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101 results for “Smilax”
FIGURES 9–12 in A revision of the myrmecophilous genus Smilax Laporte (Coleoptera: Staphylinidae: Staphylininae)
FIGURES 9–12. Pronotum of Smilax Laporte. 9. Smilax deneinephyto Chatzimanolis. 10. Smilax kuntzeni (Scheerpeltz). 11. Smilax lynchi (Bruch). 12. Smilax pilosa (F.). Not to scale.
FIGURE 4 in Lectotypification of four names in the genus Smilax (Smilacaceae)
FIGURE 4. Lectotype of Smilax tetraptera Schlechter K000820870 © copyright of the Board of Trustees of the Royal Botanic Gardens, Kew.
FIGURE 3 in Lectotypification of four names in the genus Smilax (Smilacaceae)
FIGURE 3. Lectotype of Smilax megacarpa A.DC. K000820886 © copyright of the Board of Trustees of the Royal Botanic Gardens, Kew.
FIGURE 1 in Lectotypification of four names in the genus Smilax (Smilacaceae)
FIGURE 1. Lectotype of Smilax gigantea Merrill K000292107 © copyright of the Board of Trustees of the Royal Botanic Gardens, Kew.
FIGURE 6 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 6. Chromosomes of Smilax microdontus sp. nov. and other two closer species: A & B. Smilax sp.nov. 2n=32, (A. mHB, B. mZZ: 2n=32); C. Smilax biflora (bAM: 2n=40); D. Smilax trinervula (tYS: 2n=32).
FIGURE 2 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 2. Principal component analysis (PCA) of 13 morphological characters of the Smilax china complex. Axes R1 and R2 explain 44.68% and 24.36% of the total variation, respectively.
FIGURE 5. Smilax microdontus Z.S. Sun & C.X in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 5. Smilax microdontus Z.S. Sun & C.X. Fu, sp. nov. A. Fertile branch with fruits; B. Enlarged leaf margin, show the small teeth; C. Narrowly winged petiole; D. Staminate flower; E. Fruit; F. Seed. Drawn by Dr. Xiaofeng Jin.
FIGURE 4 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 4. Phylogram of the best maximum likelihood tree of the Smilax china complex based on combined nrITS and cpDNA (matK, rbcL, rbcL–aptB intron, and trnS–trnG intron) data. Maximum likelihood and maximum parsimony bootstrap values greater than 50% are presented on the branches.
FIGURE 1 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 1. Geographical distribution of the Smilax china complex, indicating locations of diploid populations in this study. See Table 1 for population abbreviation.
FIGURE 3 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 3. Morphology and karyotype of Smilax microdontus sp. nov.. A. Inflorescence & male flowers; B. Leaf blade (dry), showing pale green color abaxially and minutely serrulate blade margin; C. The chromosomes of population mYXS (mitotic metaphase); D. Habit, showing the sub-erect stem and flowers in May; E. red fruits in October. Bars represent 1 cm.
FIGURE 4 in A new species of Smilax (Smilacaceae) from Yunnan, China
FIGURE 4. Distribution records of Smilax hirtellicaulis C.Y.Wu & C.Chen ex P.Li, sp. nov. (red stars) from Hekou County, Yunnan Province, China.
FIGURE 3. Smilax hirtellicaulis C.Y in A new species of Smilax (Smilacaceae) from Yunnan, China
FIGURE 3. Smilax hirtellicaulis C.Y.Wu & C.Chen ex P.Li. (A). Plant habitat: in artificial cedarwood or rubber forests. (B). Plant habit. (C). Stem section with leaf in adaxial view and staminate inflorescence. (D). Stem section with leaf in abaxial view and staminate inflorescence. (E). Rhizome. (F). Staminate inflorescence. (G). Pistillate inflorescence. (H). Peduncle, stem and petiole. (I). Staminate flower in front view. (J). Staminate flower in rear view. (K). Pistillate flower in side view. (L). Outer tepal (bottom row) and inner tepal (top row) from a pistillate flower.
FIGURE 2 in A new species of Smilax (Smilacaceae) from Yunnan, China
FIGURE 2. Illustration of Smilax hirtellicaulis C.Y.Wu & C.Chen ex P.Li. (A). Fertile branch with pistillate inflorescences and fruits. (B). Staminate inflorescence. (C). Staminate flower in front view. (D). Staminate flower in rear view, showing basally connate tepals. (E). Six stamens, showing connate filaments. (F). Anther in front view. (G). Anther in side view. (H). Pistillate flower in front view. (I). Pistillate flower in side view. (J). Ovary in side view. (K). Transversal section of ovary. (L). Six amphitropous ovules bearing at the axile placentation. (M). Outer tepal of pistillate flower. (N). Inner tepal of pistillate flower. (O). Rhizome.
FIGURE 1 in A new species of Smilax (Smilacaceae) from Yunnan, China
FIGURE 1. Maximum likelihood phylogram of Smilax hirtellicaulis sp. nov. and 21 other Smilax species, representing the Old World Smilacaceae clade. Posterior probabilities (PP> 0.50) and bootstrap values (BS> 50%) based on maximum likelihood (ML) analysis are sequentially indicates above the branches.
FIGURE 1 in Smilax jiankunii, a new synonym in Chinese Smilax (Liliales: Smilacaceae)
FIGURE 1. Potential distribution area of S. pottingeri with specimen occurrence of S. pottingeri and S. jiankunii.
FIGURE 2. Smilax bolavenensis. A. Leafy branch. B. Branch with staminate inflorescence. C. Abaxial leaf surface. D., E. Staminate inflorescence. F in Smilax bolavenensis, a new species of Smilacaceae from southern Laos
FIGURE 2. Smilax bolavenensis. A. Leafy branch. B. Branch with staminate inflorescence. C. Abaxial leaf surface. D., E. Staminate inflorescence. F. Longitudinal section of a staminate umbel. G. Bracteole. H. Staminate flower bud with bracteoles (left), staminate flower bud (middle), and staminate flower bud outer three tepals and one inner tepal removed showing stamens (right). I. Outer tepals (top) and inner tepals (bottom), adaxial side (left), abaxial side (middle and right). A–C from Tagane et al. L1964 (KAG); D–G from Souladeth et al. L3342 (KAG). Scale bars: F = 5 mm, G–I= 2 mm. Photographed by S. Tagane.
FIGURE 3 in Rediscovery of Smilax turbans (Smilacaceae) from Arunachal Pradesh, India, after 95 years of type collection
FIGURE 3. Illustration of Smilax turbans A. Flowering twig. B. Male flower showing six tepals, six stamens. C. Tepal of male flower. D. Single stamen with oblong anther, linear filament. E. Petiolar wings. (Drawn by Geetika Sukhramani)
FIGURE 2. Smilax turbans. A. Habit. B. Petiolar wings. C in Rediscovery of Smilax turbans (Smilacaceae) from Arunachal Pradesh, India, after 95 years of type collection
FIGURE 2. Smilax turbans. A. Habit. B. Petiolar wings. C. Leaf: abaxial side. D. Flowering branch showing two umbels. E. Umbel showing male flowers. F. Bud. G. Male flower showing six tepals, six stamens. H. Tepal of male flower. I. Single stamen with oblong anther, linear filament.
FIGURE 1 in Rediscovery of Smilax turbans (Smilacaceae) from Arunachal Pradesh, India, after 95 years of type collection
FIGURE 1. Distribution map of Smilax turbans indicating the type locality (●), collections made by F. Kingdon-Ward (+),, our recent collection (*). Inset: State boundary of Arunachal Pradesh.
Figure 37-44 from: Gates MW, Zhang YM, Buffington ML (2020) The great greenbriers gall mystery resolved? New species of Aprostocetus Westwood (Hymenoptera, Eulophidae) gall inducer and two new parasitoids (Hymenoptera, Eurytomidae) associated with Smilax L. in southern Florida, USA. Journal of Hymenoptera Research 80: 71-98. https://doi.org/10.3897/jhr.80.59466
Figure 37-44 Sycophila smilax37 frontal view of head 38 frontal view of lower face 39 dorsal view of head 40 posterior view of head 41 female antenna 42 lateral view of mesosoma 43 dorsal view of mesosoma 44 dorsal view of propodeum.
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