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FIGURE 9 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 9. Puccinia vaginatae on Saussurea sp. (A–F) and Carex sp. (G–I). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Aeciospores with granules on the surface observed under SEM. F. An aecium observed under SEM. G. Telia on the lower leaf surface. H, I. Vertical section of a telium. Scale bars: B = 20 μm, C = 30 μm, E = 5 μm, F, H, I = 50 μm.
FIGURE 8 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 8. Puccinia caricis-atractylodis on Atractylodes macrocephala (A–E, H, I) and Carex lanceolata (F, G, J). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Aeciospores. F. Plants producing telia on the leaf surface in the field. G. Telia on the lower leaf surface. H. An aecium observed under SEM. I. Aeciospores with granules on the surface observed under SEM. J. Vertical section of a telium. Scale bars: C, E = 20 μm, D = 50 μm, H = 100 μm, I = 5 μm, J = 30 μm.
FIGURE 5 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 5. Puccinia adenocauli on Adenocaulon himalaicum (A–F) and Carex onoei (G–J). A. Plants producing spermogonia and aecia on the leaf surface. B. A vertical section of a spermogonium. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower the leaf surface. E. An aecium observed under SEM. F. Aeciospores with granules on the surface observed under SEM. G. Uredinia on the lower leaf surface. H. A vertical section of a uredinium. I. Urediniospores. J. Teliospores. Scale bars: B, I, J = 20 μm, C, H = 30 μm, E = 100 μm, F = 5 μm.
FIGURE 6 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 6. Puccinia caricis-violae on Viola acuminata (A–G) and Carex sp. (H, I). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Aeciospores. F. An aecium observed under SEM. G. Aeciospores with granules on the surface observed under SEM. H. Telia on the leaf surface. I. Vertical section of a telium. Scale bars: C, E, J = 20 μm, D = 30 μm, F = 50 μm, G = 10 μm.
FIGURE 4 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 4. Puccinia caricis-lactucae on Prenanthes (A–D, F–H) and Carex (E, I). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Vertical section of a spermogonium. C. Spermogonia and aecia on the lower leaf surface. D. Vertical section of an aecium surrounded with peridia. E. Telia on the leaf surface. F. An aecium observed under SEM. G. Aeciospores with granules on the surface observed under SEM. H. Aeciospores. I. Vertical section of a telium. Scale bars: B, H = 20 μm, D, F, I = 40 μm, G = 10 μm.
FIGURE 3 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 3. Phylogenetic tree of specimens on Cyperaceae and related host plants constructed by MP method based on ITS+28S regions of rDNA. Bootstrap values of MP and ML are followed by the Bayesian posterior probabilities (Bpp) on the nodes in the topology. Asterisk (*) represents bootstrap values or Bpp less than 50% in the topology. Sample data are shown with voucher specimen number or GenBank accession number, and host plant. Sequence data determined in this study are shown in color. Teliospore shapes are shown in each clade detected, and new species are shown by asterisk (*) on clades. 0, I: Spermogonial and aecial host genus. Asterisk (*) on host plants: Spermogonial and aecial host plants.
FIGURE 2 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 2. Phylogenetic relationships among species on Carex shown with synoptic phylogenetic tree constructed by MP method based on ITS+28S regions of rDNA. Same color branches show phylogenetic groups. 0, I: Spermogonial and aecial host genus.
FIGURE 1 in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Carex (Cyperaceae) from northeastern China
FIGURE 1. Collection areas in northeastern China. A. Changchun area in Jilin Province. B. Jilin area in Jilin Province. C. Mountanious area in southern Heilongjiang Province. D. Area around Changbai Mountains in Jilin Province. E. Baicheng area in western Jilin Province. F. Yanbian area in eastern Jilin Province. G. Tonghua area in southeastern Jilin Province.
FIGURE. Central Asian species of Salvia: A. S. korolkovii (photo by A. Gaziev, https://www.plantarium.ru/page/view/item/33503. html); B. S. aethiopis (photo by F. Celep) C. S. vvedenskyi (photo by Georgy Lazkov, https://www.plantarium.ru/page/view/item/33562. html). D. S. drobovii (photo by N. Beshko, https://www.plantarium.ru/page/view/item/33477.html); E. S. lilacinocoerulea (photo by N. Beshko, https://www.plantarium.ru/page/view/item/33505.html). F. S. karelinii (photo by D. Polevoy, https://www.plantarium.ru/page/ view/item/27351.html) G. S. insignis (photo by O. Turdiboev), H. S. verticillata subsp. amasiaca (photo by F. Celep). in Synopsis of the Central Asian Salvia species with identification key
FIGURE. Central Asian species of Salvia: A. S. korolkovii (photo by A. Gaziev, https://www.plantarium.ru/page/view/item/33503. html); B. S. aethiopis (photo by F. Celep) C. S. vvedenskyi (photo by Georgy Lazkov, https://www.plantarium.ru/page/view/item/33562. html). D. S. drobovii (photo by N. Beshko, https://www.plantarium.ru/page/view/item/33477.html); E. S. lilacinocoerulea (photo by N. Beshko, https://www.plantarium.ru/page/view/item/33505.html). F. S. karelinii (photo by D. Polevoy, https://www.plantarium.ru/page/ view/item/27351.html) G. S. insignis (photo by O. Turdiboev), H. S. verticillata subsp. amasiaca (photo by F. Celep).
Distribution. Lowland forests of W Brazil, E Peru, and N Bolivia, S of the Amazon River. Because of abundance of individuals in the C. castanea complex, hampering precise species identification in the field and in collections, a detailed assessment ofits distribution is still needed. in Phyllostomidae
Distribution. Lowland forests of W Brazil, E Peru, and N Bolivia, S of the Amazon River. Because of abundance of individuals in the C. castanea complex, hampering precise species identification in the field and in collections, a detailed assessment ofits distribution is still needed.
FIGURE 2 in A new species of Rhopalopsole Klapálek, 1912 with preliminary female identifications in this genus
FIGURE 2. Rhopalopsole singiplatta, sp. nov. A. male abdominal terminalia, dorsal view; B. male abdominal terminalia, lateral view; C. male abdominal terminalia, ventral view
FIGURE 3 in A new species of Rhopalopsole Klapálek, 1912 with preliminary female identifications in this genus
FIGURE 3. Rhopalopsole singiplatta, sp. nov. A: male abdominal terminalia, dorsal view; B: male abdominal terminalia, ventral view; C: lateral processes of tergum 10.
FIGURE 4. Phylogenetic relationships among 9 in A new species of Rhopalopsole Klapálek, 1912 with preliminary female identifications in this genus
FIGURE 4. Phylogenetic relationships among 9 species of Leuctridae based on a Maximum Likelihood tree analysis. Numbers at the nodes represent bootstrap values as percentages. Only nodal support values>70% are depicted on the tree. Genus names are marked to the right of each species. M = male, F = female.
FIGURE 2 in Three new species of Pergalumna (Acari, Oribatida, Galumnidae) from Malawi, with updated identification key to known species of the genus from the Afrotropical region
FIGURE 2. Pergalumna (Pergalumna) dedzaensis sp. nov., dissected adult: A—subcapitulum, ventral view; B—chelicera, right, antiaxial view C—palp, right, antiaxial view; D—leg I (trochanter not shown), right, antiaxial view; E—leg II (tarsus not shown), right, ventroantiaxial view; F—leg III (trochanter and tarsus not shown), left, antiaxial view; G—leg IV, left, antiaxial view. Scale bars 50 μm.
FIGURE 6 in Three new species of Pergalumna (Acari, Oribatida, Galumnidae) from Malawi, with updated identification key to known species of the genus from the Afrotropical region
FIGURE 6. Pergalumna (Pergalumna) parafrater sp. nov., adult: A—dorsal view; B—anterior part of prodorsum, dorsoanterior view; C—ventral view (gnathosoma, legs and right pteromorph not shown); D—right lateral view (gnathosoma, legs and pteromorph not shown); E—posterior view (left pteromorph not shown). Scale bars 100 μm (A, C–E), 50 μm (B).
FIGURE 5 in Three new species of Pergalumna (Acari, Oribatida, Galumnidae) from Malawi, with updated identification key to known species of the genus from the Afrotropical region
FIGURE 5. Pergalumna (Pergalumna) paratsavoensis sp. nov., adult: A—dorsal view; B—anterior part of prodorsum, dorsoanterior view; C—ventral view (gnathosoma, legs and right pteromorph not shown); D—right lateral view (gnathosoma, legs and pteromorph not shown); E—posterior view (left pteromorph not shown). Scale bars 100 μm (A, C–E), 50 μm (B).
FIGURE 4 in Three new species of Pergalumna (Acari, Oribatida, Galumnidae) from Malawi, with updated identification key to known species of the genus from the Afrotropical region
FIGURE 4. Pergalumna (Pergalumna) dedzaensis sp. nov. (A, B), P. (P.) paratsavoensis sp. nov. (C–F) and P. (P.) parafrater sp. nov. (G–I), dissected adult, photo images: A—lamellar seta and partially lamellar and sublamellar lines, anterolateral view; B—right genital plate; C—rostrum, dorsal view; D—inner rostral tooth; E—anterior dentate margin of ventral plate; F— tuberculate sculpturing of leg trochanter IV; G—striate and tuberculate sculpturing of anterior part of pteromorph; H—striate and tuberculate sculpturing of lateral part of pteromorph; I—adanal lyrifissure.
FIGURE 3 in Three new species of Pergalumna (Acari, Oribatida, Galumnidae) from Malawi, with updated identification key to known species of the genus from the Afrotropical region
FIGURE 3. Pergalumna (Pergalumna) dedzaensis sp. nov., adult, SEM micrographs: A—dorsal view; B—ventral view; C— anterior view (rostrum broken); D—right lateral view.
FIGURE 1 in Three new species of Pergalumna (Acari, Oribatida, Galumnidae) from Malawi, with updated identification key to known species of the genus from the Afrotropical region
FIGURE 1. Pergalumna (Pergalumna) dedzaensis sp. nov., adult: A—dorsal view; B—anterior part of prodorsum, dorsoanterior view; C—ventral view (gnathosoma, legs and right pteromorph not shown); D—right lateral view (gnathosoma, legs and pteromorph not shown); E—posterior view (left pteromorph not shown). Scale bars 100 μm (A, C–E), 50 μm (B).
FIGURES 13–16 in Contributions to the taxonomy, identification, and biogeography of Palaearctic Campopleginae (Hymenoptera: Ichneumonidae), with the descriptions of four new species from Iran
FIGURES 13–16. Melalophacharops persicus Vas, sp. nov. 13, holotype female, lateral habitus, scale bar = 1 mm; 14, head, frontal view; 15, head, dorsal view; 16, propodeum, dorsal view.
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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.