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1,268 results for “Melastomataceae”
Discordance in a South African Memecylon clade (Melastomataceae): Evidence for reticulate evolution
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Evolution of floral morphology and symmetry in the Miconieae (Melastomataceae): multiple generalization trends within a specialized family
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Data from: Genetic structure and diversity of populations of polyploid Tibouchina pulchra Cogn. (Melastomataceae) under different environmental conditions in extremes of an elevational gradient
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Data from: Prolific fruit output by the invader Bellucia pentamera (Melastomataceae) is enhanced by selective logging disturbance
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Two new species of Miconia s.lat. (Melastomataceae) from Espírito Santo, Brazil
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Figure 4 from: Wurdack KJ, Michelangeli FA (2019) Systematics and relationships of Tryssophyton (Melastomataceae), with a second species from the Pakaraima Mountains of Guyana. PhytoKeys 136: 1-21. https://doi.org/10.3897/phytokeys.136.38558
Figure 4 Micromorphology of Tryssophyton merumense. A Leaf glandular trichome, adaxial B leaf with marginal teeth, erect adaxial scales and glandular trichomes, lateral view of distal part C leaf, with single file palisade parenchyma (p), loose spongy parenchyma (s) and stomata (st) beneath intercellular spaces, close-up of transverse view D leaf scale, transverse view near adaxial scale base E stomata, abaxial F leaf, transverse view G seed, lateral view with raphal zone near bottom. Sources: A–FRadosavljevic 165GWurdack 5870 (all US).
Figure 2 from: Wurdack KJ, Michelangeli FA (2019) Systematics and relationships of Tryssophyton (Melastomataceae), with a second species from the Pakaraima Mountains of Guyana. PhytoKeys 136: 1-21. https://doi.org/10.3897/phytokeys.136.38558
Figure 2 Illustration of Tryssophyton quadrifolius (A–G) and T. merumense (H, I). A Habit (right view in flower) B young flower with anthers inflexed C flower with anthers erect and petals fallen D shorter antepetalous anther, dorsal E longer antesepalous anther, dorsal F longer anther, lateral G young fruit H habit I capsular, 3-merous fruit. Sources: A–GWurdack 5865HRadosavljevic 165IWurdack 5870 (all US).
Figure 1 from: Wurdack KJ, Michelangeli FA (2019) Systematics and relationships of Tryssophyton (Melastomataceae), with a second species from the Pakaraima Mountains of Guyana. PhytoKeys 136: 1-21. https://doi.org/10.3897/phytokeys.136.38558
Figure 1 Relationships of Tryssophyton in a 3-locus phylogeny of Melastomataceae. Maximum likelihood tree with bootstrap support values based on analysis of plastid ndhF, rbcL and rpl16 data.
Figure 3 from: Wurdack KJ, Michelangeli FA (2019) Systematics and relationships of Tryssophyton (Melastomataceae), with a second species from the Pakaraima Mountains of Guyana. PhytoKeys 136: 1-21. https://doi.org/10.3897/phytokeys.136.38558
Figure 3 Macromorphology of Tryssophyton merumense (A–C, G–K) and T. quadrifolius (D–F). A habit, growing with bryophytes and downward pointing red buds B flowering plant, adaxial C Flowering plant showing bicoloured petals, abaxial D part of type collection in vivo just before pressing E whole leaf venation, abaxial F venation close-up showing major veins and reticulate quaternaries, abaxial G Dehisced 4-merous fruit, with interior persistent fimbriate placenta remnants (f), axial (tips of 8 triangular valves partly broken) H fruit, with seeds, fimbriae (f) and carpel septa, transverse view I whole leaf venation and crystal druses (white spots), adaxial J close-up of leaf tip with marginal teeth and non-vascularised scales (s), adaxial K phyllotactic arrangement with leaf attachment scars surrounded by darkened glandular trichomes, lateral view with main stem at bottom, peduncle at top. Sources: A–C, I–KRadosavljevic 165D–FWurdack 5865G, HWurdack 5870 (all US).
Supplementary material 2 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Table S2. Summary statistics of sequences used for phylogenetic analyses
Supplementary material 3 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Table S3. Pairwise genetic distances among species of Bredia at the nrITS region
Figure 4 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Figure 4 Three prostrate species of Bredia. AB. guidongensis from Y. Liu 472 (SYS) BB. changii from Y. Liu 548 (SYS) CB. repens Y. Liu 558 (A, PE, SYS).
Figure 3 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Figure 3 Floral details and young fruit of Bredia hispida. A Side view of a flower B top view of a flower C longitudinal section of a flower showing isomorphic stamens and ovary crown D top view of a young fruit E side view of a young fruit showing enlarged ovary crown exserted from hypanthium. Scale bar: 5 mm (C). All from Y. Liu 764 (A, PE, SYS).
Figure 1 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Figure 1 Herbarium specimen of Bredia hispida (A–C) and Phyllagathis deltoidea (D–F). A–C W. B. Ju and H. N. Deng, HGX12702 (CDBI) collected from Shui-wei town, Xuyong County, Sichuan, China, showing the stout long bristles on adaxial surface of the leaf blade and linear-lanceolate calyx lobes, images from National Plant Specimen Resource Center D–F H. H. Su 68119 (IBK, IBSC) collected from Aidian, Ningming County, Guangxi, China, holotype (IBSC) (D, F) and isotype (IBK) (E) of Phyllagathis deltoidea.
Figure 2 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Figure 2 Bredia hispida. A Habitat B a flowering branch, showing the prostrate habit C adaxial leaf surface D abaxial leaf surface E lateral view of leaf, showing the stout long bristles F terminal inflorescence G axillary inflorescences on old branchlets. All from Y. Liu 764 (A, PE, SYS).
Figure 5 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Figure 5 Phylogenetic position of Bredia hispida. Maximum likelihood (ML) phylogenetic tree based on nrITS sequence data. Numbers above branches are bootstrap values obtained from maximum likelihood analyses, and those below branches are Bayesian posterior probabilities (right) and bootstrap values (left) resulting from maximum parsimony analyses. The new species is noted in bold. Asterisk denotes a branch collapsed in Bayesian inference or maximum parsimony analyses.
Supplementary material 1 from: Dai J-H, Zhou Q-J, Zhou R-C, Liu Y (2020) A new species of Bredia (Sonerileae, Melastomataceae) from Sichuan, China. PhytoKeys 152: 1-14. https://doi.org/10.3897/phytokeys.152.53512
Table S1. Source of materials studied and GenBank accession numbers for nrITS
Figure 9 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 9. Bayesian inference tree for the new genus, based on 621 bp of the mitochondrial cytochrome oxidase c subunit I gene (CO-I). Numbers above branches indicate support values> 0.8/60 for Bayesian posterior probability (BPP)/bootstrap – for maximum likelihood (ML); those located below represent the percentage of evolutionary divergence between clades. Asterisk indicates support <0.80/60 for BPP and ML, respectively.
Figure 8 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 8. Scanning electron micrographs of Locharcha opportuna pupa: (A) clypeal and mandibular areas (open arrows indicate microsetae), ventral view; (B) abdominal segments seven and eight (small arrow and arrow head indicate abdominal spiracles seven and eight, respectively), laterodorsal view; (C) microtrichia of abdominal segment A5, dorsolateral view; (D) setae of seventh abdominal segment posterior margin, dorsal view; (E) pseudopodium scar of abdominal segment A6, ventral view; (F) distal portion of abdomen, dorsal view; (G) apical portion of cremaster seta, dorsolateral view. Scale bars = 50, 100, 10, 20, 50, 100, 10 µm, respectively.
Figure 6 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 6. Scanning electron micrographs of Locharcha opportuna last larval instar: (A) head and prothorax, lateral view; (B) labrum and mandibles, frontal view; (C) stemmata; (D) antenna, lateral view; (E) labium and spinneret, ventral view; (F) maxilla, anterolateral view; (G) distal portion of mesothoracic leg, posterolateral view (arrow indicates spatulate seta); (H) prothoracic spiracle, lateral view; (I) pseudopodium abdominal A6, mesoventral view. Scale bars = 200, 100, 100, 20, 20, 20, 20, 20, 100 µm, respectively.
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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)
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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.