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77 results for “Polyphylla”
Swartzia polyphylla DC. from Colombia collected by A. Camargo, E. Álvarez, F. Toro #407
<p><strong>File Name</strong>: <span>TOLI-25794-ZAR-05-M20-04.jpg</span></p> <p><strong>CÓDIGO FOTO</strong>: <span>TOLI-25794-ZAR-05-M20-04-</span></p> <p><strong>Fotografía</strong>: <span>SI</span></p> <p><strong>Nº TOLI</strong>: <span>TOLI-25794</span></p> <p><strong>PARCELA</strong>: <span>ZAR-05</span></p> <p><strong>CÓDIGO</strong>: <span>M20-04</span></p> <p><strong>Nº COLECTA</strong>: <span>407</span></p> <p><strong>NUEVOS COLECTORES</strong>: <span>Alejandro Camargo, Felipe Toro & Esteban Alvarez</span></p> <p><strong>COLECTORES</strong>: <span>A. Camargo, E. Álvarez, F. Toro</span></p> <p><strong>Nº MUESTRAS MONTADAS</strong>: <span>1</span></p> <p><strong>Homologación</strong>: <span>No homologado</span></p> <p><strong>Nueva fecha del evento </strong>: <span>30/11/2018.</span></p> <p><strong>Fecha del evento</strong>: <span>15/10/2006.</span></p> <p><strong>Proyecto </strong>: <span>Recursos Botánicos Disponibles en Línea (BRAVO) para la flora Colombiana</span></p> <p><strong>Continente</strong>: <span>SA</span></p> <p><strong>Pais</strong>: <span>Colombia</span></p> <p><strong>Estado/Provincia</strong>: <span>Amazonas</span></p> <p><strong>Municipio</strong>: <span>Leticia</span></p> <p><strong>Localidad</strong>: <span>Resguardo Indígena Ticuna-Huitoto Km 6-11.</span></p> <p><strong>Elevación minima en metros</strong>: <span>200</span></p> <p><strong>Elevación maxima en metros</strong>: <span>300</span></p> <p><strong>Latitud</strong>: <span>-4.004</span></p> <p><strong>Longitud original</strong>: <span>-69.896</span></p> <p><strong>datum geodésico</strong>: <span>WGS 84</span></p> <p><strong>Latitud decimal</strong>: <span>-4.004</span></p> <p><strong>Longitud decimal</strong>: <span>-69.896</span></p> <p><strong>Identificado por</strong>: <span>Diego Suescún </span></p> <p><strong>Fecha de identificación</strong>: <span>15/02/2019.</span></p> <p><strong>Nombre cientifico</strong>: <span>Swartzia polyphylla DC.</span></p> <p><strong>Reino</strong>: <span>Plantae</span></p> <p><strong>Filo</strong>: <span>Magnoliophyta</span></p> <p><strong>Clase</strong>: <span>Equisetopsida</span></p> <p><strong>Orden</strong>: <span>Fabales</span></p> <p><strong>Familia nueva</strong>: <span>Fabaceae</span></p> <p><strong>Género nuevo</strong>: <span>Swartzia</span></p> <p><strong>especie nueva</strong>: <span>polyphylla</span></p> <p><strong>Autoría del nombre científico</strong>: <span>DC.</span></p> <p><strong></strong>: <span>Fabaceae</span></p> <p><strong>genero herbario</strong>: <span>Swartzia</span></p> <p><strong>especie herbario</strong>: <span>polyphylla</span></p> <p><strong>Especie de herbario para TNRS</strong>: <span>Swartzia polyphylla</span></p> <p><strong>Especie corregida herbario y desde TNRS</strong>: <span>Swartzia polyphylla</span></p> <p><strong>Familia corregida desde TNRS</strong>: <span>Fabaceae</span></p> <p><strong></strong>: <span>4795</span></p>
The proteomics data of Paris polyphylla var. yunnanensis
<p>The mass spectrometry proteomics data and the protein/peptide identifications of seed coat, mature seed and germianting seeds from<strong><em> </em></strong><em>Paris polyphylla</em> var. <em>yunnanensis.</em></p>
FIGURES 11–17. Coleolaelaps massoumii n in New species of Hypoaspis Canestrini and Coleolaelaps Berlese (Mesostigmata: Laelapidae) associated with Polyphylla olivieri Castelnau (Coleoptera: Scarabaeidae) in Iran
FIGURES 11–17. Coleolaelaps massoumii n. sp., female. 11. Dorsal idiosoma; 12. Chelicera; 13. Hypostome; 14. Palp tarsal claw; 15. Epistome; 16. Ventral idiosoma; 17. Spermatheca.
FIGURES 1–7. Hypoaspis surii n in New species of Hypoaspis Canestrini and Coleolaelaps Berlese (Mesostigmata: Laelapidae) associated with Polyphylla olivieri Castelnau (Coleoptera: Scarabaeidae) in Iran
FIGURES 1–7. Hypoaspis surii n. sp., female. 1. Dorsal idiosoma; 2. Chelicera; 3. Hypostome; 4. Palp tarsal claw; 5. Epistome; 6. Ventral idiosoam; 7. Spermatheca.
Fig. 13 in Polylamina Hardy, A Junior Synonym Of Polyphylla Harris (Coleoptera: Scarabaeidae, Melolonthinae, Melolonthini)
Fig. 13. Shortest tree of relationships among P. variolosa, P. pubescens, P. annamensis, H. mixta and D. caseyi, obtained with exhaustive search algorithm of PAUP (Length 11, CI 5 0.81, RI 5 0.80). Ambiguous character changes optimized using Farris optimization (ACCTRAN).
Fig. 13 in Polylamina Hardy, A Junior Synonym Of Polyphylla Harris (Coleoptera: Scarabaeidae, Melolonthinae, Melolonthini)
Fig. 13. Shortest tree of relationships among P. variolosa, P. pubescens, P. annamensis, H. mixta and D. caseyi, obtained with exhaustive search algorithm of PAUP (Length 11, CI = 0.81, RI = 0.80). Ambiguous character changes optimized using Farris optimization (ACCTRAN).
FIGURE 2 in Colletotrichum paridis sp. nov., a novel endophytic species on Paris polyphylla var. chinensis
FIGURE 2. Phylogenetic tree generated from randomized axelerated maximum likelihood (RAxML) analysis based on the combined ITS, gapdh, act, tub2, chs-1 and his3 alignment of isolates from C. dematium complex. Bootstrap values for RAxML higher than 50% and Bayesian posterior probabilities (BP) higher than 0.9 are given at the nodes (RAxML/BP). Colletotrichum chlorophyti IMI 103806 is outgroup. Ex-type or holotype specimens are marked with an asterisk (*).
FIGURE 1. a in Colletotrichum paridis sp. nov., a novel endophytic species on Paris polyphylla var. chinensis
FIGURE 1. a. The collection of samples. b. Paris polyphylla with grey mould where C. paridis was isolated from. c. No symptoms on inoculated leaves. d, e. Culture of C. paridis on PDA after 5 days (d, upper; e, reverse).
FIGURE 3 in Colletotrichum paridis sp. nov., a novel endophytic species on Paris polyphylla var. chinensis
FIGURE 3. Colletotrichum paridis (GMCC000018, holotype). a–g. Appressoria. h, i. Setae. j–l. Conidiophores and conidia. m, n. Scanning electron micrographs of (m) a conidium and (n) setae. o, p. Conidia.
FIGURE 5 in Two new endophytic fungi of Colletotrichum and Diaporthe isolated from Berchemia polyphylla var. leioclada in Guizhou Province, China
FIGURE 5. Phylogenetic tree based on RAxML analyses of a combined ITS, TUB2, CAL, HIS, TEF1-α dataset, including sequences of our strain and a selection of related Diaporthe spp., restricted according to the phylogenetic study of Supplementary Material (Figure S2). Diaporthe caulivora (CBS 127268) was used as the outgroup. The combined gene analysis included 13 strains with 2409 characters after aligned, including gaps (ITS: 560bp, TUB2: 526bp, CAL: 506bp, HIS3: 494bp, TEF1-α: 323bp). The RAxML analysis of the combined dataset yielded the best scoring tree with a final ML optimization likelihood value of -7651.550919. The matrix had 572 distinct alignment patterns, with 23.26% undetermined characters or gaps. Estimated base frequencies were as follows: A = 0.203920, C = 0.334775, G = 0.247441, T = 0.213864; substitution rates AC = 1.486536, AG = 3.694646, AT = 1.459400, CG = 1.231075, CT = 5.843934, GT = 1.000000; gamma distribution shape parameter α = 0.257986. Bootstrap support values for RAxML equal to or greater than 70% and Bayesian posterior probabilities equal to or greater than 0.90 are given at each node. The new isolate is shown in red and bold.
FIGURE 4 in Two new endophytic fungi of Colletotrichum and Diaporthe isolated from Berchemia polyphylla var. leioclada in Guizhou Province, China
FIGURE 4. Diaporthe berchemiae (ex-type culture, GMBCC 20000). a, b Front and reverse colony on MEA. c, d Conidiomata on PDA. e–g Conidiophores. h–k Conidiogenous cells and conidia. l–o Alpha conidia. p-s Beta conidia. Scale bars: e–g, i–k = 10 μm; h, l–s = 5 μm.
FIGURE 2 in Two new endophytic fungi of Colletotrichum and Diaporthe isolated from Berchemia polyphylla var. leioclada in Guizhou Province, China
FIGURE 2. Phylogenetic tree of Maximum Likelihood analyses of Colletotrichum gloeosporioides species complex and its closely related species (including sequences of our strain and a selection of related Colletotrichum spp.,), restricted according to the phylogenetic study of Supplementary Material (Figure S1). Colletotrichum hippeastri (CBS 125376) and C. boninense CBS 123755 were used as outgroup taxa. The tree was built using concatenated sequences of ITS, ACT, CHS-1, GADPH, and TUB2 datasets and the tree topology of the RAxML and Bayesian analyses are similar. The combined gene analysis included 86 strains with 2152 characters after aligned, including gaps (ITS: 593bp, ACT: 282bp, CHS-1: 299bp, GADPH: 277bp, and TUB2: 701bp). The RAxML analysis of the combined dataset yielded the best scoring tree with a final ML optimization likelihood value of -15857.131621. The matrix had 1198 distinct alignment patterns, with 23.12% undetermined characters or gaps. Estimated base frequencies were as follows: A = 0.229650, C = 0.299082, G = 0.241413, T = 0.229855; substitution rates AC = 1.009331, AG = 2.892663, AT = 1.227390, CG = 0.965860, CT = 4.527049, GT = 1.000000; gamma distribution shape parameter α = 0.449663. Bootstrap support values for RAxML equal to or greater than 70% and Bayesian posterior probabilities equal to or greater than 0.90 are given at each node. The new isolate is shown in red and bold.
FIGURE 1 in Two new endophytic fungi of Colletotrichum and Diaporthe isolated from Berchemia polyphylla var. leioclada in Guizhou Province, China
FIGURE 1. Colletotrichum berchemiae (ex-type culture, GMBCC 20001). a, b Front and reverse colony on PDA. c–e Conidiomata on PDA. h–j Conidiophores. k–m Conidiogenous cells and conidia. n–p Conidia. Scale bars: f = 100 μm; g–i, n = 20 μm, j, k = 30um, l, m, o, p = 10 um.
FIGURE 3 in Two new endophytic fungi of Colletotrichum and Diaporthe isolated from Berchemia polyphylla var. leioclada in Guizhou Province, China
FIGURE 3. Results of the PHI test of Colletotrichum berchemiae and closely related species using both LogDet transformation and splits decomposition. The PHI test results (Φw) <0.05 indicate significant recombination within the dataset. The new taxa are in red.
FIGURE 2 in Are seedlings diagnostic in Neotropical Entada (Leguminosae)? Seedling morphology supports the reinstatement of Entada polyphylla
FIGURE 2. Early development of seedlings of the three species of Entada sect. Entadopsis (Leguminosae, Mimosoideae), prior to the expansion of the first eophyll (arrows). (A) E. polystachya, with a phanerocotylar, epigeal, reserve (PER) seedling (R.S. Rodrigues & G.V. Feitoza 2178). (B) E. simplicata, with a phanerocotylar, hypogeal, reserve (PHR) seedling (R.S. Rodrigues & G.V. Feitoza 2177). (C) E. polyphylla, with a cryptocotylar, hypogeal, reserve (CHR) seedling with cataphylls (asterisks) (R.S. Rodrigues 2683).
FIGURE 3 in Are seedlings diagnostic in Neotropical Entada (Leguminosae)? Seedling morphology supports the reinstatement of Entada polyphylla
FIGURE 3. Schematic representation of seedlings in Entada sect. Entadopsis (Leguminosae, Mimosoideae). (A) Phanerocotylar, epigeal, reserve (PER) seedling of E. polystachya. (B) Phanerocotylar, hypogeal, reserve (PHR) seedling of E. simplicata. (C) Cryptocotylar, hypogeal, reserve (CHR) seedling with cataphylls of E. polyphylla. The two horizontal lines represent the ground level.
FIGURE 1 in Are seedlings diagnostic in Neotropical Entada (Leguminosae)? Seedling morphology supports the reinstatement of Entada polyphylla
FIGURE 1. Cryptocotylar, hypogeal, reserve (CHR) seedlings of Entada polyphylla (Leguminosae, Mimosoideae). (A) Very early development of a seedling, arrows indicating the cotyledonary petioles. (B–C) Seedlings with an expanding epicotyl, evidencing the primary root, the hypocotyl, and funicular remnants. (D) Seedling with the first three eophylls alternate and bipinnate; arrows indicating the cataphylls (R.S. Rodrigues 2681). (E) Detail of the cotyledons enclosed within the seed coat and two cataphylls (arrows) (R.S. Rodrigues 2683). (F) Atypical seedling with the first two eophylls pinnate and absence of cataphylls (R.S. Rodrigues 2682). Abbreviations: e1—first eophyll, e2—second eophyll, e3—third eophyll, ep—epicotyl, fr—funicular remnants, hp—hypocotyl, pr—primary root, se—seed coat, sr—secondary root.
FIGURE 123. Daviesia polyphylla. A. Flowering branchlet. B, C. Phyllodes showing variation. D. Inflorescence. E. Pod. A, C, D from Crisp 6711 in A monograph of Daviesia (Mirbelieae, Faboideae, Fabaceae)
FIGURE 123. Daviesia polyphylla. A. Flowering branchlet. B, C. Phyllodes showing variation. D. Inflorescence. E. Pod. A, C, D from Crisp 6711; B from Crisp 1061; E from Crisp 1047. Drawn by A.L. Prowse.
FIGURE 23. Scaphochlamys polyphylla. A in A review of Scaphochlamys (Zingiberaceae) from Borneo, with description of eleven new species
FIGURE 23. Scaphochlamys polyphylla. A. plant in habitat. B. young inflorescence. C. inflorescence, top view. D. inflorescences, side view. E. inflorescence with flower. F. lamina, abaxial surface. G. flower, before fully opened. All from OIH83.
FIGURE 1 in Rediscovery of Arrabidaea chica (Bignoniaceae) and Entada polystachya var. polyphylla (Fabaceae) in Puerto Rico
FIGURE 1. Map of the island of Puerto Rico showing the localities where the lianas Arrabidaea chica (circle) and Entada polystachya var. polyphylla (triangle) were rediscovered. The historical localities where E. polystachya var. polyphylla was collected during the 19th Century includes the municipality of Fajardo (rhombus) and the area between the municipalities of Manatí and Vega Baja (square). All the historical records of A. chica are from unspecified localities within the municipality of Bayamón.
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