidal zone, Xiamen Bay, southern China
FIGURE 1. Map of study sites showing three low intertidal zones of sampling: ZCV= Zengcuo Village, YFV= Yefeng Village and HZC= Huizhan Center.
FIGURES 12–16 in Gyrosigma rostratum sp. nov. (Bacillariophyta) from the low intertidal zone, Xiamen Bay, southern China
FIGURES 12–16. Gyrosigma rostratum, sp. nov., external views, SEM. 12–13. Two types of valves (epitheca and hypotheca) with conopeum at each end (arrows), clockwise rotated raphe (12) and anticlockwise rotated raphe (13) in relation to apical axis. 14. Apex, showing noticeable conopeum, elongated narrow slits, round pores locating on the mantle (arrows), terminal raphe fissure, and five apical pores (black arrow). 15–16. Two central areas of epitheca and hypotheca, both with proximal raphe fissures turning in same direction (Fig. 15 central area of Fig. 12, Fig. 16 central area of Fig. 13). Scale bars = 10 μm (in Figs. 12–13), 1 μm (in Figs. 14–16).
FIGURE 3 in Molecular and morphological evidences reveal two new species in Grammothele and Theleporus (Basidiomycota) from southern China
FIGURE 3.—Microscopic structures of Grammothele separabillima. —a: Basidiospores. —b: Basidia and basidioles. —c: Dendrohyphidia. —d: Hyphae from trama. —e: Hyphae from subiculum.
FIGURE 1 in Molecular and morphological evidences reveal two new species in Grammothele and Theleporus (Basidiomycota) from southern China
FIGURE 1.—Phylogram obtained from most parsimonious analysis of the ITS gene sequences of Grammothele, Theleporus and other genera included in the study. Numbers at branches indicate parsimony bootstrap values and Bayesian posterior probabilities values higher than 50%. - Indicates lack of support or support less than 50% for an articular clade.
FIGURE 5 in Molecular and morphological evidences reveal two new species in Grammothele and Theleporus (Basidiomycota) from southern China
FIGURE 5.—Microscopic structures of Theleporus rimosus. —a: Basidiospores. —b: Basidia and basidioles. —c: Dendrohyphidia. —d: Hyphae from trama. —e: Hyphae from subiculum.
FIGURE 1. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. Mature cauline leaf. b. Inflorescence. c. Pistil. d. Stamen. e. Sepal. f in A new species of Thalictrum (Ranunculaceae) from southern Tibet (Xizang), China
FIGURE 1. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. Mature cauline leaf. b. Inflorescence. c. Pistil. d. Stamen. e. Sepal. f. Fruit. (Drawn based on an isotype of PE-Tibetan Expedition 4387 by G. Q. Zhao).
FIGURE 2. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. A blooming individual. b & e in A new species of Thalictrum (Ranunculaceae) from southern Tibet (Xizang), China
FIGURE 2. Thalictrum austrotibeticum J. Y. Li, L. Xie & L. Q. Li. a. A blooming individual. b & e. Upper and lower leaves showing color and morphology variation. c. Inflorescence. d. Mature flower and fruits showing purple filaments and compressed fruits. (Photos from Gyirong and Nyalam populations by J. Y. Li, L. Xie, and X. T. Ma)
FIGURES 16–18 in Gyrosigma xiamenense sp. nov. (Bacillariophyta) from the middle intertidal zone, Xiamen Bay, southern China
FIGURES 16–18. Gyrosigma xiamenense sp. nov., external views, SEM. 16. A whole valve, note that the raphe sternum has single curvature only. 17. Apex showing an isolated crescent of apical pores (three black arrowheads), terminal raphe fissure, round pores located on the mantle (three black arrows) and on the other side continuing up to the longitudinal middle line of the valve (three white arrows), and elongated narrow slits. 18. Central area, showing proximal raphe fissures turning first in opposite directions, then both final parts of the fissures run nearly parallel to the longitudinal striae. Peripheral stria condensation (three double-headed arrows), and round pores located on the mantle (three arrows). Scale bars = 20 μm (Fig. 16), 1 μm (Figs 17–18).
FIGURES 23–30 in Gyrosigma xiamenense sp. nov. (Bacillariophyta) from the middle intertidal zone, Xiamen Bay, southern China
FIGURES 23–30. Gyrosigma xiamenense sp. nov., SEM. 23–26. External views of four specimens, showing variation in central raphe fissure morphology. 27–30. Internal views of four specimens, showing variation in central raphe ending morphology. Scale bars = 2 μm (Figs 23–24), 1 μm (in Figs 25–30).
FIGURES 19–22 in Gyrosigma xiamenense sp. nov. (Bacillariophyta) from the middle intertidal zone, Xiamen Bay, southern China
FIGURES 19–22. Gyrosigma xiamenense sp. nov., internal views, SEM. 19. A whole valve, note that the raphe has single curvature only. 20. Apex, showing an isolated crescent of apical pores (three curved arrows), a row of areolae closest to the raphe sternum is capped by small projections (three arrows) on the primary side whilst these are absent on the secondary side. 21. Central area, showing thickened central bars with undulating outer edges. Proximal raphe endings club-shaped and wide, then the final parts of the two raphe endings form two T-shaped slits, each slit being separated from the club-shaped part by a tiny bridge (two arrows). There is a vermiform bar (curved arrow) in the middle of the nodule. 22. Central area, showing a row of areolae closest to the raphe sternum capped by small projections (four arrows), which continue up to the central bar on the primary side whilst on the secondary side these are absent. Scale bars = 20 μm (in Fig. 19), 1 μm (in Figs 20–22).
FIGURE 1 in Gyrosigma xiamenense sp. nov. (Bacillariophyta) from the middle intertidal zone, Xiamen Bay, southern China
FIGURE 1. Map of the study site showing the middle intertidal zone of sampling: DDI = Dadeng Island, YTV = Yangtang Village, CD = Caidian, HT = Houtian, JG = Jiageng, and YMC = Yuemeichi.
FIGURES 10–15 in Gyrosigma xiamenense sp. nov. (Bacillariophyta) from the middle intertidal zone, Xiamen Bay, southern China
FIGURES 10–15. Gyrosigma xiamenense sp. nov., 10–12. External views. 13–15. Internal views, LM. 10, 12, 13, 15. Apex, note the apical pores are distinctive. 11. Central area, note the shadows of central bars. Scale bars = 10 μm for all figures.
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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.