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50 results for “Trichilia”
PLATE 15. Trichilia tenuifructa T.D.Penn. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 15. Trichilia tenuifructa T.D.Penn. A, habit with inflorescence; B, detail of leaf undersurface; C, whole flower; D, half flower; E, cross-section of ovary; F, infructescence; G, seed with arillode. (A–B, van der Werff et al. 10069; C–E, Daly et al. 6219; F, G, Pacheco et al. 214).
PLATE 14. Trichilia deminuta T.D.Penn. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 14. Trichilia deminuta T.D.Penn. A, habit with inflorescence; B, detail of leaf upper surface; C, detail of leaf undersurface; D, male whole flower; E, male half flower; F, cross-section of ovary; G, immature fruit. (A–F, Cogollo 1473; G, Cogollo & Borja 1219).
PLATE 4. Trichilia trimera T.D.Penn. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 4. Trichilia trimera T.D.Penn. A, habit; B, detail of leaf undersurface; C, detail of petiolules; D, inflorescence; E, whole flower; F, half flower; G, cross-section of ovary; H, infructescence; I, seed. (A–C, Vásquez & Grandez 17606; D–G, Gottsberger & Döring G19- 4888; H–I, Daly et al. 7896).
PLATE 7. Trichilia obovata W.A.Palacios. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 7. Trichilia obovata W.A.Palacios. A, habit with inflorescence; B, whole flower; C, half flower; D, habit with fruit; E, seed (A–C, Pennington 10625; D, Acevedo-Rodriguez & Cedeño 7409).
PLATE 10. Trichilia congesta T.D.Penn. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 10. Trichilia congesta T.D.Penn. A, habit; B, detail of leaf undersurface; C, inflorescence; D, whole flower; E, half flower; F, detail of anthers; G, cross-section of ovary; H, infructescence; I, seed. (A, B, Carvalho et al. 3402; C, Alves et al. 1955; D–G, Thomas et al. 10757; H, I, Amorim et al. 2583).
PLATE 3. Trichilia elegans A.Juss. subsp. elegans. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 3. Trichilia elegans A.Juss. subsp. elegans. A, habit with inflorescence; B, detail of leaf undersurface with gland dots; C, detail of hair tufts in vein axil; D, half flower (female); E, cross-section of ovary; F, half flower (male); G, infructescence. (A–E, Jansen-Jacobs et al. 1006; F, Stoffers et al. 282; G, Jansen-Jacobs et al. 4160).
PLATE 11. Trichilia amapaensis T.D.Penn. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 11. Trichilia amapaensis T.D.Penn. A, habit with inflorescence; B, detail of leaf undersurface; C, detail of peduncle; D, whole flower; E, half flower; F, detail of staminal tube. (A–F, Pires et al. 50677).
PLATE 6 in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 6. Trichilia pallida Sw. A, habit with inflorescence; B, habit with infructescence; C, habit with infructescence; D, infructescence; E, half flower. (A, E, Evans et al. 2433; B, Sabatier & Prévost 2716; C, A.C.Smith 3369; D, Jansen-Jacobs et al. 410).
PLATE 13. Trichilia reynelii T.D.Penn. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 13. Trichilia reynelii T.D.Penn. A, leaf; B, habit with inflorescence; C, whole flower; D, half flower; E, cross-section of ovary. (A, Reynel 280; B, Daza 5025; C–E, Pennington & Daza 18017).
PLATE 9. Trichilia erythrocarpa Lundell. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 9. Trichilia erythrocarpa Lundell. A, habit with fruit; B, inflorescence; C, half flower; D, seed. (A, D, Alvarez & Chambor 4928; B, Lundell 16135; C, Ortiz 1953).
PLATE 5. Trichilia rubra C in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 5. Trichilia rubra C.DC. A, habit with inflorescence, B, whole flower; C, half flower; D, cross-section of ovary; E, capsule. (A, FDBG 2337; B–D, Hoffman & Roberts 2665; E, Hoffman & Roberts 2703).
PLATE 8 in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 8. Trichilia pachypoda (Rusby) C.DC. A, habit with inflorescence; B, detail of reduced basal leaflets; C, detail of leaf upper surface; E, shoot apex; F, whole flower; G, half flower; H, cross-section of ovary. (A–H, Meneces et al. 148).
PLATE 2. Trichilia dazae T.D.Penn.A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 2. Trichilia dazae T.D.Penn.A, habit with inflorescence; B, whole flower; C, half flower & cross-section of ovary; D, infructescence; E, seed with arillode. (A–C, Pennington & Daza 18007; D, E, Daza 44).
PLATE 12. Trichilia primogenita W.A.Palacios. A in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 12. Trichilia primogenita W.A.Palacios. A, habit; B, detail of leaf upper surface; C, detail of leaf undersurface; D, shoot apex with inflorescence; E, whole flower; F, half flower; G, cross-section of ovary. (A–C, Tipaz et al. 1433; D–G, C.Aulestia & Grijalva 1185).
PLATE 1. Trichilia multifoliola C in Systematic Treatment Of American Trichilia (Meliaceae)
PLATE 1. Trichilia multifoliola C.DC. A, habit with inflorescence; B, whole flower; C, half flower; D, infructescence; E, seed with arillode. (A–C, Wood & Goyder 15535; D, E, Araujo et al. 260).
Fig. 7 in Secotrijugins A D, four highly oxidized and rearranged limonoids from Trichilia sinensis and their anti-inflammatory activity
Fig. 7. Effects of 2 on NO production in LPS-stimulated zebrafish embryos. Zebrafish embryos were stimulated by LPS (10 μg/ml) with or without 2 (10, 30, and 100 μM) for 24 h. At 3 day post fertilization (dpf), the NO levels were measured by laser confocal microscope. Fluorescence intensity was quantified using Image J. Data were expressed as mean ± SD. ###p <0.001 compared with LPS-untreated embryos, ***p <0.001, *p <0.05 compared with LPS-treated group.
Fig. 5 in Secotrijugins A D, four highly oxidized and rearranged limonoids from Trichilia sinensis and their anti-inflammatory activity
Fig. 5. Effects of 2 on iNOS and COX-2 expression in LPS-induced BV-2 cells. BV-2 cells were pretreated with 2 with 10, 30, and 100 μM for 30 min and then stimulated with LPS for 24 h, cells were harvested, and total protein was extracted. Protein band intensity was normalized to β-actin and was expressed as fold difference relative to the LPS group (down). ###p <0.001, compared with control, ***p <0.001; **p <0.01, *p <0.05, compared with LPS group.
Fig. 5 in Trichilia (Meliaceae) plants: an important source of biomolecules with insecticidal properties
Fig. 5. Mean (± SEM) fecundity (black) and fertility (white) of pairs of Copitarsia decolora fed with artificial diet supplemented with aqueous and methanol extracts of Trichilia americana (n = 5), acetone (n = 2), and ethyl acetate (n = 3) of Trichilia hirta; aqueous, acetone, and methanol of Trichilia havanensis (n = 4); and the control diet (n = 5). Same color bars topped by the same letter are not significantly different (P> 0.05; LSD test). Error bars are Standard Error of the Mean.
Fig. 2 in Trichilia (Meliaceae) plants: an important source of biomolecules with insecticidal properties
Fig. 2. Survival curves of Copitarsia decolora larvae fed on an artificial diet supplemented with extracts of Trichilia americana bark at 100, 500, 1,000, and 1,500 ppm: (a) hexane, (b) ethyl acetate.
Fig 1 in Trichilia (Meliaceae) plants: an important source of biomolecules with insecticidal properties
Fig 1. Extraction procedure. Each Trichilia spp. bark was extracted sequentially using organic solvents (hexane, ethyl acetate, acetone, methanol, and water) with increasing polarity.
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