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Figure 1 from: Xu Z, Tian J, Rapanarivo SHJV, Letsara R, Rakotonasolo RA, Onjalalaina GE, Hu G-W, Wang Q-F (2020) Hydrostachys flabellifera (Hydrostachyaceae), a new species from Madagascar. PhytoKeys 167: 45-56. https://doi.org/10.3897/phytokeys.167.58538

Figure 1 Hydrostachys flabellifera G.W. Hu, Zhun Xu & Q.F. Wang. A habit B lateral view of stipule and petiole base C ventral view of stipule and petiole base D, E part of the leaf F downside of a leaf emergence G upperside of a leaf emergence H dorsal view of male bract I ventral view of male bract J, K stamen. Drawn by Jing Tian.

opencc-by-4.0Nov 2020View details →
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Figure 2 from: Xu Z, Tian J, Rapanarivo SHJV, Letsara R, Rakotonasolo RA, Onjalalaina GE, Hu G-W, Wang Q-F (2020) Hydrostachys flabellifera (Hydrostachyaceae), a new species from Madagascar. PhytoKeys 167: 45-56. https://doi.org/10.3897/phytokeys.167.58538

Figure 2 Hydrostachys flabellifera G.W. Hu, Zhun Xu & Q.F. Wang A habit B emergences on rachis, cross-section C, D emergences E dorsal view of male bract F ventral view of male bract G top view of stamen.

opencc-by-4.0Nov 2020View details →
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Figure 1 from: Carvalho-Sobrinho J, da Mota AC, Dorr LJ (2020) A new species of Eriotheca (Malvaceae, Bombacoideae) from coastal areas in northeastern Brazil. PhytoKeys 167: 31-43. https://doi.org/10.3897/phytokeys.167.57840

Figure 1 Eriotheca alversoniiA flowering branch B three-foliolate leaf C flower buds and vegetative terminal buds D flower bud E flower F, G petals; adaxial and abaxial views H staminal tube I ovary J, K anthers; undehisced and dehisced L stigma M fruit. All drawn from the holotype, except for fruit (L.A. Mattos Silva 1769). Scale bars: 3 cm (A, B); 1 cm (C, M); 5 mm (D–I); 0.5 mm (J–L).

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Figure 2 from: Carvalho-Sobrinho J, da Mota AC, Dorr LJ (2020) A new species of Eriotheca (Malvaceae, Bombacoideae) from coastal areas in northeastern Brazil. PhytoKeys 167: 31-43. https://doi.org/10.3897/phytokeys.167.57840

Figure 2 Distribution map of Eriotheca alversonii. Gray-shaded areas represent the original extent of Atlantic forest. State boundaries are indicated by continuous lines. Abbreviations for Brazilian states: AL: Alagoas; BA: Bahia; PE: Pernambuco; SE: Sergipe.

opencc-by-4.0Nov 2020View details →
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Supplementary material 1 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751

Table S1. Taxa and materials analyzed in the phylogenetic analyses

opencc-zeroNov 2020View details →
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Figure 5 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751

Figure 5 Mitotic metaphase chromosomes of Capsicum regale Barboza & Bohs, 2n = 26. Scale bar: 10 µm

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Figure 6 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751

Figure 6 Bayesian majority-rule consensus tree of Capsicum showing the placement of C. regale Barboza & Bohs. The Andean clade is highlighted in colored branches. Support values are indicated by each branch (bootstrap support maximum parsimony/bootstrap support maximum likelihood/posterior probabilities; dashes indicate support values < 50%). Key support values that indicate the position of C. regale are shown in bold. Asterisks indicate different resolutions using maximum parsimony.

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Figure 3 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751

Figure 3 Seed of C. regale Barboza & Bohs viewed under SEM. A Seed B Seed coat sculpture. From Orejuela et al. 3034.

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Figure 2 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751

Figure 2 Capsicum regale Barboza & Bohs. A habitat B apical branch, showing anisophyllous leaf pairs C abaxial surface of leaf with purple main vein D forked inflorescence; note the scars of the deciduous flowers E flower, in lateral view, on a unbranched elongate inflorescence F, G Flowers with and without pigmentation respectively H–K various stages of fruit maturity, in K mature fruit showing the constriction between the pedicel and the berry (arrow) A–F, H–K from Orejuela et al. 3034 (photos by A. Orejuela, P. Gonzáles, and G. Barboza) G from Hoyos 127 (photo by L. Coca).

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Figure 3 from: Peterson PM, Sylvester SP, Romaschenko K, Soreng RJ, Barberá P, Quintanar A, Aedo C (2020) A phylogeny of species near Agrostis supporting the recognition of two new genera, Agrostula and Alpagrostis (Poaceae, Pooideae, Agrostidinae) from Europe. PhytoKeys 167: 57-82. https://doi.org/10.3897/phytokeys.167.55171

Figure 3 Neotype of Agrostis setacea Curtis [= Alpagrostis setacea (Poir.) P.M. Peterson, Romasch., Soreng & Sylvester] from Curtis's garden (BM-001144085), upper left hand specimen indicated by A.

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Figure 4 from: Oppenheimer H (2020) A new species of Cyanea Gaud. (Lobelioideae, Campanulaceae) from Maui, Hawai`i. PhytoKeys 167: 1-11. https://doi.org/10.3897/phytokeys.167.55107

Figure 4 Cyanea heluensisA seedling at Olinda Rare Plant Facility. Plant is approximately 1 year old B distribution Cyanea heluensis of on Maui, Hawai`i. Photo by H. Oppenheimer.

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Figure 3 from: Oppenheimer H (2020) A new species of Cyanea Gaud. (Lobelioideae, Campanulaceae) from Maui, Hawai`i. PhytoKeys 167: 1-11. https://doi.org/10.3897/phytokeys.167.55107

Figure 3 Cyanea heluensis. Leaf (left); flowers (right). Illustration by Anna Palomino. Drawn from H. Oppenheimer et al. #H91007 (BISH) and field images taken by H. Oppenheimer.

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Figure 1 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751

Figure 1 Capsicum regale Barboza & Bohs. A fruiting apical branch B unbranched inflorescence C flower, in lateral view D opened corolla E gynoecium F fruit. From Orejuela et al. 3034. Drawn by S. Montecchiesi.

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Figure 2 from: Peterson PM, Sylvester SP, Romaschenko K, Soreng RJ, Barberá P, Quintanar A, Aedo C (2020) A phylogeny of species near Agrostis supporting the recognition of two new genera, Agrostula and Alpagrostis (Poaceae, Pooideae, Agrostidinae) from Europe. PhytoKeys 167: 57-82. https://doi.org/10.3897/phytokeys.167.55171

Figure 2 Alpagrostis alpinaA, D spikelets B caryopsis C floret E floret, showing dorsal surface. Plant fragments taken from Sain-Lager 3 (US-1628154).

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Figure 1 from: Oppenheimer H (2020) A new species of Cyanea Gaud. (Lobelioideae, Campanulaceae) from Maui, Hawai`i. PhytoKeys 167: 1-11. https://doi.org/10.3897/phytokeys.167.55107

Figure 1 Cyanea heluensisA habit B close up of flower buds prior to anthesis. Note murications on petioles and corolla. Photos by H. Oppenheimer.

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Figure 1 from: Peterson PM, Sylvester SP, Romaschenko K, Soreng RJ, Barberá P, Quintanar A, Aedo C (2020) A phylogeny of species near Agrostis supporting the recognition of two new genera, Agrostula and Alpagrostis (Poaceae, Pooideae, Agrostidinae) from Europe. PhytoKeys 167: 57-82. https://doi.org/10.3897/phytokeys.167.55171

Figure 1 Maximum-likelihood tree inferred from combined plastid (rpl32-trnL, rps16 intron, rps16-trnK) and ITS sequences. Numbers above the branches are posterior probabilities; numbers below the branches are bootstrap values; accessions marked with an asterisk* were formerly included in Neoschischkinia; and letters refer to clade A = Agrostis subg. Agrostis and clade B = A. subg. Vilfa. Scale bar: 0.002 substitutions per site.

opencc-by-4.0Nov 2020View details →
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FIGURE 167 in Generic relationships of New World Jerusalem crickets (Orthoptera: Stenopelmatoidea:Stenopelmatinae), including all known species of Stenopelmatus

FIGURE 167. Three torn apart logs at neotype locality (photos DC Lightfoot).

opennotspecifiedJan 2021View details →
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Figure 1 from: Proskurina K, Yevtifieieva O, Mala O, Mashtaler V (2021) Development of the method for standardization of the medicinal plant raw material of Cichorium intybus L. herb by the total amount of hydroxycinnamic acid derivatives. Pharmacia 68(1): 167-173. https://doi.org/10.3897/pharmacia.68.e49273

Figure 1 The TLC chromatogram of hydroxycinnamic acids in ethanolic extracts of different samples of chicory herb originating from Ukraine. S1–3: chlorogenic acid, caffeic acid and ferulic acid as references; for plant extracts, see abbreviations in Table 3.

opencc-by-4.0Jan 2021View details →
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Figure 2 from: Proskurina K, Yevtifieieva O, Mala O, Mashtaler V (2021) Development of the method for standardization of the medicinal plant raw material of Cichorium intybus L. herb by the total amount of hydroxycinnamic acid derivatives. Pharmacia 68(1): 167-173. https://doi.org/10.3897/pharmacia.68.e49273

Figure 2 The absorption spectrum of ethanol (50 per cent V/V) chicory herb extracts for 8 sample of the raw plant material. See abbreviations in Table 3. UV/Vis absorption spectra of chlorogenic acid chemical standard at 10.08 µg/ml in ethanol (50 per cent V/V).

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Figure 3 from: Proskurina K, Yevtifieieva O, Mala O, Mashtaler V (2021) Development of the method for standardization of the medicinal plant raw material of Cichorium intybus L. herb by the total amount of hydroxycinnamic acid derivatives. Pharmacia 68(1): 167-173. https://doi.org/10.3897/pharmacia.68.e49273

Figure 3 Absorbance values of chlorogenic acid as a function of the solution concentrations. The data correlation was calculated by a linear fit.

opencc-by-4.0Jan 2021View details →

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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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Last verified 2026-04-29Open record