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1,268 results for “Melastomataceae”
FIGURE 3 in A new Miconia (Melastomataceae) from Cusuco National Park, Honduras
FIGURE 3. Distribution of Miconia kellyana. A. Central America and surroundings with Honduras highlighted in blue. B. Honduras with the Cusuco National Park region highlighted in red. C. Cusuco National Park (outlined in red), with campsites and trails monitored by the Wallacea project, and distribution records of M. kellyana.
FIGURE 1. Miconia kellyana. A. Habit. B in A new Miconia (Melastomataceae) from Cusuco National Park, Honduras
FIGURE 1. Miconia kellyana. A. Habit. B. Indumentum detail of upper internode. C. Representative leaf (abaxial surface). D. Representative leaf (adaxial surface). E. Indumentum detail of abaxial leaf surface. F. Indumentum detail of adaxial leaf surface. G. Flower at anthesis (profile view). H. Petal (adaxial surface). I. Stamen (ventral view). J. Stamen (lateral view). K. Style and ovary apex. Drawn from CAS isotype.
FIGURE 2. Miconia kellyana field photos. A in A new Miconia (Melastomataceae) from Cusuco National Park, Honduras
FIGURE 2. Miconia kellyana field photos. A. An individual of M. kellyana (white arrow) in a forest understory at Cusuco National Park, Honduras. B. Flowering branches. C. Close-up of two flowers in post-anthesis. All photos by Michael Darling.
FIGURE 8 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 8. Scanning Electron Microscopy of vegetative and reproductive organs of T. longisquamata. A. Scales on young branches. B. Trichomes on the adaxial surface of the leaves. C. Scales on the abaxial surface of the leaves. D. Detail of the scale on the abaxial surface of the leaf. E. Scales on the primary veins of the leaves on the abaxial surface. F. Scales on the abaxial surface of the hypanthium. G. Detail of the base and margin of the scales from the hypanthium. (All images from Martinelli et al. 21535 at UPCB).
FIGURE 7 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 7. Indumentum on the adaxial surface of the leaves of Tibouchina longisquamata and putative related species. A. Tibouchina longisquamata. B. Tibouchina exasperata. C. Tibouchina llanorum (A from Martinelli et al. 21535 at UPCB; B from Meyer 2055 at UPCB; C from Monteiro & Ramos 76-838 at UPCB).
FIGURE 5 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 5. Distribution map of Tibouchina falcifolia (orange triangles) and Tibouchina longisquamata (yellow triangles). Abbreviations: DF: Distrito Federal; GO: Goiás; TO: Tocantins; MA: Maranh"o; PI: Piauí; BA: Bahia; MG: Minas Gerais.
FIGURE 4 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 4. Scanning Electron Microscopy of vegetative and reproductive parts of T. falcifolia. A. Scales on young branches. B. Trichomes on the adaxial surface of the leaves. C. Detail of the trichome on the adaxial surface of the leaves. D. Scales on the abaxial surface of the leaves. E. Detail of the scale on the abaxial surface of the leaves. F. Scales on the abaxial surface of the hypanthium. G. Seed. H. Detail of surface of the seed. (A from Diniz et al. 724 at UFG; B–F from Verdi et al. 7373 at RB; G–H from Meyer 1193 at UPCB).
FIGURE 3 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 3. Indumentum on the adaxial surface of the leaves of Tibouchina falcifolia (A) and Tibouchina aegopogon var. angustifolia (B). (A from Meyer 1193 at UPCB; B from Labiak et al. 5879 at UPCB).
FIGURE 2 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 2. Photos of Tibouchina falcifolia in the field. A. Habit. B. Flowering branches. C. Detail of androecium and gynoecium. D. Mature fruits. E. One of the places where the species occurs, near Morro da Baleia, Chapada dos Veadeiros. (A, D, and E by F.S.Meyer; B – C by D.O. Diniz).
FIGURE 6 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 6. Plate with photos from the holotype of Tibouchina longisquamata. A. Branch. B. Adaxial surface of the leaf. C. Abaxial surface of the leaf. D. Bracteole, abaxial surface. E. Floral bud. F. Detail of the scales on the abaxial surface of the hypanthium. G. Antepetalous stamen. H. Antesepalous stamen. I. Gynoecium. [All images from Martinelli et al. 21535 at UPCB].
FIGURE 1 in Two new species of Tibouchina (Melastomataceae) from the Brazilian Cerrado
FIGURE 1. Plate with photos from the paratype and holotype of Tibouchina falcifolia. A. Branch. B. Leaf. C. Detail of the indumentum on the adaxial surface of the leaves. D. Detail of the scales on the abaxial surface of the leaves. E. Bracteole, abaxial surface. F. Floral bud. G. Detail of the scales on the abaxial surface of the hypanthium. H. Antepetalous stamen. I. Antesepalous stamen. J. Gynoecium. K. Mature fruit with persistent sepals. (A – J from Verdi et al. 7373 at RB; K from Meyer 1193 at UPCB).
FIGURE 7. Microlicia pumila. A. Fruiting branches. B in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 7. Microlicia pumila. A. Fruiting branches. B. Branchlet terminating in a floral bud. C. Type locality, Serra da Formosa, Monte Azul, Minas Gerais, Brazil. Photos by R. Pacifico. Voucher: R. Pacifico et al. & V.E. Bressan 725.
FIGURE 8. A in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 8. A. Map of Brazil with Minas Gerais state highlighted in black. B. Minas Gerais with distributions of Microlicia karinae, M. nervosa, M. naudiniana, M. obovatifolia and M. pumila. C. Satellite image of Serra do Cipó with distributions of M. karinae, M. nervosa, M. naudiniana and M. obovatifolia. D. Satellite image of Serra da Formosa with the distribution record of M. pumila.
FIGURE 1. A in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 1. A summary of the elliptic Fourier analysis of leaf shape. A. Two main PC axes associated with variation in leaf shape. Each row represents variation in shape explained by each of the first two PC axes, whereas the columns correspond to the mean shape ± 1.5 standard deviations on each side. B. PCA ordination of the elliptical Fourier analysis showing ranges of variation in leaf shape associated with each species. C–G. Photos of representatives leaves of species sampled in the elliptic Fourier analysis. C. Microlicia pumila (R. Pacifico 725 & V.E. Bressan). D. Microlicia obovatifolia (F. Almeda et al. 8899). E. Microlicia karinae (F. Almeda et al. 9705). F. Microlicia naudiniana (R. Pacifico 321). G. Microlicia nervosa (F. Almeda et al. 9124). H. Heatmap highlighting regions that differ in mean leaf shape between M. pumila (outlined in red) and M. karinae (outlined in light blue). Scale bars: 2 mm.
FIGURE 4. A in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 4. A. Map of Brazil with Bahia state highlighted in black. B. Bahia with distributions of Microlicia coronata, M. delicata, and M. plumosa. C. Satellite image of southwestern Chapada Diamanatina with distributions of M. coronata, M. delicata, and M. plumosa.
FIGURE 6. Microlicia pumila. A. Habit. B in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 6. Microlicia pumila. A. Habit. B. Detail of the verrucose internodes. C. Apical vegetative branch. D. Leaf (abaxial surface). E. Leaf (adaxial surface). F. Floral bud. G. Antesepalous stamen. H. Antepetalous stamen. I. Capsule enveloped by the hypanthium. J. Capsule. K. Seed in lateral view. Voucher: R. Pacifico 725 & V.E. Bressan. Scale bars: A, 2 cm; B, 1 mm; C, 4 mm; D–J, 2 mm; K, 0.4 mm.
FIGURE 5 in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 5. Photos of selected species compared to new taxa described in this study. A–D Microlicia plumosa. A. Population on the Pico do Barbado, Abaíra, Bahia, Brazil. B. Habit. C. Branchlet in lateral view, showing the "feather-like" foliage typical of this species. D. Branchlet in upper view showing the decussate cruciate leaf arrangement as seen from above. E. Microlicia coronata, fruiting branches. F. Microlicia naudiniana, flower close up (R. Pacifico et al. 403). G. Microlicia obovatifolia, flower close up (F. Almeda et al. 8899). Photos A–F by R. Pacifico, and G by F. Almeda.
FIGURE 2. A–B in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 2. A–B. Comparative boxplots of leaf and calyx lobe length between Microlicia plumosa and M. delicata. A. Leaf length boxplot. B. Calyx lobe length boxplot. C–D. Photos of branches of M. delicata and M. plumosa, showing the general aspect of the foliage of each species when dry. C. Microlicia delicata (H.P. Bautista 2897). D. Microlicia plumosa (W. Ganev 2265).
FIGURE 3. Microlicia delicata. A. Habit. B in Microlicia delicata and Microlicia pumila (Melastomataceae), two new species from unprotected mountains with campo rupestr vegetation in eastern Brazil
FIGURE 3. Microlicia delicata. A. Habit. B. Cluster of trichomes above a node. C. Leaf in lateral view (left), abaxial view (middle) and adaxial view (right). D. Close up of a leaf in lateral view showing cilia on the margin. E. Detail of leaf trichome. F. Branchlet terminating in a flower. G. Antesepalous stamen. H. Antepetalous stamen. I. Capsule enveloped by the hypanthium, after calyx lobes fell away. J. Capsule. Voucher: Bautista 2897. Scale bars. A, 2 cm; B, D and E, 0.5 mm; C, G, H, I and J, 2 mm; F, 4 mm.
FIGURE 2 in New species of Microlicia (Melastomataceae) from the Espinhaço Meridional and Septentrional of Minas Gerais, Brazil
FIGURE 2. Distributions of Microlicia rosanae, M. septentrionalis, and similar species. A. Brazil with eastern states highlighted. B. Eastern Brazil with Espinhaço Meridional, Espinhaço Septentrional, and Chapada Diamantina of the Cadeia do Espinhaço outlined.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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