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1,122 results for “Yunnan Province”
FIGURES 8–11 in A new Pseudopyrochroa Pic, 1906 from Yunnan, China with a key to adult Pseudopyrochroa males from the Province and correction on type repository for Frontodendroidopsis pennyi Young (Coleoptera: Pyrochroidae: Pyrochroinae)
FIGURES 8–11. Heads of adult, males of Pseudopyrochroa species, dorsal view. 8) P. basalis (Pic). 9) P. cardoni (Fairmaire). 10) P. inthanonensis Young. 11) P. lineaticollis Pic.
FIGURES 1–4 in A new Pseudopyrochroa Pic, 1906 from Yunnan, China with a key to adult Pseudopyrochroa males from the Province and correction on type repository for Frontodendroidopsis pennyi Young (Coleoptera: Pyrochroidae: Pyrochroinae)
FIGURES 1–4. Pseudopyrochroa grzymalae, sp. nov., adult male. 1) Habitus, dorsal view. 2) Head (cranial apparatus), dorsal view. 3) Left antenna. 4) Abdominal apex and genitalia (distal parameres & penis), ventral view.
FIGURE 2 in Hermatomyces pyriformis sp. nov., a novel dematiaceous hyphomycete (Hermatomycetaceae, Pleosporales) associated with medicinal plants in Yunnan Province, China
FIGURE 2. Hermatomyces pyriformis (HKAS 132457, holotype). a. Host Eleutherococcus nodiflorus. b. Branch of Eleutherococcus nodiflorus. c−e. Colonies on host surface. f. Conidiophores with conidia. g, h. Colonies on PDA (g from above, h from below). i−l. Conidiogenous cells and conidia. m. Germinated conidium. n−u. Conidia. Scale bars: f, i−u = 10 µm.
FIGURE 1 in Hermatomyces pyriformis sp. nov., a novel dematiaceous hyphomycete (Hermatomycetaceae, Pleosporales) associated with medicinal plants in Yunnan Province, China
FIGURE 1. Phylogenetic tree from ML analysis based on the combined LSU, ITS, tef1-α and rpb2 sequences data. Branches support for ML ≥ 75% and Bayesian inference posterior probabilities (BIPP) ≥ 0.95 are marked above or below branches as MLBS/BIPP. The tree was rooted with Elsinoe centrolobi (AFTOL-ID 1854) and E. veneta (AFTOL-ID 1360). The abbreviation T indicate ex-type isolates. New species is indicated in red.
FIGURE 5 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 5. Steccherinum wumengshanense (holotype, C.L. Zhao 23586): basidiomata on the substrate (A), macroscopic characteristics of hymenophore (B). Bars: (A) = 1 cm and (B) = 1 mm.
FIGURE 4 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 4. Microscopic structures of Rhodoantrodia purpurascens (holotype, C.L. Zhao 26267): basidiospores (A), basidia and basidioles (B), cystidia (C), a section of the hymenium (D), hyphae from context (E). Bars: (A–E) = 10 µm.
FIGURE 3 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 3. Rhodoantrodia purpurascens (holotype, C.L. Zhao 26267): basidiomata on the substrate (A), macroscopic characteristics of hymenophore (B). Bars: (A) = 1 cm and (B) = 1 mm.
FIGURE 2 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 2. Maximum parsimony strict consensus tree illustrating the phylogeny of the new species and related species in Steccherinum within Steccherinaceae based on ITS+nLSU sequences. The branch is labeled with a maximum likelihood lead value greater than 70%, a reduced lead value greater than 50% and a Bayesian posterior probability greater than 0.95. The new species are in bold.
FIGURE 1 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 1. Maximum parsimony strict consensus tree illustrating the phylogeny of the new species and related species in Rhodoantrodia within Fomitopsidaceae based on ITS+nLSU sequences. The branch is labeled with a maximum likelihood lead value greater than 70%, a reduced lead value greater than 50% and a Bayesian posterior probability greater than 0.95. The new species are in bold.
FIGURE 6 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 6. Microscopic structures of Steccherinum wumengshanense (holotype, C.L. Zhao 23586): basidiospores (A), basidia and basidioles (B), cystidia (C), a section of the hymenium (D). Bars: A= 5 µm, (B–D) = 10 µm.
FIGURE 2 in Colletotrichum xishanense as a new etiological anthracnose agent on Fagopyrum gracilipes in Yunnan Province, China
FIGURE 2. Phylogenetic tree derived from maximum parsimony analysis of the combined apmat-gs sequences, using Colletotrichum xanthorrhoeae BRIP 45094 as outgroup. Maximum parsimony bootstrap values (MP>50%) and Bayesian posterior probabilities (BI>0.95) are shown above or below the branches. Type strains are in bold.
FIGURE 3 in Colletotrichum xishanense as a new etiological anthracnose agent on Fagopyrum gracilipes in Yunnan Province, China
FIGURE 3. Colletotrichum xishanense (453-2-3-1, ex-holotype): A. Front (left) and back (right) views of 7-d-old PDA culture; B. Symptoms on leaves of Fagopyrum gracilipes; C–D. Conidiogenous cells; E. Conidia; F–I. Appressoria. A. On PDA. C–I. On OA. Scale bars: C–I = 10 μm.
FIGURE 1 in Colletotrichum xishanense as a new etiological anthracnose agent on Fagopyrum gracilipes in Yunnan Province, China
FIGURE 1. Phylogenetic tree derived from maximum parsimony analysis of the combined act-tub2-cal-chs-1-gapdh-ITS sequences, using Colletotrichum boninense CBS 123755 as outgroups. Maximum parsimony bootstrap values (MP>50%) and Bayesian posterior probabilities (BI>0.95) are shown above or below the branches. Type strains are in bold.
PLATE 7. Eunotia pseudoambivalens Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 7. Eunotia pseudoambivalens Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 51–59. Light microscope images showing size diminution series. Holotype population. Scale bar = 10 µm.
PLATE 6. Eunotia obtusisaculea Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 6. Eunotia obtusisaculea Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 43–50. Scanning electron microscope images. Figures 43–46, external views. Fig. 43. Whole valve view, showing thickened interstriae and blunt spines about the dorsal margin. Fig. 44. View of valve mantle near apex of the valve. Raphe is sinuous, dilated at the proximal end and barely extending onto the valve face. Fig. 45. View of mid-valve showing solid blunt spines on the dorsal margin. Thick interstriae separate striae which bear round occlusions. Fig. 46. Girdle view of a frustule near apex. Raphe branches can be seen on both valves. One valve possesses 10 cingulum elements, which all bear poroids. Figs. 47–50, internal views. Fig. 47. Whole valve. Striae occur in narrow troughs. Pseudosepta are present at the poles. Fig. 48. Valve apex, with helictoglossa and rimoportula present. Fig. 49. Mid-valve showing narrow troughs of the striae. Fig. 50. Apex of the valve.
PLATE 3. Eunotia sinensis Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 3. Eunotia sinensis Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 18–27. Light microscope images showing size diminution series. Holotype population. Scale bar = 10 µm.
PLATE 4. Eunotia sinensis Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 4. Eunotia sinensis Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 28–33. Scanning electron microscope images. Figures 28–30, external views. Fig. 28. Whole valve showing valve outline and distal raphe ends curing ca. ¼ of the way from the ventral margin towards dorsal margin. Figs 29, 30. Valve apices, with distal raphe end dilated slightly and curved onto the valve face. Areolae are occluded externally. Figures 31–33, internal views. Fig. 31. Whole valve, with pseudosepta present at each apex. Figs 32, 33, valve apices. Striae appear to be in continuous vertically-oriented troughs. Helictoglossa is short. The rimoportula is sessile, small.
PLATE 5. Eunotia obtusisaculea Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 5. Eunotia obtusisaculea Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 34–42. Light microscope images showing size diminution series. Holotype population. Scale bar = 10 µm.
PLATE 2. Eunotia yunnanica Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 2. Eunotia yunnanica Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 12–17. Scanning electron microscope images. Figures 12– 14, external views. Fig. 12. Whole valve showing thickened ridges between striae. Fig. 13. View of mid-valve showing striae multiseriate at the dorsal margin and onto the mantle, but uniseriate across the valve face. Fig. 14. Valve apex showing striae uniseriate on valve face and mantle. Distal raphe end curves ca. 1/3 of the way from the ventral margin towards the dorsal margin. Figs 15–17, internal views. Fig. 15. Whole valve view with pseudosepta present at apices. Fig. 16. Dorsal margin with striae multiseriate, becoming uniseriate across the valve face. Fig. 17. Valve apex showing pseudoseptum and helictoglossa.
PLATE 1. Eunotia yunnanica Q. Liu, S. L in New and Interesting Diatoms from the Shiwan Wetwalls, Yunnan Province, China. III. Valve ultrastructure of four new species of Eunotia (Bacillariophyceae: Eunotiales)
PLATE 1. Eunotia yunnanica Q. Liu, S. L. Xie & Kociolek, sp. nov. Figures 1–11. Light microscope images showing size diminution series. Holotype population. Scale bar = 10 µm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.