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152 results for “species circumscriptions”
Fig. 5 in Big trees of small baskets: phylogeny of the Australian genus Spyridium (Rhamnaceae: Pomaderreae), focusing on biogeographic patterns and species circumscriptions
Fig. 5. (Caption on next page)
Fig. 4 in Benstonea Callm. & Buerki (Pandanaceae): characterization, circumscription, and distribution of a new genus of screw-pines, with a synopsis of accepted species
Fig. 4. – Infructescences and details of stigmas of species of Benstonea Callm. & Buerki. A. Benstonea affinis (Kurz) Callm. & Buerki; B. Benstonea gibbsiana (Martelli) Callm. & Buerki; C. Benstonea ornata (Solms) Callm. & Buerki; D. Benstonea pachyphylla (Merr.) Callm. & Buerki. [Photos: M. W. Callmander]
Fig. 4 in Benstonea Callm. & Buerki (Pandanaceae): characterization, circumscription, and distribution of a new genus of screw-pines, with a synopsis of accepted species
Fig. 4. – Infructescences and details of stigmas of species of Benstonea Callm. & Buerki. A. Benstonea affinis (Kurz) Callm. & Buerki; B. Benstonea gibbsiana (Martelli) Callm. & Buerki; C. Benstonea ornata (Solms) Callm. & Buerki; D. Benstonea pachyphylla (Merr.) Callm. & Buerki. [Photos: M. W. Callmander]
Figure 2 from: Field AR (2018) Phlegmariurus vanuatuensis (Huperzioideae, Lycopodiaceae) a new species from Vanuatu, re-circumscription of P. nummulariifolius and new combinations in Phlegmariurus. PhytoKeys 109: 53-66. https://doi.org/10.3897/phytokeys.109.29359
Figure 2 Phlegmariurusnummulariifolius ARF0002: A basal region of shoot showing branching pattern and leaf arrangement B medial region of shoot showing adpressed leaf arrangement in facial and lateral view C distal region of shoot showing abrupt transition to sporophylls and filiform fertile spikes. Phlegmariurusvanuatuensis ARF1140 D basal region of shoot showing branching pattern and leaf arrangement E medial region of shoot showing divergent leaf arrangement in facial and lateral view F distal region of shoot showing gradual transition to sporophylls and funiform-filiform fertile spikes. Photos by A.R.Field
Figure 1 from: Field AR (2018) Phlegmariurus vanuatuensis (Huperzioideae, Lycopodiaceae) a new species from Vanuatu, re-circumscription of P. nummulariifolius and new combinations in Phlegmariurus. PhytoKeys 109: 53-66. https://doi.org/10.3897/phytokeys.109.29359
Figure 1 Phlegmariurusvanuatuensis ARF1140: A habit, leaf arrangement and fertile spikes B close up of sterile leaf arrangement showing subopposite decussate leaf arrangement and ovate-oval leaves C close up of fertile spike showing scale like sporophylls and a sporangium. Scale bar: 10 cm (A); 1 cm (B, C). Illustration by A.R.Field.
Figure 8 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 8 Illustration of Cynometrasteyermarkii. A Habit, flowering branch B habit, fruiting branch C leaf base, showing basal acrodromous veins arising from leaflet pulvinus D inflorescence rachis, showing bracts and bracteoles; pedicels removed to show structure E buds with imbricate bracts F flower G bract H bracteoles I sepals J petal K longitudinal section of flower showing single ovule and much reduced hypanthium; sepals, petals and stamens removed. A–KSteyermark et al. 106937, US.
Figure 2 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 2 Illustration of Maniltoamegalocephala Harms, reproduced from protologue and designated here as the lectotype.
Figure 11 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 11 Illustration of Cynometratumbesiana. A Habit B leaflet base, showing laminar gland C flower D inflorescence rachis, showing bracts and bracteoles; pedicels removed to show structure E fruit, dissected to show single seed filling entire cavity. A–DKlitgaard et al. 507, K; BNeill & Núñez 10453, US.
Figure 1 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 1 A Map showing global distribution of Cynometra and Maniltoa (white hatching) B ML majority rules consensus tree from Radosavljevic et al. (2017) with branches coloured by species distributions. Star indicates type species of CynometraC indehiscent fruits typical of Cynometra as circumscribed here; D dehiscent fruits typical of those species formerly included in Cynometra, but excluded by the new circumscription.
Figure 10 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 10 Photograph of the holotype of Cynometrasteyermarkii, sheet two of two (Steyermark et al. 106937, US).
Figure 4 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 4 Illustration of Cynometracerebriformis. A Habit B bud with imbricate bracts C leaf base showing corrugated petiole and petiolule D inflorescence rachis showing bract scars on main axis and remnants of bracteoles on pedicels E flower F infructescence with single pod G bract H sepal I petal J longitudinal section of hypanthium and receptacle; sepals, petals and stamens removed. A–E, G–JCampbell et al. P22338, US FG. Martinelli 7016, US.
Figure 6 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 6 Illustration of Cynometradwyerii. A Leaf base (adaxial surface) showing corrugated petiole and pubescence along midrib B habit C leaf base (abaxial surface) showing basal acrodromous veins arising from leaflet pulvinus and laminar glands D leaflet apex (abaxial surface) E Dissected fruit, proximal surface F dissected fruit, distal surface G longitudinal section of fruit with single seed H reconstruction of fruit. A–HStern et al. 941, US.
Figure 9 from: Radosavljevic A (2019) The rise of Cynometra (Leguminosae) and the fall of Maniltoa: a generic re-circumscription and the addition of 4 new species. PhytoKeys 127: 1-37. https://doi.org/10.3897/phytokeys.127.29817
Figure 9 Photograph of the holotype of Cynometrasteyermarkii, sheet one of two (Steyermark et al. 106937, US).
TABLE 2 in Species circumscription within the Rediviva neliana group (Hymenoptera: Melittidae), with the description of the new species Rediviva volgeli sp. nov. Melin & Colville
<p><b>TABLE 2.</b> Summary of phoretic <i>Meloe</i> (Coleoptera, Meloidae) triungulins (first instar larvae) found on the females of three summer-rainfall occurring <i>Rediviva</i> species. The number of triungulins and their attachment sites, the bee specimen’s locality, and the accession number are given. The letter following the accession number indicates the sequential number of the specimen within a series. For the locality information the provinces of South Africa are summarised as: EC=Eastern Cape Province, FS=Free State Province, KZN=KwaZulu-Natal Province.</p><table><tbody><tr><th><b>No. triungulins</b></th><th><b>Location on bee body</b></th><th><b>Bee species</b></th><th><b>SAMC Accession No.</b></th><th><b>Locality in South Africa</b></th></tr></tbody><tbody><tr><th>6</th><td>head, thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002863a</td><td>EC, Elands Heights</td></tr><tr><th>2</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002863e</td><td>EC, Elands Heights</td></tr><tr><th>1</th><td>hindleg</td><td><i>R. politissima</i></td><td>SAM-HYM-B002863f</td><td>EC, Elands Heights</td></tr><tr><th>6</th><td>head, thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002863i</td><td>EC, Elands Heights</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002864a</td><td>EC, Elands Heights</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002529r</td><td>EC, Hogsback</td></tr><tr><th>2</th><td>thorax, hindleg</td><td><i>R. politissima</i></td><td>SAM-HYM-B002524a</td><td>EC, Hogsback, Mitchell’s Pass</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002524b</td><td>EC, Hogsback, Mitchell’s Pass</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002525a</td><td>EC, Hogsback, Mitchell’s Pass</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002532a</td><td>EC, Katberg, Katberg Pass</td></tr><tr><th>1</th><td>abdomen</td><td><i>R. steineri</i></td><td>SAM-HYM-B002820c</td><td>EC, Lady, Grey, Joubert’s Pass</td></tr><tr><th>1</th><td>hindleg</td><td><i>R. steineri</i></td><td>SAM-HYM-B002947b</td><td>EC, Rossouw</td></tr><tr><th>5</th><td>thorax</td><td><i>R. neliana</i></td><td>SAM-HYM-B002860b</td><td>FS, Golden Gate Highlands National Park</td></tr><tr><th>2</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002920a</td><td>FS, Sentinel</td></tr><tr><th>1</th><td>hindleg</td><td><i>R. politissima</i></td><td>SAM-HYM-B002890</td><td>KZN, Garden Castle Forest</td></tr><tr><th>1</th><td>head</td><td><i>R. politissima</i></td><td>SAM-HYM-B002888b</td><td>KZN, Qachas Nek</td></tr><tr><th>1</th><td>head</td><td><i>R. politissima</i></td><td>SAM-HYM-B002757d</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>1</th><td>abdomen</td><td><i>R. politissima</i></td><td>SAM-HYM-B002758e</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>2</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002758j</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002758l</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002760d</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002760f</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>1</th><td>thorax</td><td><i>R. politissima</i></td><td>SAM-HYM-B002760g</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>2</th><td>thorax, head</td><td><i>R. politissima</i></td><td>SAM-HYM-B002751t</td><td>KZN, Royal Natal National Park, The Pudding</td></tr><tr><th>1</th><td>hindleg</td><td><i>R. politissima</i></td><td>SAM-HYM-B002716a</td><td>KZN, Sani Pass</td></tr></tbody></table><p>......continued on the next page</p>
Figure 5 from: Clark JL, Jost L (2021) New circumscriptions add two northern Andean species to Kohleria (Gesneriaceae). PhytoKeys 179: 99-110. https://doi.org/10.3897/phytokeys.179.65990
Figure 5 Kohleria hypertrichosa J.L. Clark & L.E. Skog A lateral view of flower B front view of corolla C mature fruit D dorsiventral habit with anisophyllous leaves (AClark et al. 15900BClark 6539CClark et al. 10310DClark et al. 14942). Photos by J.L. Clark.
Figure 1 from: Clark JL, Jost L (2021) New circumscriptions add two northern Andean species to Kohleria (Gesneriaceae). PhytoKeys 179: 99-110. https://doi.org/10.3897/phytokeys.179.65990
Figure 1 Kohleria affinis (Fritsch) Roalson & Boggan A lateral view of flower B female phase of mature flower C male phase of mature flower D habit (AClark et al. 7698BClark s.n. CClark et al. 12979DClark et al. 15845). Photos by J.L. Clark.
Figure 4 from: Clark JL, Jost L (2021) New circumscriptions add two northern Andean species to Kohleria (Gesneriaceae). PhytoKeys 179: 99-110. https://doi.org/10.3897/phytokeys.179.65990
Figure 4 Kohleria villosa (Fritsch) Wiehler A lateral view of flower B front view of corolla C mature fruit D erect herbaceous habit with isophyllous leaves (AClark et al. 14295BClark 7331CClark et al. 7400DClark et al. 14295). Photos by J.L. Clark.
Figure 2 from: Clark JL, Jost L (2021) New circumscriptions add two northern Andean species to Kohleria (Gesneriaceae). PhytoKeys 179: 99-110. https://doi.org/10.3897/phytokeys.179.65990
Figure 2 Kohleria andina (Fritsch) J.L. Clark & Jost A lateral view of flower B female phase of mature flower C male phase of mature flower D habit (A–DClark et al. 7750). Photos by J.L. Clark.
Figure 3 from: Clark JL, Jost L (2021) New circumscriptions add two northern Andean species to Kohleria (Gesneriaceae). PhytoKeys 179: 99-110. https://doi.org/10.3897/phytokeys.179.65990
Figure 3 Kohleria anisophylla (Fritsch) Wiehler A lateral view of flower B front view of corolla C mature fruit D dorsiventral habit with anisophyllous leaves (A, BClark et al. 10981CClark 10948DClark et al. 14295). Photos by J.L. Clark.
FIGURE 4 in Atlas Florae Europaeae notes 23. The typification and revised taxonomic circumscription of Sorbus bakonyensis (Rosaceae), with a description of Sorbus udvardyana, a new apomictic species endemic to Hungary
FIGURE 4. Distribution area of Sorbus udvardyana.
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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.