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Figure 4 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 4 Comparison of fruit and seed morphology of Cubanicula Hopper et al., Pyrrorhiza Maguire & Wurdack, and Xiphidium Loefl A–DC. xanthorrhizon (C.Wright ex Griseb.) Hopper et al.: A immature fruit B fruit in longitudinal section C dehiscent mature fruit D seed (dorsal view, ventral view, and longitudinal section) E–HP. neblinae Maguire & Wurdack: E immature fruit F fruit in longitudinal section G dehiscent mature fruit H seed (dorsal view, ventral view, and longitudinal section) I–LX. caeruleum Aubl.: I immature fruit J fruit in longitudinal section K non-dehiscent mature fruit L seed (ventral view, dorsal view, and longitudinal section). Illustration by E.J. Hickman. Scale bars: 2 mm (A–C, E–G, I–K); 1 mm (D, H, L).

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Figure 15 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 15 Schiekia silvestris (Maas & Stoel) Hopper et al. A habit of two flowering specimens B habit of a fruiting specimen C, D inflorescence: C inflorescence with flowers at anthesis D inflorescence with flowers at post-anthesis E, F flower: E side view of a flower showing the nectar drop (arrow) in the perianth aperture F frontal view of a flower G inflorescence bearing last few flowers and several capsules H detail of the cincinnus showing immature capsules. All photos by H. Galliffet, except for G by S. Sant.

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Figure 13 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 13 Schiekia orinocensis (Kunth) Meisn A habitat B habit, showing an inflorescence from this flowering season and an old one from the previous year bearing dehisced capsules C root D leaf blade E inflorescence F, G flower: F side view of a flower showing the nectar drop (arrow) in the perianth aperture G frontal view of a flower H–L perianth segments: H upper perianth tepals showing their connate bases and the nectar guides I lower lateral tepal J side view of the lower lateral tepal showing the glandular pubescence K staminode-like projection L lower medial tepal M flower with perianth removed, showing the androecium and gynoecium. N, dehisced capsules. All photos by E.J. Hickman.

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Figure 21 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 21 Distribution of Schiekia timida M.Pell. et al. Light Green– Subtropical Coniferous Forests; Red – Deserts, Xeric Shrublands and Tropical Coniferous Forests; Orange – Tropical/Subtropical Grasslands, Savannahs and Shrublands; Maroon – Dry Broadleaf Forests; Green – Moist Broadleaf Forests; Lilac – Montane Grasslands and Shrublands.

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Figure 12 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 12 Distribution of Pyrrorhiza neblinae Maguire & Wurdack. Light Green– Subtropical Coniferous Forests; Red – Deserts, Xeric Shrublands, and Tropical Coniferous Forests; Orange – Tropical/Subtropical Grasslands, Savannahs and Shrublands; Maroon – Dry Broadleaf Forests; Green – Moist Broadleaf Forests; Lilac – Montane Grasslands and Shrublands.

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Figure 20 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 20 Schiekia timida M. Pell. et al. A whole plant B cincinnus C flower bud D hairs E, F flower: E side view F frontal view G–I perianth: G upper perianth lobes, showing the lack of nectar guides H medial inner perianth lobe I lateral outer perianth lobe with adnate staminode-like structure J flower with the perianth removed, showing the androecium and gynoecium K, L stamens: K lateral stamen L medial stamen M–N gynoecium: M ovary N stigma O–S fruit: O immature capsule covered by the persistent perianth P immature capsule with perianth removed Q capsule in longitudinal section R capsule in cross-section S dehisced capsule T–V seed: T dorsal view U ventral view V longitudinal section. Illustration by E.J. Hickman. Scale bars: 1.5 cm (A,) ; 0.35 mm (B); 2 mm (C, E, F); 0.25 mm (D); 1.75 mm (G–I); 1.25 mm (J, O–Q, S); 1 mm (K–M, R); 0.5 mm (N); 0.75 mm (T–V)

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Figure 18 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 18 Distribution of Schiekia silvestris (Maas & Stoel) Hopper et al. Light Green – Subtropical Coniferous Forests; Red – Deserts, Xeric Shrublands and Tropical Coniferous Forests; Orange – Tropical/Subtropical Grasslands, Savannahs and Shrublands; Maroon – Dry Broadleaf Forests; Green – Moist Broadleaf Forests; Lilac – Montane Grasslands and Shrublands.

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Figure 1 from: Lorence DH, Wagner WL, Wood KR, Johnson G (2020) Pogostemon guamensis Lorence & W.L.Wagner (Lamiaceae), a new species from Guam, Mariana Islands. PhytoKeys 169: 61-73. https://doi.org/10.3897/phytokeys.169.58107

Figure 1 A phylogenetic reconstruction of genus Pogostemon estimated using Baysean Inference of partial matK sequences generated in this study and obtained from GenBank. Node labels indicate posterior probabilities. Based on matK evidence, a well-supported clade containing P. guamensis, P. hirsutus, P. wightii, and P. mollis is separate from that containing P. cablin, the common patchouli plant with a broad feral distribution and superficial resemblance to P. guamensis. Arrow and highlighting indicate samples of P. guamensis.

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Figure 1 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 1 Cubanicula xanthorrhizos (C.Wright ex Griseb.) Hopper et al. A habitat B habit C cross-section of the stem showing the bright orange colouration D female regal jumping spider (Phidippus regius, Salticidae) well camouflaged on C. xanthorrhizosE detail of the equitant leaves F, G inflorescence: F immature inflorescence G mature inflorescence H flower I detail of the androecium and gynoecium J immature capsule showing the persistent hairs along the septal ridges. All photos by R.J. Smith.

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Figure 6 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626

Figure 6 SEM microphotographs of seeds of Utricularia jaramacaru at 420× magnification, in dorsal, lateral and oblique view (from the holotype).

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Figure 5 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626

Figure 5 Utricularia jaramacarua inflorescence apex with open flowers and bud b detail of inflorescence apex showing mucilage droplet in the axil of a pedicel c inflorescence apex with a flower in posterior view, highlighting the calyx (c1) d flower in anterior view; e, peduncle bases with stolons and leaves.

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Figure 11 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 11 Pyrrorhiza neblinae Maguire & Wurdack A whole plant B, C cincinnus: B young cincinnus with flower buds C older cincinnus with fruits, pre-anthesis flowers and flower buds D hairs E flower bud with bracteole F flower at pre-anthesis G dissected perianth, showing the lack of nectar guides H filiform staminode I–J stamen: I frontal view J dorsal view K flower with the perianth removed, showing the androecium and gynoecium L stigma M–O fruit: M immature capsule N capsule in longitudinal section O dehiscent capsule P–R seed: P dorsal view Q ventral view R longitudinal section. Illustration by E.J. Hickman. Scale bars: 2 cm (A, G, M–O); 0.5 cm (B, C, H); 0.25 mm (D); 1.5 mm (E, F); 1 mm (I, J, P–R); 0.75 mm (K); 0.1 mm (L).

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Figure 3 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626

Figure 3 Utricularia arirambaa inflorescence apex with flowers and bud of the white corolla morphotype, showing the reflexed apex of lower corolla lip b flowers of the lavender corolla morphotype, with a calyx of a developing fruit to the left c flower of the white corolla morphotype in posterior view, showing the calyx lobes and the concavity in the ventral portion of the spur d flowers of the lavender corolla morphotype e inflorescence apex of the white corolla morphotype showing variation in spur morphology.

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Figure 1 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626

Figure 1 Distribution map of the new species of Utricularia in the Amazon. On the left map, the main rivers of the hydrographic basin of the region and which cross the FLOTA Trombetas (highlighted in green). The map to the right shows the records of Utricularia ariramba (squares) and Utricularia jaramacaru (triangle), which are near the FLOTA limits, as well the as threats to the area, including recent fires, full deforestation, and selective deforestation of timber species.

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Figure 8 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 8 Lachnanthes caroliniana (Lam.) Dandy A, B root: A portion of the root B cross-section C rhizome in longitudinal section D cincinnus E flower F hair G–I perianth: G outer tepal (frontal and dorsal view) H dorsal view of a inner tepal I side view of the inner tepal with epipetalous stamen J anther (frontal and dorsal view) K–M gynoecium: K cross-section L longitudinal section M stigma N–S fruit: N immature capsule O cross-section P longitudinal section Q placenta with ovules in side view R placenta with ovules in dorsal view S dehisced capsule T–V seed: T dorsal view U ventral view V longitudinal section. Illustration by E.J. Hickman. Scale bars: 0.8 mm (A, B); 1 cm (C, D, T–V); 2 mm (E, G–J, N–S); 0.4 mm (F); 1.25 mm (K, L); 0.62 mm (M).

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Figure 3 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 3 Cubanicula xanthorrhizos (C.Wright ex Griseb.) Hopper et al. A, B root: A root B cross-section C rhizome D leaf E branched cincinnus F flower bud G, H flower: G frontal view H side view I dissected perianth, showing nectar guides J flower with removed perianth, showing the androecium and gynoecium K hairs L–O stamens: L frontal view of a lateral stamen M dorsal view of a lateral stamen N frontal view of the medial stamen O dorsal view of the medial stamen P, Q gynoecium: P, gynoecium Q stigma R–U fruit: R immature capsule S capsule in longitudinal section T capsule in cross-section U dehisced capsule V–X seed: V dorsal view W ventral view X longitudinal section. Illustration by E.J. Hickman. Scale bars: 1.5 mm (A, B, J, P); 1 cm (C, E); 10.5 mm (D); 5 mm (F–I) ; 0.5 mm (K); 0.75 mm (L–O); 0.37 mm (Q); 3 mm (R–U); 0.9 mm (V–X).

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Figure 14 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 14 Distribution of Schiekia orinocensis (Kunth) Meisn. Beige – Temperate Coniferous Forests and Boreal Forests; Yellow – Temperate Grasslands, Savannahs and Shrublands; Pink – Temperate Broadleaf and Mixed Forests; Light Green – Subtropical Coniferous Forests; Red – Deserts, Xeric Shrublands and Tropical Coniferous Forests; Orange – Tropical/Subtropical Grasslands, Savannahs and Shrublands; Maroon – Dry Broadleaf Forests; Green – Moist Broadleaf Forests; Lilac – Montane Grasslands and Shrublands.

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Figure 25 from: Pellegrini MOO, Hickman EJ, Guttiérrez JE, Smith RJ, Hopper SD (2020) Revisiting the taxonomy of the Neotropical Haemodoraceae (Commelinales). PhytoKeys 169: 1-59. https://doi.org/10.3897/phytokeys.169.57996

Figure 25 Distribution of Xiphidium caeruleum Aubl. Beige – Temperate Coniferous Forests and Boreal Forests; Yellow – Temperate Grasslands, Savannahs and Shrublands; Pink – Temperate Broadleaf and Mixed Forests; Light Green – Subtropical Coniferous Forests; Red – Deserts, Xeric Shrublands and Tropical Coniferous Forests; Orange – Tropical/Subtropical Grasslands, Savannahs and Shrublands; Maroon – Dry Broadleaf Forests; Green – Moist Broadleaf Forests; Lilac – Montane Grasslands and Shrublands.

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Figure 4 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626

Figure 4 Utricularia jaramacarua habit, in flower b base of plant with stolons with traps, rhizoids, leaves with traps, and peduncle base c leave with traps d utricle, side view e scale f base of the pedicel, and bract g flower, in anterior h flower, in posterior view i flower, in lateral view j upper lip of the corolla k stamens l pistil m fruit n seed. All based on the holotype. Illustrations by João Silveira.

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Figure 2 from: Gonella PM, Barbosa-Silva RG, Fleischmann AS, Zappi DC, Baleeiro PC, Andrino CO (2020) Hidden biodiversity of Amazonian white-sand ecosystems: two distinctive new species of Utricularia (Lentibulariaceae) from Pará, Brazil. PhytoKeys 169: 75-98. https://doi.org/10.3897/phytokeys.169.57626

Figure 2 Utricularia arirambaa, b habit, in flower c base of plant with stolons, rhizoids, and peduncle base d part of stolon, with rhizoids, and leaves with traps e utricle, side view f scale g, h flower of the white morphotype in anterior (g) and side (h) view i, j flower of the lavender morphotype in anterior (i) and side (j) view k flower of the white morphotype in posterior view l upper lip of the corolla, androecium, and gynoecium m stamen n pistil a, c–h, k–n based on the holotype; b, i, j based on C.O. Andrino 560. Illustrations by João Silveira.

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

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neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record