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157 results for “Sapotaceae”

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Fig. 5 in Five new species of Englerophytum K. Krause (Sapotaceae) from central Africa

Fig. 5. – Field photographs of Englerophytum gigantifolium O. Lachenaud & L. Gaut. A. Young inflorescence on trunk; B. Leaves; C. Inflorescence on twigs; D. Flowers. [Lachenaud et al. 1253] [Photos: O. Lachenaud]

opencc-by-4.0Oct 2016View details →
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Fig. 4. – Englerophytum gigantifolium O. Lachenaud & L. Gaut. A in Five new species of Englerophytum K. Krause (Sapotaceae) from central Africa

Fig. 4. – Englerophytum gigantifolium O. Lachenaud & L. Gaut. A. Leafy twig; B. Detail of the lower surface of the leaf, showing venation; C. Apex of twig with stipules and base of petioles; D. Inflorescence; E. Flower, side view; F. Flower, viewed from above; G. Flower, longitudinal section; H. Longitudinal section of corolla, with one stamen removed. [Lachenaud et al. 1253, BR & BRLU] [Drawing: A. Fernandez]

opencc-by-4.0Oct 2016View details →
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Fig. 2 in Five new species of Englerophytum K. Krause (Sapotaceae) from central Africa

Fig. 2. – Field photographs of Englerophytum paludosum L. Gaut., Burgt & O. Lachenaud. A. Aerial roots at the base of the trunk; B. Leaves; C. Inflorescence; D. Apex of twig showing stipules; E. Flowers, Gabon; F. Flowers, Cameroon. [A, B, D: Lachenaud et al. 2010; C, F: van der Burgt 944; E: Maas et al. 10325] [Photos: B, F: X. van der Burgt, A, C, D: O. Lachenaud, E: P. Maas]

opencc-by-4.0Oct 2016View details →
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Fig. 1. – Englerophytum paludosum L in Five new species of Englerophytum K. Krause (Sapotaceae) from central Africa

Fig. 1. – Englerophytum paludosum L. Gaut., Burgt & O. Lachenaud. A. Twig with leaves and inflorescences; B. Detail of the lower surface of the leaf, showing venation (50 x 21 mm); C. Stipules; D. Flower bud, longitudinal section; E. Corolla in bud stage, longitudinal section; F. Open flower, side view; G. Open flower, viewed from above; H. Fruit; I. Seed, lateral view; J. Seed, ventral view. [A-G: van der Burgt 944, BR, K; H-J: Leontovitch 27, BR] [Drawing: L.T. Smith]

opencc-by-4.0Oct 2016View details →
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Fig. 3 in Five new species of Englerophytum K. Krause (Sapotaceae) from central Africa

Fig. 3. – Distribution maps of the five new species of Englerophytum K. Krause. A. Englerophytum. paludosum L. Gaut., Burgt & O. Lachenaud; B. Englerophytum gigantifolium O. Lachenaud & L. Gaut. (squares) and E. sylverianum Kenfack & L. Gaut. (circles); C. Englerophytum libenii O. Lachenaud & L. Gaut. (squares) and E. ferrugineum L. Gaut. & O. Lachenaud (circles). Open symbols indicate specimens associated with doubt.

opencc-by-4.0Oct 2016View details →
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Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)

Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A. Apex of branch; B. Branch; C. Old flower lacking corolla, dissected laterally; D. Old flower lacking corolla; E. Leaf, abaxial side; F. Leaf, adaxial side.

opencc-by-4.0May 2022View details →
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Fig. 1. – Capurodendron mikearum L. Gaut. & Boluda. A in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)

Fig. 1. – Capurodendron mikearum L. Gaut. & Boluda. A. Corolla, seen from inside; B. Corolla, seen from outside; C. Flower; D. Leaf, abaxial side; E. Leaf, adaxial side; F. Flower, dissected laterally; G. Flowering branch; H. Fruit; I. Seed.

opencc-by-4.0May 2022View details →
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Fig. 2. – Capurodendron mikearum L in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)

Fig. 2. – Capurodendron mikearum L. Gaut. & Boluda: A. Habit; B. Twig; C. Slashed bark; D. Fascicles of flowers; E. Flowers. Capurodendron namorokense L. Gaut. & Boluda: F. Slashed bark; G. Twig with two old flowers in an early fruit development stage. [A: Gautier 6329; B–E: Gautier 6339; F–G: Gautier et al. 6276] [Photos: L. Gautier]

opencc-by-4.0May 2022View details →
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Fig. 3 in Pichonia munzingeri (Sapotaceae), a new and rare micro-endemic species from New Caledonia

Fig. 3. – Pichonia munzingeri Gâteblé & Swenson. A. Flowering branch; B. Leaf with brochidodromous leaf venation; C. Lower surface of leaf showing an areolate higher leaf venation; D. Canaliculate petiole; E. Axillary solitary flowers; F. Flowers; G. Sepals, outer surface of an outer sepal (left), inner surface of an outer sepal (middle), and outer surface of an inner sepal (right); H. Open corolla with stamens and staminodes; I. Flower with sepals and corolla removed; J. Transection of fruit.

opencc-by-4.0Mar 2019View details →
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Fig. 2 in Pichonia munzingeri (Sapotaceae), a new and rare micro-endemic species from New Caledonia

Fig. 2. – Pichonia munzingeri Gâteblé & Swenson. A. Overview of a single shrub; B. Decumbent shrub with leaves from above, resembling those of Pycnandra francii (Guillaumin & Dubard) Swenson & Munzinger; C–E. Sessile flower; F. Immature fruit. [Photos: A–D, F: G. Gâteblé; E: G. Rochard]

opencc-by-4.0Mar 2019View details →
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Fig. 1 in Pichonia munzingeri (Sapotaceae), a new and rare micro-endemic species from New Caledonia

Fig. 1. – Pichonia munzingeri Gâteblé & Swenson. A. Overview of the Montagne des Sources fire on 29 December 2005, the arrow points to the fire in the Oumbéa creek; B. Upper population in degraded maquis vegetation showing Pteridium esculentum (G. Forst.) Cockayne flammable dead whitish fronds along the pipe to the water catchment, arrows point to ten individuals of Pichonia munzingeri. [Photos: G. Gâteblé]

opencc-by-4.0Mar 2019View details →
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Linked collectors and determiners for: Specimen references on the Sapotaceae family held by the TAN Herbarium.

Natural history specimen data linked to collectors and determiners held within, "Specimen references on the Sapotaceae family held by the TAN Herbarium". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/bddfce7e-8a19-4ee3-825c-b3d6e9e2220d">https://bionomia.net/dataset/bddfce7e-8a19-4ee3-825c-b3d6e9e2220d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/bddfce7e-8a19-4ee3-825c-b3d6e9e2220d">https://gbif.org/dataset/bddfce7e-8a19-4ee3-825c-b3d6e9e2220d</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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Linked collectors and determiners for: Database about reference specimens for medicinal plants, in the Sapotaceae family, owned by CNARP.

Natural history specimen data linked to collectors and determiners held within, "Database about reference specimens for medicinal plants, in the Sapotaceae family, owned by CNARP". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/65174786-b679-46f1-b5a4-34f466e9241a">https://bionomia.net/dataset/65174786-b679-46f1-b5a4-34f466e9241a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/65174786-b679-46f1-b5a4-34f466e9241a">https://gbif.org/dataset/65174786-b679-46f1-b5a4-34f466e9241a</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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Fig. 7 in One in, one out: Generic circumscription within subtribe Manilkarinae (Sapotaceae)

Fig. 7. Ancestral state reconstruction: A, Pubescence of the ovary; B, Number of ovary locules. Pie charts represent the marginal likelihood at ancestral nodes. The character matrix and support values for the inferred states are available in suppl. Table S2. Morphological traits were mapped on the dated tree topology pruned to 47 taxa. Node labels correspond to node number. — RN: Réserves Naturelles; SF: Service Forestier.

opencc-by-4.0Feb 2023View details →
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Fig. 11 in One in, one out: Generic circumscription within subtribe Manilkarinae (Sapotaceae)

Fig. 11. Ancestral state reconstruction: A, Corolla tube length to corolla lobe length ratio; B, Total length of the corolla. Color gradients along the branches represent interpolation of state changes. Probabilities of ancestral node states, their computed variances and 95% confidence intervals are presented in suppl. Table S3. Morphological traits were mapped on the dated tree topology pruned to 47 taxa. — RN: Réserves Naturelles; SF: Service Forestier.

opencc-by-4.0Feb 2023View details →
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Fig. 1. Species tree reconstruction inferred from ASTRAL-II using 89 specimens and 787 in One in, one out: Generic circumscription within subtribe Manilkarinae (Sapotaceae)

Fig. 1. Species tree reconstruction inferred from ASTRAL-II using 89 specimens and 787 individual gene trees obtained using RAxML. The node labels represent ASTRAL support values. Note that ASTRAL only calculates internal branch length and that tip lines are artificially fixed with the same length for all the specimens. Tip labels include the species names and the collector codes. Branch colors represent the traditional classification: Labramia (dark green), Manilkara (orange), Faucherea (yellow) and Labourdonnaisia (pink). The revised four major genetic clades are highlighted by a colored bar as follows: Labramia (dark green), Manilkara s.str. (orange), Faucherea and Labourdonnaisia (pink), and the Abebaia clade (blue). The main regions are indicated as follows: Afr: Africa; Ame: Americas; Com: Comoros; Ind: Indonesia; Mad: Madagascar; Msc: Mascarenes; Pac: Pacific Asia. RN: Réserves Naturelles; SF: Service Forestier.

opencc-by-4.0Feb 2023View details →
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Fig. 4. Maximum clade credibility and divergence time estimations from BEAST reconstruction using 89 specimens and 20 in One in, one out: Generic circumscription within subtribe Manilkarinae (Sapotaceae)

Fig. 4. Maximum clade credibility and divergence time estimations from BEAST reconstruction using 89 specimens and 20 genes. Background colors represent the four Manilkarinae clades. Node labels are given as the mean of node age estimates for the main clades, including their 95% HPD and posterior probability (PP). The latter are only shown when PP &lt;1. Epoch and ages in million years ago are represented at the bottom. Primary calibration points from fossils data are indicated with a red star, whereas clades constrained as monophyletic are labeled with an asterisk. RN: Réserves Naturelles; SF: Service Forestier.

opencc-by-4.0Feb 2023View details →
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Fig. 10 in One in, one out: Generic circumscription within subtribe Manilkarinae (Sapotaceae)

Fig. 10. Ancestral state reconstruction: A, Dorsal appendage length to corolla lobe length ratio; B, Staminode length to corolla lobe length ratio. Color gradients along the branches represent interpolation of state changes. Probabilities of ancestral node states, their computed variances and 95% confidence intervals are presented in suppl. Table S3. Morphological traits were mapped on the dated tree topology pruned to 47 taxa. — RN: Réserves Naturelles; SF: Service Forestier.

opencc-by-4.0Feb 2023View details →
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Fig. 3. – Capurodendron namorokense L. Gaut. & Boluda. A in Two further new species in the highly-diverse Malagasy endemic genus Capurodendron (Sapotaceae)

Fig. 3. – Capurodendron namorokense L. Gaut. &amp; Boluda. A. Apex of branch; B. Branch; C. Old flower lacking corolla, dissected laterally; D. Old flower lacking corolla; E. Leaf, abaxial side; F. Leaf, adaxial side. [Gautier et al. 6276] [Drawing: G. Loza]

opencc-by-4.0May 2022View details →
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Fig. 1 in Présence du genre Pradosia (Sapotaceae) en Afrique: description d'une nouvelle espèce, P. spinosa

Fig. 1. — Pradosia spinosa Ewango &amp; Breteler: A, rameau avec inflorescences; B, partie d'un rameau fleuri; C-E, épines du tronc; F, fleur; G, calice; H, corolle avec étamines; J, fleur coupe longitudinale; K, pistil; L, fruit; M, graine. (A-C, F-J, Ewango 631; D, Ewango 628; E, K-L Ewango 673). Dessiné par H. DE VRIES.

opencc-by-4.0Dec 2001View details →

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