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F I G U R E 1 in Phylogenetics, subspecies, and conservation of the eastern pinesnake
F I G U R E 1 Eastern pinesnake subspecies and samples used in this study, collected from 2003 to 2020. Eastern pinesnake subspecies' ranges come directly from the Florida pinesnake Species Status Assessment (USFWS 2022). The samples used in this study are colored by whether they were used in the restriction‐associated digest sequencing (RADseq) or ultra‐conserved element (UCE) analyses. The map does not include samples from Nikolakis et al. (2022), which were added to the UCE analysis. The map shows higher elevation areas in dark colors, and rivers referenced in the text. Photos of exemplar individuals from various parts of the eastern pinesnake range are chosen to show phenotypic variation among the subspecies; however, there is also substantial phenotypic variation within the areas highlighted. Photos, starting at top and moving clockwise, are courtesy of B. D. Hudson, A.R. Krohn, G. M. Meloni, J.W. Mota, and J. T. Oguni.
Fig 1. Genlisea hawkingii. A. Habit. B. Rhizophyll. C. Glabrous leaf. D. Glandular capitate hairs. E. Open corolla, lateral view. F. Corolla, front view. G. Calyx. H in Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil
Fig 1. Genlisea hawkingii. A. Habit. B. Rhizophyll. C. Glabrous leaf. D. Glandular capitate hairs. E. Open corolla, lateral view. F. Corolla, front view. G. Calyx. H. Capsule.
Fig. 2 Flower and perianth. A–E, G, V in Flower and fruit anatomy of Cordia nodosa Lam. and Varronia bonplandii Desv. (Cordiaceae, Boraginales) with phylogenetic implications
Fig. 2 Flower and perianth. A–E, G, V. bonplandii (yellow frames). F, H–L, C. nodosa (blue frames). A, inflorescence. B, bud (arrow indicates detached adaxial calyx epidermis). C, flower. D, gynoecium after anthesis in opened calyx (arrow indicates delaminated adaxial calyx epidermis). E, F, TS of sepals, petals and gynoecium (level of corolla tube). G, LSs of bud (left) and developing fruit (right; upper arrow indicates delaminated adaxial calyx epidermis, lower arrow indicates abscission area of the detached corolla tube). H, inflorescence. J, bud (right) and flower. K, operculate calyx (corolla shed). L, LSs of bud (left; arrow indicates constriction between the receptacle and the pedicel), flower at anthesis (middle) and flower after anthesis (right). Abbreviations: a, anther; c, corolla; d, disc; g, ovary; k, calyx; LS, longisection; o, ovule (or young seed); stg, stigma; sty, style; tr, trichomes; TS, transverse section
FIGURE 4. Schizotechium monospermum. A. Habit, B. Inflorescence, C. Flower, D. Sepals, E. Petal, F. Stamens, G. Pistil, H in Taxonomic revision of Schizotechium (Caryophyllaceae) in Nepal, including one new record
FIGURE 4. Schizotechium monospermum. A. Habit, B. Inflorescence, C. Flower, D. Sepals, E. Petal, F. Stamens, G. Pistil, H. Capsule and valve, I. Seeds (photograph B by S. Karki; others by R. Kafle).
FIGURE 1. Cheirostylis wenshanensis. A. Flowering plant. B. Flower, front view. C. Flower, side view. D. Lateral sepal and Dorsal sepal. E. Petal. F. Lip. G in Cheirostylis wenshanensis, a new species of Orchidaceae from Yunan, China
FIGURE 1. Cheirostylis wenshanensis. A. Flowering plant. B. Flower, front view. C. Flower, side view. D. Lateral sepal and Dorsal sepal. E. Petal. F. Lip. G. Pollinarium.
FIGURE 7. Kylicanthe perezverae. A. Habit. B. Inflorescence. C. Flower. D. Dorsal sepal. E. Lateral sepal. F. Petals. G in A new genus of angraecoid orchids (Orchidaceae: Angraecinae) with highly distinctive pollinaria morphology, including three new species from tropical West and Central Africa
FIGURE 7. Kylicanthe perezverae. A. Habit. B. Inflorescence. C. Flower. D. Dorsal sepal. E. Lateral sepal. F. Petals. G. Lip in dorsal view. H. Floral pedicel, ovary and column. I. Anther cap in posterior view. J. Column in frontal view showing rostellum. K. Anther cap in frontal view. L. Anther cap in ventral view with one pollinium still inside. M. Pollinaria with pollinia in lateral view. Drawn by Hans de Vries after Nimba shadehouse series 212 & 213.
FIGURE 4. A, C, E. Sporobolus nesiotioides, R.J.V. Alves 8831 & N. G in A new species of Sporobolus (Poaceae, Chloridoideae) from Trindade Island, Brazil, with comments on the distribution of the genus in the South Atlantic
FIGURE 4. A, C, E. Sporobolus nesiotioides, R.J.V. Alves 8831 & N. G. Silva (R!); B, D. Sporobolus durus, d´Urville 32 (P!), F. Sporobolus durus, C. H. J. Gordon 125 (K!); Ep. Epidermis; Ks. Kranz sheath; P. Parenchyma; Ph. Phloem; Sb. Sclerenchymatic bundle; Ss. Sclerenchymatic sheath; X. Xylem. Scale bars: A. (10µm); B. (50µm); C–F (5µm). (Photos and plate: A.R. Guimarães).
FIGURE 1. Nervilia umphangensis. A. Flowering plant. B. Vegetative plant. C. Leaf, abaxial view. D. Dissected flower. E. Labellum. F. Column. G. Pollinia. A, D–G in Studies in Asian Nervilia (Nervilieae, Epidendroideae, Orchidaceae) IV: N. umphangensis, a new species from the Thai-Myanmar border
FIGURE 1. Nervilia umphangensis. A. Flowering plant. B. Vegetative plant. C. Leaf, abaxial view. D. Dissected flower. E. Labellum. F. Column. G. Pollinia. A, D–G from Suddee et al. 4426 (BKF); B from Prommanut 308 (BKF); C from Prommanut 309 (BKF). All drawn by Orathai Kerdkaew.
FIGURE 2. Cypella altouruguaya Chauveau & L.Eggers. A–C. Flower. A. apical view B. lateral view C. basal view D–F. Inner tepal D. adaxial view E. abaxial view F. lateral view G. Ovary H in Overlooked diversity in Brazilian Cypella (Iridaceae, Iridoideae): four new taxa from the Río de la Plata grasslands
FIGURE 2. Cypella altouruguaya Chauveau & L.Eggers. A–C. Flower. A. apical view B. lateral view C. basal view D–F. Inner tepal D. adaxial view E. abaxial view F. lateral view G. Ovary H. Stamens and style in lateral view I. Style crests and stigmatic replicatures. From L. Eggers & O. Chauveau 716 (ICN!).
FIGURE. Monocots. A. Scaphyglottis crurigera, B. Scaphyglottis hondurensis, C. Scaphyglottis imbricata, D. Sobralia decora, E. Specklinia marginata, F. Stanhopea martiana, G. Stanhopea tigrina, H in Mexican Vascular Epiphytes: Richness and Distribution
FIGURE. Monocots. A. Scaphyglottis crurigera, B. Scaphyglottis hondurensis, C. Scaphyglottis imbricata, D. Sobralia decora, E. Specklinia marginata, F. Stanhopea martiana, G. Stanhopea tigrina, H. Trichocentrum andreanum. (Photographs by Adolfo Espejo- Serna).
FIGURE. Chamaecrista claussenii. A. Flowering branch. B. Stipule. C. Leaflets. D e E. Bracts. F. Bracteole. G. Buds. H. Flower. I. Sepal. J. Petal. K. Androecium and gynoecium. L. Stamen. M. Ginoecium. N. Fruit. O. Seed. T.P. Mendes & J.A. Oliveira 130 in Taxonomic review of Chamaecrista sect. Absus subsect. Absus ser. Paniculatae (Benth.) H.S. Irwin & Barneby (Leguminosae, Caesalpinioideae)
FIGURE. Chamaecrista claussenii. A. Flowering branch. B. Stipule. C. Leaflets. D e E. Bracts. F. Bracteole. G. Buds. H. Flower. I. Sepal. J. Petal. K. Androecium and gynoecium. L. Stamen. M. Ginoecium. N. Fruit. O. Seed. T.P. Mendes & J.A. Oliveira 130 (UFG).
FIGURE 4. Rayenia malalcurensis. A. Whole cushion. B, C. Rosettes and leaves. D, E, F. Flowers. G. Immature fruit. H in Rayenia malalcurensis (Escalloniaceae), a new genus and species endemic to Central Chile
FIGURE 4. Rayenia malalcurensis. A. Whole cushion. B, C. Rosettes and leaves. D, E, F. Flowers. G. Immature fruit. H. Mature fruit. Photographed by Kora Menegoz and Alejandro E. Villarroel.
FIGURE 1. Hysterionica chamomilloides. A. Habit. B. Capitulum. C. Ray flower. D. Disk flower. E. Cypsela. F. Phyllaries. G in Hysterionica chamomilloides (Asteraceae: Astereae) a new species from the grassland ecosystem of Río de La Plata
FIGURE 1. Hysterionica chamomilloides. A. Habit. B. Capitulum. C. Ray flower. D. Disk flower. E. Cypsela. F. Phyllaries. G. Leaf and detail of stem. H. Trichomes (from L.P. Deble et al. 13588).
FIGURE 2. A. Flowering branchlet. B. Mature leaf, abaxial view. C. Young bud, lateral view. D. Older bud, lateral view. E. Bract, abaxial view. F. Two bracteoles, abaxial view. G. Calyx limb separated from hypanthium, abaxial view. H. Two corolla lobes removed from corolla, abaxial view. I in Symplocos mohananii sp. nov. (Symplocaceae) from the Western Ghats of Kerala, India
FIGURE 2. A. Flowering branchlet. B. Mature leaf, abaxial view. C. Young bud, lateral view. D. Older bud, lateral view. E. Bract, abaxial view. F. Two bracteoles, abaxial view. G. Calyx limb separated from hypanthium, abaxial view. H. Two corolla lobes removed from corolla, abaxial view. I. Part of corolla and androecium, adaxial view. J. Calyx and gynoecium, lateral view. K. Fruit, lateral view. L. C/S of fruit. M. Endocarp, lateral view. N. Seed, lateral view. (Illustrations A–B by R. Akhil, C–N by J. Stephan. Drawn from the holotype)
FIGURE 3. A, C, E and G in Adesmia subtropicalis (Leguminosae, Papilionoideae, Dalbergieae), a new endangered species from the Brazilian Pampas
FIGURE 3. A, C, E and G: Adesmia punctata (Poir.) DC.; B, D, F and H: A. subtropicalis Cobra; A: flower and calyx; calyx lobes shorter than 5 mm. B: flower and calyx; calyx lobes longer than 5 mm. C: fruit and calyx. D: fruit and calyx. E: the abaxial surface of the leaflet, showing a short indumentum in margin. F: the adaxial surface of the leaflet, showing a long indumentum in margin. G: stem indumentum presenting glandular trichomes shorter than 1 mm. H: stem indumentum presenting glandular trichomes longer than 3 mm.
FIGURE 2. Begonia gracilifolia. A. Habit. B. Leaf blade, abaxial surface. C. Inflorescence. D. Staminate flower, front view. E, F. Pistillate flowers, front views. G. Pistillate flower, back view. H, I in New and noteworthy species of Begonia (Begoniaceae) from Vietnam and Laos
FIGURE 2. Begonia gracilifolia. A. Habit. B. Leaf blade, abaxial surface. C. Inflorescence. D. Staminate flower, front view. E, F. Pistillate flowers, front views. G. Pistillate flower, back view. H, I. Pistillate flower, oblique and side views. J. Cross section of ovary. K. Dehisced fruit, side view. Nuraliev 2425 (holotype). Photos and design by M. Nuraliev.
FIGURE. Mucispora hydei (GMB0028, holotype). a. Decaying wood. b, c. Colony on wood. d, e, g. Conidiophores with conidia. f. Matured conidia. h–j. Conidiophore. Scale bars: b =100 µm, c =200 µm, d, e, h–j = 20 µm, f, g = 40 µm. in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. Mucispora hydei (GMB0028, holotype). a. Decaying wood. b, c. Colony on wood. d, e, g. Conidiophores with conidia. f. Matured conidia. h–j. Conidiophore. Scale bars: b =100 µm, c =200 µm, d, e, h–j = 20 µm, f, g = 40 µm.
FIGURE 13. Croton longicarpus. A. Habit. B. Inflorescence. C. Staminate flower. D. Pistillate flower. E. Capsule. C. lundianus. F. Inflorescence with a noticeable sterile region between the pistillate and staminate flowers. G. Staminate flowers. H in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 13. Croton longicarpus. A. Habit. B. Inflorescence. C. Staminate flower. D. Pistillate flower. E. Capsule. C. lundianus. F. Inflorescence with a noticeable sterile region between the pistillate and staminate flowers. G. Staminate flowers. H. Pistillate flowers; note the characteristic white sepals with serrate margins. I. Capsules. C. macrobothrys. J. Trunk, showing red latex where scored with a knife. K. Stipitate acropetiolar nectary glands. L. Young capsule with persistent, bifid stigmas. Photos: A–E: A.P.N. Pereira, F–I: O.L.M. Silva, J–L: R.F. Santos.
FIGURE 19. Croton tricolor. A. Branches and inflorescence. B. Stipules. C. Leaves. D. Pistillate flowers. C. triqueter. E. Branches. F. Stipules. G. Pistillate flower. C. urucurana. H. Habit. I. Cordate leaf. J in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 19. Croton tricolor. A. Branches and inflorescence. B. Stipules. C. Leaves. D. Pistillate flowers. C. triqueter. E. Branches. F. Stipules. G. Pistillate flower. C. urucurana. H. Habit. I. Cordate leaf. J. Staminate flowers and capsules, the lower cymules bisexual. C. vulnerarius. K. Leaf base with arrow pointing to stipitate nectary glands. L. Staminate flower. M. Pistillate flower. N. Young muricate capsules. Photos: A–D: M.B.R. Caruzo, E–N: A.P.N. Pereira.
FIGURE. Thalictrum longistipitatum in the wild (Bomi in southeastern Xizang, China). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepals (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruits. N. Achenes (immature). A, I‒L: photographed by W.Q. Fei; B‒H, M, N: photographed by Y.P. Zeng. in Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China
FIGURE. Thalictrum longistipitatum in the wild (Bomi in southeastern Xizang, China). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaf (left: adaxial side; right: abaxial side). F. Leaflet (adaxial side). G. Portion of adaxial side of leaflet. H. Portion of abaxial side of leaflet. I. Flower. J. Sepals (left: adaxial side; right: abaxial side). K. Stamens. L. Carpels. M. Aggregate fruits. N. Achenes (immature). A, I‒L: photographed by W.Q. Fei; B‒H, M, N: photographed by Y.P. Zeng.
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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.