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14,185 results for “phylogenies”
Fig. 3 in New insights into the phylogeny and relationships within the worldwide genus Riccardia (Aneuraceae, Marchantiophytina)
Fig. 3. Afroriccardia comosa (Steph.) Reeb & Gradst. comb. nov. Population close to sample CR13Z28, Zahamena National Park, Alaotra-Mangoro, Madagascar, 17°37′19″ S, 48°37′46″ E, altitude 1196 m. A. Photographs of the thallus. B. Magnified view of the thallus showing solitary female branches (red arrows). Scale bars = 1 cm.
Fig. 1. The 50 in New insights into the phylogeny and relationships within the worldwide genus Riccardia (Aneuraceae, Marchantiophytina)
Fig. 1. The 50% majority-rule consensus of the trees generated by Bayesian Inference (BI) of the combined psbA-trnH, rps4 and trnL-F dataset. Posterior probability percentages above 80% are indicated under each node. Species names appear in italics, followed by the corresponding voucher number. Outgroup labels appear in light grey. Infra-generic divisions (sub-genera and sections) of Riccardia according to Nebel (2016) are reported in front of each name. The corresponding colour scheme for each sub-generic division is shown in the bottom left proportion of the figure.
Fig. 2 in New insights into the phylogeny and relationships within the worldwide genus Riccardia (Aneuraceae, Marchantiophytina)
Fig. 2. This topology shows the result of the maximum parsimony ratchet. Bootstrap proportions above 80% are indicated under each node. Species names appear in italics, followed by the corresponding voucher number. Outgroup labels appear in light grey. The geographical origin of each Riccardia or Afroriccardia sample is marked by bold rectangles. The continental/geographical repartition of each species according to the literature is indicated with rectangles coloured by continents: Europe (purple), North America (red), southern South America (orange), tropical America (brown), Africa (yellow), Asia (green) and Australasia (blue). A grey rectangle indicates new continental records for the species.
Fig. 6 in Phylogeny of Miliusa (Magnoliales: Annonaceae: Malmeoideae: Miliuseae), with descriptions of two new species from Malesia
Fig. 6. Flowers/inner petals of (representatives of) Miliusa species recovered in each clade. A-C. Clade A. A. Miliusa sclerocarpa (A.DC.) Kurz. B, C. Miliusa velutina (DC.) Hook.f. & Thomson. D-F. Clade B. D. Miliusa campanulata Pierre. E. Miliusa thorelii Finet & Gagnep. F. Miliusa thailandica Chaowasku & Kessler. G-I. Clade C. G. Miliusa amplexicaulis Ridl. H. Miliusa intermedia Chaowasku & Kessler. I. Miliusa mollis Pierre. J-L. Clade D. J. Miliusa brahei (F.Muell.) Jessup. K. Miliusa parviFora Ridl. L. Miliusa sp. 2. (Photographs taken by: A: P. Keßler; B, G, I, K: T. Chaowasku; C: A. Rodphitak; D, L: B. Siriphiphat; E: S. Poungcharean; F: S. Thanapathomsinchai; H: S. Gardner; J: L. Jessup).
Fig. 2. 50 in Phylogeny of Miliusa (Magnoliales: Annonaceae: Malmeoideae: Miliuseae), with descriptions of two new species from Malesia
Fig. 2. 50% Bayesian majority-rule consensus phylogram of combined seven plastid markers, showing branch length proportional to amount of lineage sequence divergence. Scale bar unit: substitution per site.
Fig. 4 in Phylogeny of Miliusa (Magnoliales: Annonaceae: Malmeoideae: Miliuseae), with descriptions of two new species from Malesia
Fig. 4. Distribution of Miliusa butonensis sp. nov. (Flled square) and Miliusa viridiFora sp. nov. (Flled circle).
Fig. 3 in Phylogeny of Miliusa (Magnoliales: Annonaceae: Malmeoideae: Miliuseae), with descriptions of two new species from Malesia
Fig. 3. Miliusa butonensis sp. nov. a. Habit. b. Outside (abaxial surface) of a persistent inner petal. c. Inside (adaxial surface) of a persistent inner petal. d. Fruit. (All from Coode 6279). Drawn by E. Winkel.
Fig. 1. 50 in Phylogeny of Miliusa (Magnoliales: Annonaceae: Malmeoideae: Miliuseae), with descriptions of two new species from Malesia
Fig. 1. 50% Bayesian majority-rule consensus cladogram of combined seven plastid markers. Clade support: left of slash - parsimony symmetric resampling values corresponding to clades revovered in Bayesian tree; right of slash - Bayesian posterior probabilities. Mc = Miliusa campanulata Pierre group; Mh = Miliusa horsFeldii (Benn.) Baill. ex Pierre group; Mm = Miliusa mollis Pierre group; Mv = Miliusa velutina (DC.) Hook.f. & Thomson group; all groups sensu Chaowasku & Keßler (in press).
Fig. 5 in Phylogeny of Miliusa (Magnoliales: Annonaceae: Malmeoideae: Miliuseae), with descriptions of two new species from Malesia
Fig. 5. Miliusa viridiFora sp. nov. a. Habit. b. Flowering twig. c. Flower bud. d. Flower with one inner petal, stamens, and carpels removed. e. Stamen, abaxial view. f. Stamen, side view. g. Carpel. h. Monocarp. (All from Foreman & Vinas LAE 60222). Drawn by E. Winkel.
Fig. 6 in Molecular phylogenies support taxonomic revision of three species of Laurencia (Rhodomelaceae, Rhodophyta), with the description of a new genus
Fig. 6. Scenario of Osmundea biogeography using frame from Scotese animation (www.scotese.com/) at 100 Ma. South America and Africa are starting to move apart. Hypothetical ancestors (A) of widespread and diverse Osmundea Fora along Tethyan shores of which Osmundea caspica (A.D.Zinova & Zaberzhinskaya) comb. nov. (b) is almost certainly a relic. Since 100 Ma, Osmundea has colonized the Atlantic Ocean (c, e). Brazilian O. sanctarum M.T.Fujii & Cord.-Mar. (c) is likely a relic of the lineage at the origin of the clade that entered the Pacifc (d) and colonized the Americas.
Fig. 5 in Molecular phylogenies support taxonomic revision of three species of Laurencia (Rhodomelaceae, Rhodophyta), with the description of a new genus
Fig. 5. Osmundea caspica (A.D.Zinova & Zaberzhinskaya). Sangachal Bay, Azerbaijan, September 2003, dredged. A. Habit of herbarium voucher specimen with epiphytic acrochaetioid red algae. B. Outer cortical cells in surface view, elongated along the thallus axis, lacking secondary pit connections. C. Longitudinal section through outer cortex (scale bar as in B). D. Part of mature spermatangial receptacle, showing spermatangial flaments each terminating in a large rounded sterile cell. E. Spermatangial flament bearing mature spermatia and terminating in a rounded sterile cell.
Fig. 4 in Molecular phylogenies support taxonomic revision of three species of Laurencia (Rhodomelaceae, Rhodophyta), with the description of a new genus
Fig. 4. Palisada crustiformans (McDermid). A. Voucher specimen of P. crustiformans (ARS03327/BISH 766726) collected at Hawaii Island (type locality). B. Outer cortical cells in surface view. C. Detail of outermost cortical cell showing small spherical structure similar to 'corps en cerise' and secondary pit connections with adjacent cells.
Fig. 3 in Molecular phylogenies support taxonomic revision of three species of Laurencia (Rhodomelaceae, Rhodophyta), with the description of a new genus
Fig. 3. Ohelopapa fexilis (Setch.). A. Voucher specimen (01A07 / UPF4223) collected at Tahiti (type locality). B. Transversal section through outer cortex showing a translucent outermost cortical layer lacking secondary pit connections between cells.
Fig. 1 in Molecular phylogenies support taxonomic revision of three species of Laurencia (Rhodomelaceae, Rhodophyta), with the description of a new genus
Fig. 1. Tree inferred from rbcL using Bayesian analysis (BI) and including 111 specimens of members of the Laurencia complex and six outgroup taxa. The numbers above branches indicate Bayesian posterior probabilities (pp) and below branches indicate bootstrap values (bp) inferred from 1000 ML bootstrap replicates (ML); pp <0.95 and bp <75% are not shown. Taxa for which new sequences were produced are indicated in bold.
Fig. 2. Tree inferred from COI-5P in Molecular phylogenies support taxonomic revision of three species of Laurencia (Rhodomelaceae, Rhodophyta), with the description of a new genus
Fig. 2. Tree inferred from COI-5P + rbcL + LSU using Bayesian analysis (BI) and including 30 specimens of the Laurencia complex and two outgroup taxa. The numbers above branches indicate Bayesian posterior probabilities (pp) and below branches indicate bootstrap values (bp) inferred from 1 000 ML bootstrap replicates (ML); pp <0.95 and bp <75% are not shown.
Fig. 26 in TWO NEW SPECIES OF MIMAGONIA TES (TELEOSTEI: CHARACIDAE: GLANDULOCAUDINAE), THEIR PHYLOGENY AND BIOGEOGRAPHY AND A KEY TO THE GLANDULOCAUDIN FISHES OF BRAZIL AND PARAGUAY
Fig. 26. Mimaganiates rheocharis, new species, paratypes, body depth as a function of SL by sex. Plot axes are logarithmic. Logarithmic regression equation for 27 males of M. rheocharis: (Y = -2.190 + 1.300 X) and for 23 females of this species: (Y - -1.831 + 1.183 X). For explanation see Sexual dimorphism under M rheocharis.
Fig. 22 in TWO NEW SPECIES OF MIMAGONIA TES (TELEOSTEI: CHARACIDAE: GLANDULOCAUDINAE), THEIR PHYLOGENY AND BIOGEOGRAPHY AND A KEY TO THE GLANDULOCAUDIN FISHES OF BRAZIL AND PARAGUAY
Fig. 22. Mimagoniates rheocharis, new species, paratype, pelvic fin of adult male, ventral view, left side, anterior at left, medial fin ray at bottom. USNM 279879, SL 45.4 mm; same locality data as specimen in Fig. 21.
Fig. 24 in TWO NEW SPECIES OF MIMAGONIA TES (TELEOSTEI: CHARACIDAE: GLANDULOCAUDINAE), THEIR PHYLOGENY AND BIOGEOGRAPHY AND A KEY TO THE GLANDULOCAUDIN FISHES OF BRAZIL AND PARAGUAY
Fig. 24. Mimagoniates rheocharis, new species, paratype, osteology of central basal region of caudal Skeleton, principal fin rays 6-15, of an adult male, lateral views, left side, anterior at left. USNM 279879, SL 45.4 mm, same locality data as specimen in Fig. 21. Principal ray 12 indicated by arrow. (A) Illustrates caudal pump region. (B) illustrates relationship of modified dorsal caudal-fin lobe squamation to caudal pump.
Fig. 21 in TWO NEW SPECIES OF MIMAGONIA TES (TELEOSTEI: CHARACIDAE: GLANDULOCAUDINAE), THEIR PHYLOGENY AND BIOGEOGRAPHY AND A KEY TO THE GLANDULOCAUDIN FISHES OF BRAZIL AND PARAGUAY
Fig. 21. Mimagoniates rheocharis. new species, paratype, anterior 13 anal-fin rays of an adult male, lateral view, anterior is at lefi. USNM 279879, SL 45.4 mm; Brazil, Santa Catarina, rio Jordão at Jordão Alto. For explanation see Description under M. rheocharis.
Fig. 20 in TWO NEW SPECIES OF MIMAGONIA TES (TELEOSTEI: CHARACIDAE: GLANDULOCAUDINAE), THEIR PHYLOGENY AND BIOGEOGRAPHY AND A KEY TO THE GLANDULOCAUDIN FISHES OF BRAZIL AND PARAGUAY
Fig. 20. Mimagoniates rheacharis, new species, paratype, MZUSP 40281, male, SL 41.8 mm; Brazil, Río Grande do Sul, arroio das Pedras, near Osório.
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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
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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.
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.