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127 results for “Phyllanthaceae”
Fig. 4. – Maesobotrya liberica Jongkind. A in Maesobotrya liberica Jongkind (Phyllanthaceae), a new forest species from Liberia
Fig. 4. – Maesobotrya liberica Jongkind. A. Habit with male inflorescence; B. Leaf margin from below; C. Male inflorescence; D. Male flower; E. Same as D but with sepal removed, showing the hairy lobes of the disk; F. Female flower; G. Female inflorescence and stipules; H. Same as G but with sepal removed, showing hairy disk; I. Fruit. [A-E: Jongkind 12333B, BR; F-H: de Gier & Goll 48, WAG; I: Jongkind 12333A, BR] [Drawing: H. de Vries]
Fig. 3. – Maesobotrya liberica Jongkind. A in Maesobotrya liberica Jongkind (Phyllanthaceae), a new forest species from Liberia
Fig. 3. – Maesobotrya liberica Jongkind. A. Leaf from below and male infloresences; B. Stem c. 4 cm in diam. [Jongkind et al. 12943] [Photo: C. Jongkind]
Fig. 2 in Maesobotrya liberica Jongkind (Phyllanthaceae), a new forest species from Liberia
Fig. 2. – Distribution map with to the right Maesobotrya pauciflora Pax (surrounded by a black line) overlapping M. oligantha O. Lachenaud & Breteler (squares), and to the left M. liberica Jongkind (circles).
Fig. 1 in Maesobotrya liberica Jongkind (Phyllanthaceae), a new forest species from Liberia
Fig. 1. – Maesobotrya barteri (Baill.) Hutch. from Guinea: stem with immature green fruits showing the woody bumps were the fruits grow from every fruiting season. [Photo: C.Jongkind]
Fig. 3 in Phyllanthus novofriburgensis and P. pedrosae, two new species of Phyllanthus subsect. Clausseniani (Phyllanthaceae) from Southeastern Brazil
Fig. 3. Distribution map of Phyllanthus novofriburgensis J.C.R.Mendes, J.M.A.Braga & Fraga sp. nov. (white square) and P. pedrosae J.C.R.Mendes, J.M.A.Braga & Fraga sp. nov. (white circle). State abbreviations: ES = Espírito Santo; MG = Minas Gerais; RJ = Rio de Janeiro; SP = São Paulo.
Fig. 4. Phyllanthus pedrosae J.C.R.Mendes, J.M.A in Phyllanthus novofriburgensis and P. pedrosae, two new species of Phyllanthus subsect. Clausseniani (Phyllanthaceae) from Southeastern Brazil
Fig. 4. Phyllanthus pedrosae J.C.R.Mendes, J.M.A.Braga & Fraga sp. nov. A‒B. Habitat. C. Branches (in detail the shape of the branches, as well as the apex of the leaf blade). D. Floral branches. E. Branches with a staminate flower in detail. F‒G. Capsule. Photos by J.C.R. Mendes (A–B), L. Pedrosa (C–E) and F–G by M.C.T.B. Messias (OUPR [6395]).
Fig. 1. A‒F. Phyllanthus novofriburgensis J.C.R.Mendes, J.M.A in Phyllanthus novofriburgensis and P. pedrosae, two new species of Phyllanthus subsect. Clausseniani (Phyllanthaceae) from Southeastern Brazil
Fig. 1. A‒F. Phyllanthus novofriburgensis J.C.R.Mendes, J.M.A.Braga & Fraga sp. nov. A. Branches. B. Leaf blade. C. Cymule. D. Staminate flower. E. Pistillate flower. F. Capsule. G‒M. Phyllanthus pedrosae J.C.R.Mendes, J.M.A.Braga & Fraga sp. nov. G. Branches. H. Branch detail [angular]. I. Leaf blade [in detail the mucronate apex]. J. Staminate flower. K. Pistillate flower. L. Capsule. M. Seed. Illustration designs based on type specimens by Regina Carvalho.
Linked collectors and determiners for: Phyllanthus fluitans Benth. ex Müll.Arg. (Phyllanthaceae): A new record for the alien flora of Java, Indonesia.
Natural history specimen data linked to collectors and determiners held within, "Phyllanthus fluitans Benth. ex Müll.Arg. (Phyllanthaceae): A new record for the alien flora of Java, Indonesia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/89b6c8da-48f5-480a-bc06-5d5074156d76">https://bionomia.net/dataset/89b6c8da-48f5-480a-bc06-5d5074156d76</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/89b6c8da-48f5-480a-bc06-5d5074156d76">https://gbif.org/dataset/89b6c8da-48f5-480a-bc06-5d5074156d76</a>. Formatted as a Frictionless Data package.
Fig. 4 in Molecular phylogenetics of Phyllanthus sensu lato (Phyllanthaceae): Towards coherent monophyletic taxa
Fig. 4. Bayesian majority-rule consensus tree of the full combined nuclear (ITS, PHYC) and chloroplast (accD-psaI, matK, trnS-trnG) datasets for Phyllanthus and related genera; posterior probabilities (PP) are displayed at the nodes; infrageneric classification follows Bouman & al. (2018a); subgenera are given above colored clades, sections to the right. Outgroups and some ingroup genera are collapsed (see full tree in suppl. Fig. S10). Manuscript names of new undescribed species are indicated with an asterisk.
Fig. 3 in Molecular phylogenetics of Phyllanthus sensu lato (Phyllanthaceae): Towards coherent monophyletic taxa
Fig. 3. Molecular phylogenetic relationships of tribe Phyllantheae, simplified from Fig. 4 showing genera and subgenera. Colouring of clades follows Fig. 4, and paraphyly is highlighted with a red-white triangle (). Several morphological characters and character states are shown: B, branching non-phyllanthoid (), sub-phyllanthoid () or phyllanthoid (); D, disc present (), absent () or when both variations occur in the clade (); A, androphore filaments free (), fused () or when both are present (), whorled stamens (); F, fruit capsules (), berries (), or when both are present (); S, average stamens number.
Fig. 2 in Molecular phylogenetics of Phyllanthus sensu lato (Phyllanthaceae): Towards coherent monophyletic taxa
Fig. 2. Schematic design for the marker PHYC (A), accD-psaI (B) and trnS-trnG (C) spacer with newly designed primers indicated by arrowheads. Number behind primer names indicates approximate nucleotide position within the marker including insertions in the matrix. PHYC figure adapted from Samuel & al. (2005).
Fig. 1 in Molecular phylogenetics of Phyllanthus sensu lato (Phyllanthaceae): Towards coherent monophyletic taxa
Fig. 1. Major characters of Phyllanthus and the related genera Breynia and Glochidion. A, Habit of the herbaceous P. tenellus (P. subg. Tenellanthus); B, Habit of P. watsonii (P. subg. Eriococcus); C, Habit and fruits of P. emblica (P. subg. Emblica); D, Non-phyllanthoid branching in P. myrtellus; note the leaves subtending lateral branches (P. subg. Macraea); E, Sub-phyllanthoid branching in a young plant of P. glaucus, lateral branches are deciduous (P. subg. Kirganelia); F, Phyllanthoid branching and phylloclades in P. arbucula (P. subg. Xylophylla); G, Young capsules of P. myrtellus (P. subg. Macraea); H, Dehisced capsule of P. juglandifolius (P. subg. Xylophylla); I, Berries on a specialized leafless branchlet of P. microcarpus (P. subg. Kirganelia); J, Capsules of G. eriocarpum with orange arillate seeds exposed in some (Glochidion); K, Staminate flowers of P. pulcher (P. subg. Eriococcus); L, Pistillate flowers of P. pulcher (P. subg. Eriococcus); M, Flowers of P. mimosoides (P. subg. Xylophylla); N, Flowers of P. arbuscula (P. subg. Xylophylla); O, Staminate flower of P. cf. poilanei (P. subg. Phyllanthodendron); P, Pistillate flower of B. androgyna (Breynia). — Photos: A, C–G, I–M & O by R.W. Bouman; B © R.-Y. Yu; H by J.S. Strijk; N © M.S. Nuraliev.
FIG. 6 in The architecture of Phyllanthus acuminatus Vahl: a prelude to understanding the architectural evolution in the Phyllanthaceae
FIG. 6. — Mapping of architectural models on a synthesis of the phylogeny of Phyllanthaceae according to Kathriarachchi et al. (2005); clades T1-6 and F1-4 correspond with their clades and are firmly supported by their analysis.
FIG. 5 in The architecture of Phyllanthus acuminatus Vahl: a prelude to understanding the architectural evolution in the Phyllanthaceae
FIG. 5. — Phases of development of Phyllanthus acuminatus Vahl: A, seedling (not observed); B, branching of A1 with A3 and some A2; C, sexual maturation with axes A1, A2 and A3, also development of A1'; D, E, crown broadening with reiterates A1' (arrows); F-H, adults. Crosses indicate dead or broken axes.
FIG. 1. — Axes A1, A2 and A3 in The architecture of Phyllanthus acuminatus Vahl: a prelude to understanding the architectural evolution in the Phyllanthaceae
FIG. 1. — Axes A1, A2 and A3 of Phyllanthus acuminatus Vahl. The combination of A2 and A3 is clearly similar to a compound leaf (phyllomorphic branch).
FIG. 3 in The architecture of Phyllanthus acuminatus Vahl: a prelude to understanding the architectural evolution in the Phyllanthaceae
FIG. 3. — Microscopic transversal section of mature A2 axis of Phyllanthus acuminatus Vahl. Beneath the epiderm there is no sign of phellogen. Photo by L. F. Cabrera. Scale bar: 64 µm.
FIG. 3 in nouvelles du Gabon dans les Bridelieae (Phyllanthaceae, autrefois Euphorbiaceae) avec clés des espèces gabonaises des genres Bridelia et Cleistanthus
FIG. 3. — Cleistanthus bambidianus Breteler, sp. nov.: A, rameau fleuri; B, détail du dessous du limbe; C, ramille avec stipules; D, inflorescence à fleur mâle; E, fleur mâle; F, fleur femelle; G, fruit. A, B, D, E, Breteler & Jongkind 10786; C, Breteler 15462; F, Breteler & Jongkind 10826; G, McPherson 15700. Échelles: A, 3 cm; B, E, F, 3 mm; C, D, G, 1 cm. Dessiné par H. de Vries.
FIG. 5 in nouvelles du Gabon dans les Bridelieae (Phyllanthaceae, autrefois Euphorbiaceae) avec clés des espèces gabonaises des genres Bridelia et Cleistanthus
FIG. 5. — Cleistanthus caudatus Pax, variation des feuilles; A, Floret & Louis 1566; B, Le Testu 8406; C, Breteler et al. 15259; D, Breteler 15345; E, Le testu 7492; F, Le Testu 5525; G, Floret & Louis 1390; H, Breteler et al. 14975; I, D. Nguema 1183; 0, Le Testu 7538. Échelle: 3 cm. Dessiné par H. de Vries.
FIG. 1 in nouvelles du Gabon dans les Bridelieae (Phyllanthaceae, autrefois Euphorbiaceae) avec clés des espèces gabonaises des genres Bridelia et Cleistanthus
FIG. 1. — Bridelia wilksii Breteler, sp. nov.: A, rameaux à jeunes fruits; B, grande feuille à nervation plus en détail; C, rameau épineux; D, inflorescence; E, fruit. Sosef et al. 2588. Échelles: A-C, 3 cm; D, 1 cm; E, 5 mm. Dessiné par H. de Vries.
FIG. 4 in The architecture of Phyllanthus acuminatus Vahl: a prelude to understanding the architectural evolution in the Phyllanthaceae
FIG. 4. — Aspect of the adult plant Phyllanthus acuminatus Vahl.
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