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599 results for “Caesalpinioideae”
FIGURE 1 in An outstanding new species of Senna (Fabaceae: Caesalpinioideae) from southern Puebla, Mexico
FIGURE 1. Habitat, plant habit, leaves and inflorescence with flowers of Senna acatlanensis. A—Location of S. acatlanensis populations, view of the city of Acatlán de Osorio, Puebla. B—Habitat, ecotone of seasonal dry tropical forest and oak land, with cactus Escontria chiotilla (F.A.C. Weber) Rose. C—CRM holding an inflorescence of this new species. D—Leaf with two pair of leaflets. E—Stipule. F—Leaf with gland on proximal pair of leaflets. G—Inflorescence. H—Flower buds. I—Flower starting anthesis. J—Flower with style on the right side. K—Flower with style on the left side. L—Flower stamens and staminodes. Photos by Helga Ochoterena and Cecilia Rojas-Martínez.
FIGURE 1. Parkinsonia glauca. A—Flowering branch. B—Fruiting branch. C in Parkinsonia glauca (Caesalpinioideae, Leguminosae), a new combination and status
FIGURE 1. Parkinsonia glauca. A—Flowering branch. B—Fruiting branch. C—Spine and stipule. D—Bipinnate leaf with one pair of pinnae. E—Bracts. F—Flower. G—Petals. H—Stamens. I—Ovary and ovules. J—Fruit. K—Seed. (A, E, F, G, H and I drawn from: T.M. Pedersen 13958 MBM; B, C and D: W. Fischer 20 NY.) Drawn by Klei Rodrigo Sousa.
FIGURE 9 in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 9. Distribution of Albizia macrophylla (Bunge) Chakrab. & M.Gangop., occurrence in Japan and Korea is not shown.
FIGURE 8 in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 8. Albizia macrophylla (Bunge) Chakrab. & M.Gangop. A. Flowering branches. B. Young stem and older stem, showing prominent lenticels. C. A leaf from flowering branch. D. A pinna (showing venation of leaflets). E–F. Petiole glands (notice the hairs); G. A flower, an inflorescence and two seeds (from top to bottom). H. Flowers (showing the calyx and corolla lobes densely hairy). Bars=1 cm, except otherwise indicated. Vouchers: A–E, G (except seeds) & H are based on L. Bai & J.Y. Jin BLSC-69 (IBSC), F is based on L. Bai BLSC-324 (IBSC) and seed in G is based on H.F. Tan 700582 (IBSC). Photos: Lin Bai.
FIGURE 6. Albizia henryi Ricker. A. Habit. B. flowering branches. C in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 6. Albizia henryi Ricker. A. Habit. B. flowering branches. C. Inflorescence, flowers and flower parts (a: inflorescence; b: a peripheral flower; c: calyx and corolla densely hairy; d: fruits develop from peripheral flowers; e: young pods densely hairy. D. A comparison of a flowering branch developed from the crown of an older tree (upper) and a branch from a young tree (lower). E. Petiole glands (a–b are from juvenile leaves (notice the pruinosity), c–g are from leaves on mature leaves); F. leaflets (upper: adaxial, lower: adaxial). Vouchers: L. Bai BLSC-148 (BLSC). Photos: Lin Bai.
FIGURE 5. Type specimens. A in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 5. Type specimens. A. Lectotype of A. garrettii I.C.Nielsen (inset: lower surface of leaflet, showing venation). B. Lectotype of A. lebbeck (L.) Benth. (inset: lower surface of leaflet, showing venation). C. Lectotype of A. macrophylla (Bunge) Chakrab. & M.Gangop. (inset: lower surface of leaflet, showing venation). D. Lectotype of A. esquirolii H. Lév. (inset: lower surface of leaflet from an isolectotype (P barcode P02142863), showing venation).
FIGURE 3. Albizia calcarea Y.H.Huang. A. A branch with withered flowers from a in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 3. Albizia calcarea Y.H.Huang. A. A branch with withered flowers from a plant growing in an open habitat, showing that leaves with relatively fewer pinnae and leaflets. B. Under surface of leaves from a flowering branch in an open habitat, showing the prominent veins. C. A leaf from a juvenile tree growing in shaded area, showing more pinnae and leaflets and less prominent veins. D. A flower (calyx and corolla being densely hairy) and a seed. E. Petiole glands: a–c are from mature leaves, while d–f are from juvenile leaves. F. Leaf parts: a. upper part of a pinna (showing one rachilla gland at base of upper-most pair of leaflets; b. a pinna from juvenile branches, showing more slender leaflets and less prominent veins; d. a rachis gland at base of upper-most pair of pinnae; e. a rachilla gland at base of upper-most pair of leaflets). Vouchers: A, B, D (left), E (a & b) & F (c–e) are based on L. Bai BLSC-145 (IBSC); D (right) is based on China-Germany Expedition 54 (IBSC); the remaining are based on L. Bai BLSC-041 (IBSC). Photos: A & B by Y.H. Tong, C–F by L. Bai.
FIGURE 2. Type specimens. A in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 2. Type specimens. A. Lectotype of A. calcarea Y.H.Huang. B. Lectotype of A. duclouxii Gagnep. C. Lectotype of A. henryi Ricker (upper inset: leaflets from an isolectotype (A barcode A00071853); lower two insets: flowers from an isolectotype (K barcode K000800901), showing that the calyces are glabrous except pubescent at the tip of the lobes, and the corolla is densely pubescent throughout). D. Lectotype of A. simeonis Harms (inset: leaflets from an isolectotype (US barcode 00000482)).
FIGURE 1 in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 1. Illustration of leaflet venation of some Albizia species. A. Albizia calcarea Y.H.Huang. B. A. duclouxii Gagnep. C. A. henryi Ricker. D. A. lebbeck (L.) Benth. av: accessory veins (innermost ones arrowed in purple); lv: lateral veins. Drawn by Ding Han Cui.
FIGURE 4 in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 4. Distribution of Albizia calcarea Y.H.Huang, A. duclouxii Gagnep., A. garrettii I.C.Nielsen and A. henryi Ricker. Limestone distribution is based on Williams & Fong (2010).
FIGURE 7 in Notes on Albizia (Leguminosae-Caesalpinioideae-mimosoid clade) in China
FIGURE 7. Albizia lebbeck (L.) Benth. A. Flowering branches. B. Inflorescence (side view and apical view). C. A flowering branch showing leaves. D. Immature pods. E. Glands: a–d are petiole glands from juvenile leaves; e–h are petiole glands from mature leaves; i shows a petiole gland excreting sweet nectar; j is a rachis gland below insertion of pinnae pair; h shows rachilla glands below leaflet pairs. F. Pinna, leaflets and stipules: a. A pinna; b. Upper surface of leaflets from a mature leaf; c. Lower surface of leaflets from juvenile leaves; d. Lower surface of leaflets from a mature leaf; e. A young branch showing the stipules and dense yellow hairs. Vouchers: L. Bai BLSC-263 (IBSC). Photos: Lin Bai.
FIGURE 6 in Leaf anatomy and macro-morphological data support a new species of the legume genus Chamaecrista (Fabaceae, Caesalpinioideae) from Goiás, Brazil
FIGURE 6. Comparative leaflets anatomy of Chamaecrista taxa. (A–O) and paradermic (P–U). Chamaecrista barnebyana (A–B, G, J, M, and P–Q), C. cristalinae (C–D, H, K, N and R–S) and C. neesiana var. laxiracemosa (E–F, I, L, O and T–U); A, C and E. General aspect; B, D and F. Aspect of the leaflet margin; G–I. Mesophyll, detail of the epidermis, palisade parenchyma, and spongy parenchyma; J–L. Vascular bundles; M–O. trichomes; M. Acicular trichomes; N–O. Multicellular, secretory, shortly stipitate trichomes, with a bulbous base; P–U. General aspect of the epidermis and stomata. ep = epidermis; fb = libriform fibers; ph = phloem; pp = palisade parenchyma; ps = spongy parenchyma; tr = trichome; vb = vascular bundles; xy = xylem. Arrows indicate sclereids; the asterisk indicate stomata. Scale bars: A–F = 150 μm; G–J = 75 μm; K–L = 50 μm; M–O = 40 μm; P–U = 75 μm. Dashed areas in figures P and U indicate paracytic stomata, Q–T anisocytic stomata. Photomicrographs taken by Igor Soares dos Santos.
FIGURE 1 in Leaf anatomy and macro-morphological data support a new species of the legume genus Chamaecrista (Fabaceae, Caesalpinioideae) from Goiás, Brazil
FIGURE 1. Chamaecrista barnebyana sp. nov. A. Habit; B. Leaflet; C. Stipule; D. Bract; E. Bracteole; F. Flower bud; G. Flower in frontal view; H. Sepal; I. Petals; J. Reproductive structure; K. Stamen; L. Gynoecium; M. Fruit; N. Seed. Drawn by Raiana Cassiano from the holotype.
FIGURE 3 in Leaf anatomy and macro-morphological data support a new species of the legume genus Chamaecrista (Fabaceae, Caesalpinioideae) from Goiás, Brazil
FIGURE 3. Distribuition map of Chamaecrista barnebyana (), C. cristalinae () and C. neesiana var. laxiracemosa ().
FIGURE 5 in Leaf anatomy and macro-morphological data support a new species of the legume genus Chamaecrista (Fabaceae, Caesalpinioideae) from Goiás, Brazil
FIGURE 5. Comparative anatomy of the median portion of the rachis in Chamaecrista species. A, I and P. General aspect. Chamaecrista barnebyana (A–H), C. cristalinae (I–O) and C. neesiana var. laxiracemosa (P–V); B, F, J and Q. Vascular cylinder; T. Vascular bundle; C, G, K, M and R. Detail of the libriform pericyclic fibers, epidermis and cortical region; D and L. Stomata; H, N and U. Detail of the accessory vascular bundles; E, O, S and V. Trichomes; E, O and S. Acicular trichomes; V. Multicellular, secretory, shortly stipitate trichome, with a bulbous base. ab = accessory vascular bundles; co = cortex; ep = epidermis; fb = libriform fibers; ph = phloem; sc = substomatic chamber; tr = trichome; vb = vascular bundles; vc = vascular cylinder; xy = xylem. Arrows indicate stomata. Scale bars: A, I and P = 150 μm; B, F, H, J, Q and U = 75 μm; C, G, K, M–N, R and T = 60 μm; D–E, L, O, S and V = 40 μm. Photomicrographs taken by Igor Soares dos Santos.
FIGURE 4 in Leaf anatomy and macro-morphological data support a new species of the legume genus Chamaecrista (Fabaceae, Caesalpinioideae) from Goiás, Brazil
FIGURE 4. Comparative anatomy of the median portion of the petiole in Chamaecrista taxa. A and H. General aspect. Chamaecrista barnebyana (A–G) and C. neesiana var. laxiracemosa (H–L); B and I. Vascular cylinder; C and J. Vascular bundles; D. Accessory vascular bundles; C–E and J–K. Detail of the libriform fibers; F and K. Detail of the epidermis and cortical region; G and L. Trichomes; G. Unicellular, acicular trichome; L. Multicellular, secretory, shortly stipitate trichome, with a bulbous base. ab = accessory vascular bundles; co = cortex; ep = epidermis; fb = libriform fibers; ph = phloem; vb = vascular bundles; vc = vascular cylinder; xy = xylem. Scale bars: A and H = 150 μm; B and I = 75 μm; C–D and J = 60 μm; E and K = 40 μm; G and L = 30 μm. Photomicrographs taken by Igor Soares dos Santos.
FIGURE 2. Chamaecrista barnebyana. A in Leaf anatomy and macro-morphological data support a new species of the legume genus Chamaecrista (Fabaceae, Caesalpinioideae) from Goiás, Brazil
FIGURE 2. Chamaecrista barnebyana. A. Habitat; B. Habit; C. Inflorescence; D. Flower in frontal view; E. Flower bud; F. Fruit. Photographs taken by M.J. Silva (A) and R.G. Matos (B–F).
FIGURE 1 in Taxonomic novelties in Chamaecrista (Leguminosae: Caesalpinioideae) from Brazil
FIGURE 1. Chamaecrista choriophylla: A. Vegetative branch; B. Apex of flowering branch; C. Stipules and D. Petiolar gland. C. latifolia: E. Vegetative branch; F. Apex of flowering branch; G. Stipules and H. Petiolar gland. C. rossicorum: I. Fruiting branch; J. Apex of flowering and fruiting branch; L. Stipules and M. Petiolar gland with ant visitors. Photos Juliana Gastaldello Rando, scale = 1.0 cm.
FIGURE 1 in A new variety of Bauhinia bassacensis (Leguminosae: Caesalpinioideae) from Great Nicobar Island, India
FIGURE 1. Bauhinia bassacensis var. nicobarica: A. Twig with fruits; B. Inflorescence; C. Petals; D. Bract; E. Bracteoles and F. L. S. of Fruit with Seeds (Drawn after K. Ravikumar et al. 115533 by Umeshkumar Tiwari).
FIGURE 2 in A new variety of Bauhinia bassacensis (Leguminosae: Caesalpinioideae) from Great Nicobar Island, India
FIGURE 2. Bauhinia bassacensis var. nicobarica: A. Twig with inflorescence; B. Type Specimen 115533 (FRLH); C. Close up of Flower; D. Anthers and filaments and E. Fruits.(Photo plate is prepared by Umeshkumar Tiwari after K. Ravikumar et al. 115533).
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Allen Brain Atlas
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OpenNeuro
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