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FIGURE 4 in A taxonomic revision of Zamia montana and Zamia oligodonta, with notes on their conservation status
FIGURE 4. Zamia oligodonta in habitat in Risaralda, Colombia. A. Eophyll leaflets. B. Leaf of juvenile plant. C. Petiole base showing sparse prickles. D. Slightly arborescent ovulate plant with 30 cm. ruler for scale. E. Adult sized plant with completely subterranean stem and two leaves, each approximately 2.7 m long. F. Middle leaflet from adult plant.
FIGURE 1 in A taxonomic revision of Zamia montana and Zamia oligodonta, with notes on their conservation status
FIGURE 1. Illustration of Z. montana leaflet drawn by August Eichler in 1881 (digitally enhanced for clarity)
FIGURE 3 in A taxonomic revision of Zamia montana and Zamia oligodonta, with notes on their conservation status
FIGURE 3. Zamia montana in habitat in Antioquia, Colombia. A. Newly emerging leaf. B. Herbivory by Eumaeus sp. Larvae. C. Arborescent trunk with 30 cm ruler for scale. D. Juvenile seed strobilus approximately 33 x 16 cm. Photograph by Marco Tulio Betancur. E. Juvenile pollen strobili, longest one approximately 12 cm long. Photograph by Julio Betancur.
FIGURE 1 in The taxonomic status of two geophytic Euphorbia species (Euphorbiaceae) from Maharashtra, India
FIGURE 1: Plate depicting variations in E. khandallensis (including plants that were formerly determined as E. panchganiensis). A. habit ('E. panchganiensis'). B. habit ('E. khandallensis'). C.: tuberous, branched rootstock ('E. panchganiensis'). D. cyathium ('E. panchganiensis'). E. cyathium ('E. khandallensis')-slightly more mature than D, thus with a long gynophore. F. capsule ('E. panchganiensis'). G. cyathia with bracts and six glands in one inflorescence and five in the other ('E. panchganiensis'). H. cyathia with bracts, male florets and glands ('E. khandallensis'). I. capsules ('E. khandallensis'). J. leaves ('E. panchganiensis'). K. leaves ('E. khandallensis'). Photographs by Rohit Mane and Ashish Nerlekar, taken at Kaas and Lonavala for 'E. panchganiensis' and 'E. khandallensis' respectively.
FIGURE 3. Macromitrium sulcatum var. sulcatum. 1–3 in On taxonomic status of Macromitrium leptocarpum and M. subleptocarpum, with comments on M. sulcatum (Bryophytea, Orthotrichaceae)
FIGURE 3. Macromitrium sulcatum var. sulcatum. 1–3: Branch leaves. 4: Apex of branch leaf. 5. Upper laminal cells of branch leaf. 6: Median laminal cells of branch leaf. 7: Basal laminal cells of breanch leaf (with tuberculate papilliae). 8: Basal laminal cells along costa of branch leaf. 9–10: Basal laminal cells near margins of branch leaf. 11–13: Capsules. 14–15: Calyptrae (1–11 from isotype, FH; 12 from Philippens Luzon, Maximo Ramos 5157 (MO); 13–14 from Philippines, Luzon, E. D. Merrill 4933 (H-BR 2647001); 15 from Vietnam, Lam Dông, Dalat, Corticola, Evrard 1383 (H 3090748)). Line scales: A = 0.4 mm (1–3); B = 40 μm (4–10); C = 2 mm (10).
FIGURE 2. Macromitrium sulcatum var. leptocarpum. 1–3 in On taxonomic status of Macromitrium leptocarpum and M. subleptocarpum, with comments on M. sulcatum (Bryophytea, Orthotrichaceae)
FIGURE 2. Macromitrium sulcatum var. leptocarpum. 1–3: Branch leaves. 4: Apex of branch leaf. 5: Low laminal cells of branch leaf. 6: Median laminal cells of branch leaf. 7: Upper lamian cells of branch leaf. 8: Basal laminal cells (with tubericulate papilliae). 9: Basal laminal cells along costa of branch leaf. 10: Capsule (from isotype of M. subleptocarpum: BM000982487!) Line scale: A = 0.4 mm (1–3), B = 40 μm (4–9), C = 2 mm (10).
FIGURE 1. Macromitrium sulcatum var. leptocarpum. 1–4 in On taxonomic status of Macromitrium leptocarpum and M. subleptocarpum, with comments on M. sulcatum (Bryophytea, Orthotrichaceae)
FIGURE 1. Macromitrium sulcatum var. leptocarpum. 1–4: Branch leaves. 5: Basal laminal cells of branch leaf (with tubericulate papilliae). 6: Median laminal cells of branch leaf. 7–8: Low laminal cells of branch leaf. 9: Basal laminal cells along costa of branch leaf. 10–11: Apices of branch leaves. 12: Upper laminal cells of branch leaf. 13: Calyptrae. 14–15: Capsules. (1–14 from lectotype of M. leptocarpum: H-BR 264004, 15 from isosyntype of M. leptocarpum: BM000982483!). Line scales: A = 0.4 mm (1–4); B = 40 μm (5–9, 11–12); C = 100 μm (10); D = 2 mm (13–15).
FIGURE 4 in Using DNA data to determine the taxonomic status of Ammopiptanthus kamelinii in Kyrgyzstan (Thermopsideae, Leguminosae)
FIGURE 4. Neighbor-net analyses based on uncorrected p-distances. Numbers indicate bootstrap values over 1,000 replicates.
FIGURE 2 in Using DNA data to determine the taxonomic status of Ammopiptanthus kamelinii in Kyrgyzstan (Thermopsideae, Leguminosae)
FIGURE 2. Variation of taxonomic characters, including leaf traits (leaf length, width, form, and size), as well as plant height and canopy area in different populations of A. nanus (Popov) S. H. Cheng (seven populations) and A. kamelinii Lazkov (three populations).
FIGURE 1 in Using DNA data to determine the taxonomic status of Ammopiptanthus kamelinii in Kyrgyzstan (Thermopsideae, Leguminosae)
FIGURE 1. The geographical distribution of A. nanus (Popov) S. H. Cheng (seven populations) and A. kamelinii Lazkov (three populations).
FIGURE 2 in On the taxonomic status of the genus Dichodon (Caryophyllaceae: tribe Alsineae): morphological and molecular evidence reassessed
FIGURE 2. (A) Majority rule consensus tree inferred from Bayesian analysis of combined dataset of nrDNA ITS and cpDNA rps16 sequences showing the phylogenetic relationships in Dichodon and its placement in tribe Alsineae (Caryophyllaceae). Posterior probability (PP—above) and bootstrap support (BS—below) values are reported at the nodes. (B) Morphological characters reconstructed are shown by numbers and squares are explained in the legend.
FIGURE 4 in On the taxonomic status of the genus Dichodon (Caryophyllaceae: tribe Alsineae): morphological and molecular evidence reassessed
FIGURE 4. Distribution map of Dichodon spp. in Iran. (■) D. alborzensis, (●) D. kotschyi and (▲) D. persicus. Dichodon cerastoides and D. viscidus are widespread in West and North Iran.
FIGURE 1 in On the taxonomic status of the genus Dichodon (Caryophyllaceae: tribe Alsineae): morphological and molecular evidence reassessed
FIGURE 1. Representatives of three Dichodon spp. from Iran in different locations. A–B: D. kotschyi in Prov. Azerbaijan, 2450 m; C–D: D. kotschyi in Prov. Mazandaran, 3450 m; E–F: D. alborzensis in Prov. Mazandaran, 4200 m; G–H: D. alborzensis in Prov. Alborz, 2500 m; I–J: D. alborzensis Tehran, 3700 m; K–L: D. persicus in Prov. Hamedan, 2500 m.
FIGURE 3 in On the taxonomic status of the genus Dichodon (Caryophyllaceae: tribe Alsineae): morphological and molecular evidence reassessed
FIGURE 3. SEM micrographs of seeds of selected taxa of Dichodon distributed in Iran. SEM micrographs of Dichodon cerastoides seeds were published recently in Arabi et al. (2017). A–B: D. kotschyi; C–D: D. alborzensis; E–F: D. persicus; G–H: D. viscidus.
FIGURE 3 in A review of the current taxonomic status of foliose Bangiales (Rhodophyta) in the Philippines
FIGURE 3. Gamet gatherers. (A) A local fisher in Batan Is., Batanes gathering foliose Bangiales for food subsistence. (B) A gamet gatherer from Burgos, Ilocos Norte cleaning her net bag filled with collected gamet available for sale.
FIGURE 2 in A review of the current taxonomic status of foliose Bangiales (Rhodophyta) in the Philippines
FIGURE 2. Habit of foliose Bangiales in the Philippines. (A) Species growing on large rocks with unpredicted pattern of wave splashes in Batan Is., Batanes. (B) A detailed habit showing foliose Bangiales growing on rocks in the splash zone (C) Wide and abundant populations of foliose Bangiales in Sta. Ana, Cagayan. (D) A detailed habit showing dark red thalli attached on rocks in Claveria, Cagayan.
FIGURE 1 in A review of the current taxonomic status of foliose Bangiales (Rhodophyta) in the Philippines
FIGURE 1. The distribution of foliose Bangiales in the Philippines is restricted across the northern Philippine seaboards from the northernmost limit in the Batanes group of islands, the Babuyan group of islands and the coastal areas of northern Ilocos Norte and Cagayan provinces.
FIGURE9 in Population genetic study in Juglans regia L. (Persian walnut) and its taxonomic status within the genus Juglans L.
FIGURE9. Maximum Parsimony tree of Juglans regia species based on ITS sequences (Populations 1–7 are according to Table 1). Values above branches are bootstrap value.
FIGURE 8 in Population genetic study in Juglans regia L. (Persian walnut) and its taxonomic status within the genus Juglans L.
FIGURE 8. TCS Network of Juglans regia cultivars based on nrDNA ITS sequences (Populations 1–7 are according to Table 1). Culivars of Iran (Red colored) are differentiated from Italian cultivars (blue colored).
FIGURE7 in Population genetic study in Juglans regia L. (Persian walnut) and its taxonomic status within the genus Juglans L.
FIGURE7. UPGMA tree of Juglans regia cultivars based on nrDNA ITS sequences (Populations 1–7 are according to Table 1).
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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.