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99 results for “Trifida”
Ambrosia trifida (Asteraceae) - whole plant - in flower - general view
Image of Ambrosia trifida (Asteraceae) - whole plant - in flower - general view
Ambrosia trifida (Asteraceae) - leaf - basal or on lower stem
Image of Ambrosia trifida (Asteraceae) - leaf - basal or on lower stem
Ambrosia trifida (Asteraceae) - leaf - on upper stem
Image of Ambrosia trifida (Asteraceae) - leaf - on upper stem
FIGURE. Vascular epiphytes representatives of the Augusto Ruschi Biological Reserve, Santa Teresa, Espírito Santo, Brazil. a–o Orchidaceae: a Pabstiella nymphalis. b Pabstiella pterophora. c Pabstiella seriata. d Pabstiella trifida. e Pabstiella villosisepala. f Phloeophila numularia. g Promenaea stapelioides. h Proschechea kautskyi. i Prosthechea pachysepala. j Scuticaria hadwenii. k Specklinia marginalis. l Specklinia subpicta. m Stelis aprica. n Stelis argentata. o Stelis intermedia. in Augusto Ruschi Biological Reserve vascular epiphytes: a hotspot in the mountains of the Atlantic Forest of Southeastern Brazil
FIGURE. Vascular epiphytes representatives of the Augusto Ruschi Biological Reserve, Santa Teresa, Espírito Santo, Brazil. a–o Orchidaceae: a Pabstiella nymphalis. b Pabstiella pterophora. c Pabstiella seriata. d Pabstiella trifida. e Pabstiella villosisepala. f Phloeophila numularia. g Promenaea stapelioides. h Proschechea kautskyi. i Prosthechea pachysepala. j Scuticaria hadwenii. k Specklinia marginalis. l Specklinia subpicta. m Stelis aprica. n Stelis argentata. o Stelis intermedia.
FIGURES 35–39. T in First record and new species of the Oriental leafhopper genus Trifida Thapa & Sohi (Hemiptera: Cicadellidae: Typhlocybinae) from China
FIGURES 35–39. T. elongata sp. nov. 35, aedeagus, lateral view. 36, aedeagus and connective, posterior view. 37, paramere. 38, pygofer side, lateral view. 39. subgenital plate, ventral view.
FIGURES 24–27. T in First record and new species of the Oriental leafhopper genus Trifida Thapa & Sohi (Hemiptera: Cicadellidae: Typhlocybinae) from China
FIGURES 24–27. T. eleganta sp. nov. 24, aedeagus, lateral view. 25, aedeagus and connective (posterior view), paramere (ventral view). 26, pygofer side, lateral view. 27. subgenital plate, ventral view.
FIGURES 28–34. T in First record and new species of the Oriental leafhopper genus Trifida Thapa & Sohi (Hemiptera: Cicadellidae: Typhlocybinae) from China
FIGURES 28–34. T. robusta sp. nov. 28, aedeagus, lateral view. 29, aedeagus and connective, posterior view. 30, paramere. 31, pygofer capsule, lateral view. 32, subgenital plate, ventral view. 33, forewing. 34, hindwing.
FIGURES 17–23. T in First record and new species of the Oriental leafhopper genus Trifida Thapa & Sohi (Hemiptera: Cicadellidae: Typhlocybinae) from China
FIGURES 17–23. T. quadripunctata Thapa & Sohi, 1986, rec. nov. 17, aedeagus, lateral view. 18, aedeagus and connective, posterior view. 19, paramere. 20, subgenital plate, ventral view. 21, abdominal apodemes. 22, pygofer side, lateral view. 23, pygofer, dorsal view.
FIGURES 1–16 in First record and new species of the Oriental leafhopper genus Trifida Thapa & Sohi (Hemiptera: Cicadellidae: Typhlocybinae) from China
FIGURES 1–16. Habitus (dorsal view and lateral view), crown, pronotum and scutellum (dorsal view), and face. 1, 5, 9, 13, T. quadripunctata Thapa & Sohi, 1986 rec. nov.; 2, 6, 10, 14, T. eleganta sp. nov.; 3, 7, 11, 15, T. robusta sp. nov.; 4, 8, 12, 16, T. elongata sp. nov. Scale. 1–8, 0.5mm; 9–10, 0.2mm.
FIGURE 2 in Brazilian Diplosmittia Saether: D. trifida sp. n. and new records of D. plaumanni Pinho, Mendes & Andersen, 2009 (Diptera: Chironomidae)
FIGURE 2. Distribution map of D. plaumanni Pinho, Mendes & Andersen and D. trifida sp. n.
Figure Limopdorum abortivum, Corallorhiza trifida in Orchidaceae, Orchideen
<p>uploaded by Plazi</p>
Ambrosia trifida L. (BR0000011656531)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Ambrosia trifida L. (BR0000011655879)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Ambrosia trifida L. (BR0000011656418)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Ambrosia trifida L. (BR0000011560678)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Causes of differences in the distribution of the invasive plants Ambrosia artemisiifolia and Ambrosia trifida in Yili Valley, China
<p class="1"><i>Ambrosia artemisiifolia</i> and <i>Ambrosia trifida</i> are two species of very harmful and invasive plants of the same genus. However, it remains unclear why <i>A. artemisiifolia </i>is more widely distributed than <i>A. trifida</i> worldwide.</p> <p class="1">Distribution and abundance of these two species were surveyed and measured from 2010 to 2017 in the Yili Valley, Xinjiang, China. Soil temperature and humidity, main companion species, the biological characteristics in farmland ecotone, residential area, roadside and grassland, and water demand of the two species were determined and studied from 2017 to 2018.</p> <p class="1">The area occupied by <i>A. artemisiifolia </i>in the Yili Valley was more extensive than that of <i>A. trifida</i>, while the abundance of <i>A. artemisiifolia </i>in grassland was less than that of <i>A. trifida</i> at eight years after invasion. The interspecific competitive ability of two species were stronger than those of companion species in farmland ecotone, residential, and roadside. In addition, <i>A. trifida </i>had greater interspecific competitive ability than other plant species in grassland. The seed size and seed weight of <i>A. trifida</i> were five times or eight times those of <i>A.artemisiifolia</i>. When comparing the changes under simulated annual precipitation of 840 mm versus 280 mm, the seed yield per m<sup>2</sup> of <i>A. trifida</i> decreased from 50,185 to 19, while that of <i>A. artemisiifolia </i>decreased from 15,579 to 530.</p> <p>The differences in the distribution of the two species are mainly due to differences in interspecific competitive ability, seed size, and water dependence. The two species have stronger interspecific competitive ability than that of companion species, but <i>A. artemisiifolia </i>has a smaller seed size and stronger drought tolerance, which allows <i>A. artemisiifolia </i>to spread farther than <i>A. trifida</i>. The reason for wider distribution of <i>A. trifida</i> in grassland is that <i>A. trifida</i> has stronger interspecific competitive ability than <i>A. artemisiifolia </i>under sufficient water.</p>
Causes of differences in the distribution of the invasive plants Ambrosia artemisiifolia and Ambrosia trifida in Yili Valley, China
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FIGURE 1. A–E in Brazilian Diplosmittia Saether: D. trifida sp. n. and new records of D. plaumanni Pinho, Mendes & Andersen, 2009 (Diptera: Chironomidae)
FIGURE 1. A–E. Diplosmittia trifida sp. n., male adult. A, wing. B, anal point and tergite IX and dorsal aspect of left gonocoxite and gonostylus. C, hypopygium with anal point and tergite IX removed, left dorsal aspect, right ventral aspect. D, gonostylus, dorsal aspect. E. gonostylus, ventral aspect.
RNA-seq for rapid response to glyphosate in Ambrosia trifida
GEO Series GSE150914. Ambrosia trifida. 48 samples. Type: Expression profiling by high throughput sequencing.
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