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142 results for “Papaveraceae”

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Papaver dubium (Papaveraceae) - leaf - unspecified

Image of Papaver dubium (Papaveraceae) - leaf - unspecified

opencc-by-nc-sa-4.0Dec 2013View details →
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Papaver dubium (Papaveraceae) - leaf - margin of upper + lower surface

Image of Papaver dubium (Papaveraceae) - leaf - margin of upper + lower surface

opencc-by-nc-sa-4.0Dec 2013View details →
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Papaver dubium (Papaveraceae) - leaf - unspecified

Image of Papaver dubium (Papaveraceae) - leaf - unspecified

opencc-by-nc-sa-4.0Dec 2013View details →
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Papaver dubium (Papaveraceae) - inflorescence - closeup of flower interior

Image of Papaver dubium (Papaveraceae) - inflorescence - closeup of flower interior

opencc-by-nc-sa-4.0Dec 2013View details →
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Papaver dubium (Papaveraceae) - inflorescence - frontal view of flower

Image of Papaver dubium (Papaveraceae) - inflorescence - frontal view of flower

opencc-by-nc-sa-4.0Dec 2013View details →
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Corydalis austroshaanxiensis sp. nov. (Papaveraceae), a neglected species from Shaanxi, China, and a revised circumscription for C. pseudoincisa C.Y. Wu, Z.Y. Su & Lidén

<p><span><i>Corydalis austroshaanxiensis</i>, a new species of <i>Corydalis</i> sect. <i>Incisae</i> Fedde (Papaveraceae) from Shaanxi, China, is described. It is most similar to <i>C. pseudoincisa</i> C.Y. Wu, Z.Y. Su &amp; Lidén, but differs in the outer petals retuse to emarginate, with dorsal crest (vs acuminate, rounded to shortly mucronate, without crest), lowermost pedicels that are conspicuously elongating and basally recurved in fruit (vs slightly elongating, straight, erect-spreading), sepals that are 3–4 × ca. 3 mm (vs 1.5–2 × ca. 1.5 mm), lower petals that usually have a linear reddish tint at base (vs without reddish tint), capsules that are narrowly to broadly elliptic to obovoid (vs linear to narrowly oblong), and by the racemes corymbose, forming a very dense cluster of upper fruits (vs racemes not corymbose-like, flower dense in anthesis, lax in fruit). The original materials, which were referred to <i>C. pseudoincisa</i> were mosaic, and the original descriptions and illustrations annotated as <i>C. pseudoincisa</i> only fit in part <i>C. pseudoincisa</i>. A revised circumscription for <i>C. pseudoincisa </i>was given in this study. We suggest the need for caution when identifying additional specimens as paratypes that differ from holotype in distinct characters.</span></p>

opencc-zeroSep 2022View details →
zenodo32/100

Fig. 1 in Refugia and geographic barriers of populations of the desert poppy, Hunnemannia fumariifolia (Papaveraceae)

Fig. 1 Chronogram of the Papaveraceae family based on a Bayesian approach. Gray bars 95 % confidence intervals for node age estimates. Brackets identify Eucotyledoneae clade, Ranunculales clade, Proteales clade, Papaveracae family clade and the H/E Hunnemannia/

opennotspecifiedApr 2012View details →
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Fig. 6 a–d. Ecological niche models for H. fumariifolia populations. a in Refugia and geographic barriers of populations of the desert poppy, Hunnemannia fumariifolia (Papaveraceae)

Fig. 6 a–d. Ecological niche models for H. fumariifolia populations. a Prediction of suitable habitat in the current environment. b Prediction projected onto past climatic layers (LGM; CCSM). c Prediction under

opennotspecifiedApr 2012View details →
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Fig. 3 in Refugia and geographic barriers of populations of the desert poppy, Hunnemannia fumariifolia (Papaveraceae)

Fig. 3 Geographical distribution of the population of H. fumariifolia. Population numbers correspond to those in Sosa et al. (2009). Enclosed areas correspond to clades in Fig. 1

opennotspecifiedApr 2012View details →
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Fig. 4 in Refugia and geographic barriers of populations of the desert poppy, Hunnemannia fumariifolia (Papaveraceae)

Fig. 4 Chronogram based on Bayesian approach of the H. fumariifolia phylogeography. Gray bars 95 % confidence intervals for node age estimates. Brackets identify clades as given in Fig 2. Circled letters at

opennotspecifiedApr 2012View details →
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FIGURE 1 in Dicranostigma platycarpum, a new synonym of Dicranostigma erectum (Papaveraceae)

FIGURE 1. Photos of specimens and plants in the field. A. Holotype of Dicranosgtigma erectum; B. Holotype of D. platycarpum; C/D. Plant and flower of D. erectum from Zhugu Mountain in Lijiang, Yunnan, 3700 m, 21 August 2013.

opennotspecifiedOct 2015View details →
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FIGURE 3. A. Corydalis hualongshanensis. B in Corydalis hualongshanensis, a new species of Corydalis sect. Fumarioides (Papaveraceae) from Shaanxi, China

FIGURE 3. A. Corydalis hualongshanensis. B(1–3). Corydalis pseudofargesii. 1. flower; 2. stigma; 3. fruit. C(1–3). Corydalis fargesii. 1. flower; 2. stigma; 3. fruit. D(1–3). Corydalis shennongensis. 1. flower; 2. stigma; 3. fruit. Photo credits: D. Wang.

opennotspecifiedMay 2017View details →
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FIGURE 2. A–G in Corydalis hualongshanensis, a new species of Corydalis sect. Fumarioides (Papaveraceae) from Shaanxi, China

FIGURE 2. A–G: Habit and morphology of Corydalis hualongshanensis. A. habit; B. inflorescence; C. fruit; D. sepal; E. the apical part of outer petal; F. Fruit; G. 1–8: 1. bract; 2. spur and nectary; 3. lower petal (left: adaxial view, right: abaxial view); 4. inner petal (left: adaxial view, right: abaxial view); 5. stamens (left: abaxial view, right: adaxial view); 6. pistil; 7. stigmas; 8. seed. Photo credits: D. Wang.

opennotspecifiedMay 2017View details →
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FIGURE 1. Corydalis hualongshanensis. A in Corydalis hualongshanensis, a new species of Corydalis sect. Fumarioides (Papaveraceae) from Shaanxi, China

FIGURE 1. Corydalis hualongshanensis. A. Plant showing habit; B. Bract; C. Flower; D. lower petal (left: adaxial view, right: abaxial view); E. inner petals (left: adaxial view, right: abaxial view); F. stamen; G. pistil; H. stigmas; I. seed. Drawn by D. Wang from D. Wang 160437 (CCNU).

opennotspecifiedMay 2017View details →
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FIGURE 4 in Glaucium alakirensis (Papaveraceae), a new species from Southern Anatolia, Turkey

FIGURE 4. SEM photographs of the pollen grains of Glaucium alakirensis (A–B), G. leiocarpum (C–D) and G. secmenii (E–F). (Specimens examined A–C from Aykurt 4412, D–F from K. Yıldız 604, G–H from K. Yıldız 587).

opennotspecifiedFeb 2017View details →
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FIGURE 2 in Glaucium alakirensis (Papaveraceae), a new species from Southern Anatolia, Turkey

FIGURE 2. Field photographs of Glaucium alakirensis (A. Habit; B. Flower; C. Siliquae; D. Habitat; Photos: İ.G.Deniz).

opennotspecifiedFeb 2017View details →
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FIGURE 1 in Glaucium alakirensis (Papaveraceae), a new species from Southern Anatolia, Turkey

FIGURE 1. Habit and flower details of A–C: Glaucium alakirensis (holotype); D: G. leiocarpum (K. Yıldız 604) and E: G. secmenii (K. Yıldız 587).

opennotspecifiedFeb 2017View details →
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FIGURE 5 in Glaucium alakirensis (Papaveraceae), a new species from Southern Anatolia, Turkey

FIGURE 5. SEM photographs of seed coat of Glaucium alakirensis (A–C), G. leiocarpum (D–F) and G. secmenii (G–I). (A–C from Aykurt 4412, D–F from K. Yıldız 604, G–H from K. Yıldız 587).

opennotspecifiedFeb 2017View details →
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FIGURE 3 in Corydalis ternatifolia belongs to C. sect. Asterostigmata, not C. sect. Incisae (Papaveraceae): Evidence from morphological and phylogenetic study

FIGURE 3. Phylogram from Bayesian inference of concatenated matK gene and trnG intron. Numbers above branches are posterior probabilities (PP) and those below branches indicate bootstrap (BS) values for branch support. The accessions with an asterisk (*) in front of the scientific names were newly derived in our study.

opennotspecifiedDec 2018View details →
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FIGURE 2 in Corydalis ternatifolia belongs to C. sect. Asterostigmata, not C. sect. Incisae (Papaveraceae): Evidence from morphological and phylogenetic study

FIGURE 2. Phylogram from Bayesian inference of the nuclear NADPH gene. Numbers above branches are posterior probabilities (PP) and those below branches indicate bootstrap (BS) values for branch support. The accessions with an asterisk (*) in front of the scientific names were newly derived in our study.

opennotspecifiedDec 2018View details →

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