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1,268 results for “Melastomataceae”
Figure 5 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 5. Locharcha opportuna last larval instar: (A) head chaetotaxy, frontal view; (B) thoracic and abdominal chaetotaxy, lateral view; (C) head and prothoracic shield, dorsal view; (D) body, lateral view. Scale bars = 50 µm and 1 mm, respectively.
Figure 3 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 3. Male genital morphology of Locharcha opportuna under light and scanning electron microscopy: (A) genitalia (aedeagus removed), oblique view (slide preparation GRPM 50–63); (B) gnathos, lateral view; (C) left valve (= glandiductor) detached from tegumen, lateral view; (D) sicae with anchored aedeagus (pointed by arrow), lateroposterior view; (E) dissected aedeagus (asterisk indicates everted vesica), lateral view. Scale bars = 1 mm, 50, 100, 100, 200 µm, respectively.
Figure 2 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 2. Locharcha opportuna adult morphology: (A) wings; (B) male genitalia (arrow indicates glandiductor), lateral view; (C) female genitalia, lateral view; (D) detail of tergal process (asterisk), dorsal view. Scale bars = 1, 0.2 and 0.5 mm, respectively.
Figure 1 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 1. Locharcha opportuna adult, dorsal view: (A) wings spread, pinned; (B) head and thorax, in detail; (C) wings folded, on Tibouchina sellowiana leaf. Scale bars = 2, 1 and 2 mm, respectively.
Figure 11 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 11. Variation in green colour intensity of Tibouchina sellowiana galls (median and corresponding quartiles) in relation to larval ontogeny, when considered the presence of larva either of the cecidogenous insect (A; = 10, 81 and 64 individuals, respectively, for instar II to IV) or the kleptoparasite (B; = 29, 38, 32, 64 individuals, respectively for instars I to IV) larvae inside. Bars followed by the same letter do not differ statistically (Kruskal–Wallis test, followed by Dunn's multiple comparison tests).
Figure 4 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 4. Female genital morphology of Locharcha opportuna under light microscopy: (A) genitalia, oblique view (slide preparation GRPM 50–65); (B) female signum, internal view. Scale bars = 250 and 500 µm, respectively.
Figure 10 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 10. Galls induced by Palaeomystella fernandesi on Tibouchina sellowiana plants, free from (A–D) and attacked by (E–H) the kleptoparasite Locharcha opportuna. (A) general aspect of two young, green galls inhabited by cecidogenous larvae, as indicated by the absence of external orifices; (B) dissected gall showing a cecidogenous larva inside; (C) dehiscent, violet gall on the ground, bearing a cecidogenous late-instar larva; (D) operculum (indicated by closed arrow) made by a last instar of the cecidogenous larva on a dehiscent gall before pupation, external view; (E) violet gall inhabited by a kleptoparasite larva, as indicated by the presence of two orifices (open arrows); (F) dissected gall showing a kleptoparasite larva inside; (G) dissected gall showing a kleptoparasite pupal cocoon inside (covered by larval faecal pellets, indicated by asterisk); (H) old, empty gall, left attached to a T. sellowiana plant after the kleptoparasite emergence. Scale bars = 4, 2, 2, 2, 4, 4, 4, 4 mm, respectively.
Figure 12 in Description, molecular phylogeny, and natural history of a new kleptoparasitic species of gelechiid moth (Lepidoptera) associated with Melastomataceae galls in Brazil
Figure 12. Variation in colour and size among galls induced by Palaeomystella fernandesi on Tibouchina sellowiana plants, and corresponding use by either cecidogenous or kleptoparasite moths at CPCN Pró-Mata (April 2012 to June 2013). (A) Gradient from green- to violetcoloured for galls that were studied; (B, C) abundance of cecidogenous larvae (closed bars; total = 155 individuals) and kleptoparasite (open bars; total = 163 individuals) inside in relation to intensity of green colour and size of green galls, respectively; (D) linear regression between size and intensity of green colour on galls (y = 0.67x + 8.77, R2 = 0.152, p <0.0001, n = 348).
Figure 2 from: Shin J-S, Song B-K, Phourin C, Won H, Lee K-E, Cho S-H (2020) Sonerila cardamomensis (Melastomataceae), a new species from Cambodia. PhytoKeys 156: 139-144. https://doi.org/10.3897/phytokeys.156.55866
Figure 2 A–ESonerila cardamomensisA habit B flowers C immature capsules D mature capsules E short bulbous rhizome: Photos by Seong-Hyun Cho.
Figure 1 from: Shin J-S, Song B-K, Phourin C, Won H, Lee K-E, Cho S-H (2020) Sonerila cardamomensis (Melastomataceae), a new species from Cambodia. PhytoKeys 156: 139-144. https://doi.org/10.3897/phytokeys.156.55866
Figure 1 Sonerila cardamomensisA Flowering individual B fruiting individual C–D developing flower E mature flower F petals (right: abaxial, left: adaxial) G style and Stigma H filament and Anther I gynoecium J leaf K upper surface of leaf L lower surface of leaf M immature capsule N mature capsule O seeds: Cho et al. CB-4467. Illustration by Ye-Seul Jang.
Figure 3 from: Fontelas JC, Romero R (2020) Two new species of Microlicia D.Don (Melastomataceae, Microlicieae) from Chapada dos Veadeiros, Goiás State, Brazil. PhytoKeys 164: 115-126. https://doi.org/10.3897/phytokeys.164.57569
Figure 3 Microlicia xylopodifera Fontelas & R.Romero A habit, showing a xylopodium B leaf adaxial surface C flower bud D detail of the apex of the flower bud with a crown of glandular trichomes E petal F larger (antesepalous) stamen G smaller (antepetalous) stamen H gynoecium I closed capsule (A–I: H.S. Irwin et al. 33108). Photos: Jean Fontelas.
Figure 2 from: Fontelas JC, Romero R (2020) Two new species of Microlicia D.Don (Melastomataceae, Microlicieae) from Chapada dos Veadeiros, Goiás State, Brazil. PhytoKeys 164: 115-126. https://doi.org/10.3897/phytokeys.164.57569
Figure 2 Geographical distribution of Microlicia gracilis and M. xylopodifera in the state of Goiás, Brazil.
Figure 1 from: Fontelas JC, Romero R (2020) Two new species of Microlicia D.Don (Melastomataceae, Microlicieae) from Chapada dos Veadeiros, Goiás State, Brazil. PhytoKeys 164: 115-126. https://doi.org/10.3897/phytokeys.164.57569
Figure 1 Microlicia gracilis Fontelas & R.Romero A flowering branch B leaf adaxial surface C flower bud D detail of the flower bud E petal F larger (antesepalous) stamen G smaller (antepetalous) stamen H gynoecium I closed capsule (A–I: C. Munhoz et al. 1519). Photos: Jean Fontelas.
Supplementary material 1 from: Dai J-H, Van Do T, Liu Y (2023) Four new species of Perilimnastes (Sonerileae, Melastomataceae) from Vietnam. PhytoKeys 235: 1-19. https://doi.org/10.3897/phytokeys.235.112133
Supplementary data
FIGURE 23. Miconia reitziana. A in Systematics of the Octopleura Clade of Miconia (Melastomataceae: Miconieae) in Tropical America
FIGURE 23. Miconia reitziana. A. Habit, showing detail of abaxial foliar base (bottom), and adaxial foliar surface (top). B. Flower. C. Stamen, abaxial view (left), lateral view (right). D. Berry. E. Seed. Based on Hammel 8880, CAS. Drawn by Sean V. Edgerton.
FIGURE 22. Miconia radicans. A in Systematics of the Octopleura Clade of Miconia (Melastomataceae: Miconieae) in Tropical America
FIGURE 22. Miconia radicans. A. Habit, with detail of abaxial foliar base. B. Flower. C. Stamen, abaxial view (left), lateral view (right). D. Berry. E. Seed. Based on Zamora 1766, CAS. Drawn by Sean V. Edgerton.
FIGURE 25. Miconia spiciformis. A in Systematics of the Octopleura Clade of Miconia (Melastomataceae: Miconieae) in Tropical America
FIGURE 25. Miconia spiciformis. A. Habit, showing detail of cauline nodes (top), and abaxial foliar venation (bottom). B. Flower. C. Petal, abaxial view. D. Stamen, abaxial view (left), lateral view (right). E. Berry. F. Seed. Based on McPherson & Serein 20759, CAS. Drawn by Sean V. Edgerton.
FIGURE 24. Miconia renatoi. A in Systematics of the Octopleura Clade of Miconia (Melastomataceae: Miconieae) in Tropical America
FIGURE 24. Miconia renatoi. A. Habit, showing details on abaxial foliar principal veins, with elongate roughened trichomes (left), dendritic trichomes (right). B.Flower. C. Stamen, abaxial view (left), lateral view (right). D. Berry, top view (top), lateral view (bottom). Based on Jaramillo 8274, MO; detail of abaxial leaf on left, Hoover et al. 3621, US. Drawn by Sean V. Edgerton.
FIGURE 227 in Description of the immature stages and life history of Euselasia (Lepidoptera: Riodinidae) on Miconia (Melastomataceae) in Costa Rica 2466
FIGURE 227. Egg cluster of E. aurantia, lateral view. Note space between eggs and plant surface.
FIGURES 48–50. Pale form E. chrysippe pupa. 48 in Description of the immature stages and life history of Euselasia (Lepidoptera: Riodinidae) on Miconia (Melastomataceae) in Costa Rica 2466
FIGURES 48–50. Pale form E. chrysippe pupa. 48) Lateral view; 49) Dorsal view; 50) Frontal view.
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Allen Brain Atlas
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OpenNeuro
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