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4,287 results for “Asteraceae”
FIGURE 3 in Taxonomic revision of the genus Calendula (Asteraceae) in the Canary Islands
FIGURE 3. Boxplots representing the variability of fruit quantitative characters in Calendula species. Different letters reveal statistical differences at P <0.05; n.s. means that no statistical differences were found.
FIGURE 5 in Taxonomic revision of the genus Calendula (Asteraceae) in the Canary Islands
FIGURE 5. Geographic distribution of Calendula in the Canary Islands from herbarium specimens and from collected material in the 2014 and 2022 field expeditions. A. general view of the Canary Islands; B. La Palma; C. El Hierro; D. La Gomera; E. Tenerife; F. Gran Canaria; G. Fuerteventura; H. Lanzarote. The triangles represent herbarium specimens with a database entry, but whose identifications were not confirmed; the colour code is the same for triangles and circles; all forms of C. arvensis are under the same colour.
FIGURE 9 in Taxonomic revision of the genus Calendula (Asteraceae) in the Canary Islands
FIGURE 9. Calendula sventenii (Silveira, P., Simão, I. and Reyes-Bet. 3383, 3384.2, 3391). A. habit (3384.2); B, C. flowering capitula (3391); D. fruiting capitulum (3383).
FIGURE 8 in Taxonomic revision of the genus Calendula (Asteraceae) in the Canary Islands
FIGURE 8. Calendula ricardoi (Silveira, P., Simão, I. and Reyes-Bet. 3327.j, 3327.l). A. habit (observation on site); B. flowering and fruiting capitula (3327.j); C. fruiting capitulum (3327.l).
FIGURE 1 in Aulacidea manchuria Nastasi sp. nov., a new herb gall wasp from China (Hymenoptera: Cynipoidea: Aulacideini), with commentary on hawkweed (Asteraceae: Hieraciinae) gall wasps
FIGURE 1. Aulacidea manchuria Nastasi sp. nov., holotype female (CASENT 8520652). A: lateral habitus. B: head, dorsal. C: proximal antennomeres. D: mesosoma, dorsal.
Fig. 6 in Comportamento germinativo das sementes de Solidago chilensis Meyen (Asteraceae)
Fig. 6. Comprimento da raiz principal em plântulas obtidas da germinação das sementes de Solidago chilensis Meyen em escuro contínuo. Médias não diferem pelo teste de Tukey (p≤0,05). Santa Maria/RS, 2013.
Fig. 2 in Comportamento germinativo das sementes de Solidago chilensis Meyen (Asteraceae)
Fig. 2. Índice de velocidade de germinação (IVG) das sementes de Solidago chilensis Meyen. Letras maiúsculas indicam comparação entre temperaturas dentro do mesmo tempo de embebição e letras minúsculas indicam comparação entre os tempos de embebição dentro da mesma temperatura (Teste de Tukey, p≤0,05).
Fig. 1 in Comportamento germinativo das sementes de Solidago chilensis Meyen (Asteraceae)
Fig. 1. Germinação das sementes de Solidago chilensis Meyen. Letras indicam comparação entre tempos de embebição dentro da mesma temperatura (Teste de Tukey, p≤0,05).
Fig. 5 in Comportamento germinativo das sementes de Solidago chilensis Meyen (Asteraceae)
Fig. 5. Germinação das sementes de Solidago chilensis Meyen. A- Percentagem de germinação. B- Índice de velocidade de germinação (IVG). Letras maiúsculas indicam comparação entre temperaturas dentro do mesmo tempo de embebição, enquanto letras minúsculas indicam comparação entre os tempos de embebição dentro da mesma temperatura (Teste de Tukey, p≤0,05).
Fig. 4 in Comportamento germinativo das sementes de Solidago chilensis Meyen (Asteraceae)
Fig. 4. Comprimento da raiz principal em plântulas obtidas da germinação das sementes de Solidago chilensis Meyen em fotoperíodo de 16 horas. Letras maiúsculas indicam comparação entre temperaturas dentro do mesmo tempo de embebição, enquanto letras minúsculas indicam comparação entre os tempos de embebição dentro da mesma temperatura (Teste de Tukey, p≤0,05).
Fig. 3 in Comportamento germinativo das sementes de Solidago chilensis Meyen (Asteraceae)
Fig. 3. Germinação das sementes de Solidago chilensis Meyen. A- Percentagem de germinação. B- Índice de velocidade de germinação (IVG). Letras maiúsculas indicam comparação entre temperaturas dentro do mesmo tempo de embebição e letras minúsculas indicam comparação entre os tempos de embebição dentro da mesma temperatura (Teste de Tukey, p≤0,05).
Figure 1 in Interaction between Tephritidae (Insecta, Diptera) and plants of the family Asteraceae: new host and distribution records for the state of Rio Grande do Sul, Brazil
Figure 1. Localities in Rio Grande do Sul, Brazil, where the fauna of Tephritidae (Dip* tera) from capitula of Asteraceae was sampled.
FIGURE 1 in A revised infrageneric classification for Brickellia (Asteraceae, Eupatorieae)
FIGURE 1. Leaf of Brickellia cordifolia showing the character trait of naked basal veins (arrows; key couplet 5) that characterizes B. sect. Brickellia.
FIGURE 4 in Taraxacum pudicum, a new apomictic microspecies of T. section Erythrosperma (Asteraceae) from Central Europe
FIGURE 4. Distribution of Taraxacum pudicum in Central Europe. Black dots represent the well-documented occurrence of T. pudicum in the region; grey dots represents the samples likely belonging to T. pudicum [T. cf. pudicum].
FIGURE 3 in Taraxacum pudicum, a new apomictic microspecies of T. section Erythrosperma (Asteraceae) from Central Europe
FIGURE 3. Capitulum of Taraxacum pudicum and allied species. A, T. pudicum (Czechia, Kravsko-Bojanovice, type locality); B, T. cristatum (Czechia, Bzenec); C, T. discretum (the Netherlands, Schiermonnikoog); D, yet unnamed morphotype of T. scanicum agg. (Czechia, Bzenec).
FIGURE 3 in A "rediscovered" record of Ainsliaea brandisiana (Asteraceae) from Thailand and its biogeographic significance
FIGURE 3. Morphological details of the floret of Ainsliaea brandisiana. A. Floret. B. Achene. C. Pappus. D. Apical anther appendages apiculate (indicated in arrows). E. Style branches.
FIGURE 2 in A "rediscovered" record of Ainsliaea brandisiana (Asteraceae) from Thailand and its biogeographic significance
FIGURE 2. Ainsliaea brandisiana in the field. A. Habit. B. Capitulum. C. Leaf blade. D. Cordate leaf base (adixial). E. Cordate leaf base (abaxial). F. Root and rhizome. G. Habitat.
FIGURE 1 in A "rediscovered" record of Ainsliaea brandisiana (Asteraceae) from Thailand and its biogeographic significance
FIGURE 1. Line drawings of Ainsliaea brandisiana. A. Habit. B. Capitulum. C. Floret. D. Style branches. Drawn by T. T. Zhou from T. G. Gao5886.
FIGURE 4 in A "rediscovered" record of Ainsliaea brandisiana (Asteraceae) from Thailand and its biogeographic significance
FIGURE 4. Distribution map of Ainsliaea brandisiana and the hypothetical plant migration route connecting southeastern Myanmar, northeastern Thailand and the Hengduan Mountains. "●" represents the locality of the type of A. brandisiana (Myanmar, Martaban). "▲"represents the newly recorded locality of A. brandisiana (Thailand, Phu Soi Dao). The three circles represent southeastern Myanmar, northeastern Thailand and the Hengduan Mountains respectively. The bold lines between the three of them represent the hypothetical plant migration route.
FIGURE 4 in Diplazoptilon (Asteraceae) is merged with Saussurea based on evidence from morphology and molecular systematics
FIGURE 4. Living plant of Saussurea picridifolia. From Zayü, Xizang, China (FLPH Tibet Exped. 12-1382), photographed by Yousheng Chen on 16 September 2012.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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