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2,256 results for “Southern China”
Figure 1 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 1 Exocelina sugayai sp. nov. A habitus dorsal of male B same of female C foretarsus of male, arrow pointing at expanded anterior ventral angle of tarsomere IV D surface sculpture on male elytral disc, cropped from A. Length of left beetle: 2.7 mm.
Figure 7 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 7 Simplified phylogenetic tree obtained with IQ-TREE using the DNA sequence dataset of Toussaint et al. (2014, 2015 as well as 2020 in preparation) plus the newly obtained sequences of Exocelina sugayai sp. nov. Non-relevant clades are collapsed to genus or other major clades. Numbers in nodes, ultrafast bootstrap / SH-like aLRT support.
Figure 2 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 2 Exocelina sugayai sp. nov. male A eye in lateral view B detail of head and pronotum C surface sculpture on base of head and anterior margin of pronotum D detail of posterior angle of pronotum E detail of surface sculpture on base of elytron F detail of lateral view of elytral and pronotal base and head.
Figure 9 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 9 Microscopic structures of Lyomyces wuliangshanensis (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 5 μm (A); 10 μm (B–E).
Figure 8 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 8 Microscopic structures of Lyomyces macrosporus (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 10 μm (A–E).
Figure 7 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 7 Microscopic structures of Lyomyces cremeus (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 5 μm (A); 10 μm (B–E).
Figure 6 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 6 Microscopic structures of Lyomyces bambusinus (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 5 μm (A); 10 μm (B–E).
Figure 1 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 1 Maximum parsimony strict consensus tree illustrating the phylogeny of four new species and related species in Lyomyces based on ITS sequences. Branches are labelled with maximum likelihood bootstrap equal to or higher than 70%, parsimony bootstrap proportions equal to or higher than 50% and Bayesian posterior probabilities equal to or high than 0.95 respectively.
FIG. 2 in A new anophthalmic trechine genus and two new species from southern Guizhou China (Coleoptera: Carabidae: Trechini)
FIG. 2 Habitus of Miaotrechus mahua n. sp., holotype
FIG. 1 in A new anophthalmic trechine genus and two new species from southern Guizhou China (Coleoptera: Carabidae: Trechini)
FIG. 1 Distribution of the genus Miaotrechus n. gen.
FIG. 4 in A new anophthalmic trechine genus and two new species from southern Guizhou China (Coleoptera: Carabidae: Trechini)
FIG. 4 Elytral chaetotaxy of Miaotrechus mahua n. sp. (A) and M. heweii n. sp. (B)
FIG. 8 in A new anophthalmic trechine genus and two new species from southern Guizhou China (Coleoptera: Carabidae: Trechini)
FIG. 8 Habitus of Miaotrechus heweii n. sp., holotype
FIG. 3 in A new anophthalmic trechine genus and two new species from southern Guizhou China (Coleoptera: Carabidae: Trechini)
FIG. 3 Ventral head of Miaotrechus mahua n. sp.
Figure 3 from: Zhang K, Wu M, Pan B, Zhou L, Zhang D (2020) Jasminum parceflorum (Oleaceae), a new species from southern Yunnan, China. PhytoKeys 146: 109-115. https://doi.org/10.3897/phytokeys.146.49625
Figure 3 A Distribution of Jasminum parceflorum in Yunnan Province, China B view of Yinchang Mountain.
Figure 1 from: Zhang K, Wu M, Pan B, Zhou L, Zhang D (2020) Jasminum parceflorum (Oleaceae), a new species from southern Yunnan, China. PhytoKeys 146: 109-115. https://doi.org/10.3897/phytokeys.146.49625
Figure 1 Jasminum parceflorum. A flowering branch B branchlet C leaves (adaxial view and abaxial view) D vein axils with hair tufts (abaxial view) E stamens F pin flower G thrum flower H peduncle with bracts I calyx J pistil of pin flower K pistil of thrum flower L stigma. Drawn by Yunxiao Liu.
Figure 2 from: Zhang K, Wu M, Pan B, Zhou L, Zhang D (2020) Jasminum parceflorum (Oleaceae), a new species from southern Yunnan, China. PhytoKeys 146: 109-115. https://doi.org/10.3897/phytokeys.146.49625
Figure 2 Jasminum parceflorum. A habitat B habit C branch with a thrum flower D branchlet E dissected corolla tubes, thrum flower (upper) and pin flower (lower) F fruiting branch G branches with pin flowers H calyx. Scale bars: 0.5mm (D), 1 cm (E, F), 1 mm (H). Photos by Kai Zhang.
Fig. 5. Staminodes, showing 5 in Cheniella gen. nov. (Leguminosae: Cercidoideae) from southern China, Indochina and Malesia
Fig. 5. Staminodes, showing 5 of the 7 per flower mounted on a raised fleshy disc. A. Cheniella corymbosa (Roxb.) R.Clark & Mackinder comb. nov. (×30, Nichols 1292). B. C. tenuiflora (Watt ex C.B.Clarke) R.Clark & Mackinder comb. nov. (×25, Clark 418).
Fig. 7 in Cheniella gen. nov. (Leguminosae: Cercidoideae) from southern China, Indochina and Malesia
Fig. 7. Surface of staminode of Cheniella tenuiflora (Watt ex C.B.Clarke) R.Clark & Mackinder comb. nov. (×100, Clark 426).
Fig. 1 in Cheniella gen. nov. (Leguminosae: Cercidoideae) from southern China, Indochina and Malesia
Fig. 1. Comparative topologies of two separate phylogenetic analyses of tribe Cercideae Bronn. A. Topology of the parsimony strict consensus tree based on the nrDNA Internal Transcribed Spacer region (Hao et al. 2003). B. Bayesian majority rule tree topology derived from an analysis of data from the cpDNA trnL-F region (Sinou et al. 2009). Note that the reinstatement of the genus Schnella (Wunderlin 2010) post-dates both phylogenetic studies.
Fig. 2. Pollen. A in Cheniella gen. nov. (Leguminosae: Cercidoideae) from southern China, Indochina and Malesia
Fig. 2. Pollen. A. Cheniella clemensiorum (Merr.) R.Clark & Mackinder comb. nov., whole grain in oblique equatorial view showing mesocolpial area. B. C. touranensis (Gagnep.) R.Clark & Mackinder comb. nov., close up of polar view showing syncolporate apertures and aperture margins defined by larger verrucae. C. C. damiaoshanensis (T.C.Chen) R.Clark & Mackinder comb. nov., whole grain in oblique equatorial view showing aperture area, with aperture margins defined by larger and anastomosing verrucae, coarsely verrucate aperture membrane, and syncolporate polar area. D. C. touranensis (Gagnep.) R.Clark & Mackinder comb. nov., group of three grains in different orientations showing their shape and an overview of apertures and ornamentation. E. C. corymbosa (Roxb.) R.Clark & Mackinder comb. nov., whole grain in polar view showing syncolporate apertures. F. C. touranensis (Gagnep.) R.Clark & Mackinder comb. nov., close up of mesocolpial area showing surface ornamentation.
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)
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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.