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599 results for “Caesalpinioideae”
FIG. 3. — Storckiella pancheri Baill. subsp. acuta I.C in Synopsis of Storckiella Seem. (Fabaceae, Caesalpinioideae) with description of a new species and a new subspecies from New Caledonia
FIG. 3. — Storckiella pancheri Baill. subsp. acuta I.C.Nielsen, Labat & Munzinger: A, distal portion of flowering branch; B, lateral branch of inflorescence; C, flower; D, leaf of form with cordate leaflets; E, young pod. A-C, Labat et al. 3490 (isotype, AAU); D, McPherson 2830 (AAU); E, McPherson 3690 (AAU).
FIG. 4 in Cryptosepalum korupense Burgt, sp. nov. (Leguminosae, Caesalpinioideae), a tree species from the Southwest Region in Cameroon
FIG. 4. ― Distribution of 14 trees of Cryptosepalum korupense Burgt, sp. nov., in primary rainforest in Korup National Park. The size of a dot represents the trunk diameter at 1.3 m in three size classes: 10-30, 30-50 and 50-70 cm. The lines represent small streams. All trees grow on well-drained soil.
FIG. 2 in Cryptosepalum korupense Burgt, sp. nov. (Leguminosae, Caesalpinioideae), a tree species from the Southwest Region in Cameroon
FIG. 2. ― Cryptosepalum korupense Burgt, sp. nov.: A, twig and infructescences with very young fruits; B, leaf upper surface; C, leaflet lower surface;D, stipule from upper part of twig (above) and lower part of twig (below);E, flower;F, adaxial petal; G, gynoecium;H, flower bract; J, hypanthium and sepals; K, infructescence with fruit; L, seeds.A, from van der Burgt 922; B-D, from van der Burgt 848; E-J, from Motoh 6; K, from van der Burgt 931; L, from Motoh 3. Scale bars:A, B, 2 cm; C, E, F, G, H, 2 mm; D, 5 mm; J, 1 mm; K, L, 2 cm. Drawn by Xander van der Burgt.
FIG. 1 in Cryptosepalum korupense Burgt, sp. nov. (Leguminosae, Caesalpinioideae), a tree species from the Southwest Region in Cameroon
FIG. 1. ― Cryptosepalum korupense Burgt, sp. nov.: A, twigs and leaves; B, infructescence with two fruits; C, flushing leaves; D, trunk of a tree of 88 cm diameter at 1.3 m; A, C, from van der Burgt 848; B, from van der Burgt 931; D, from van der Burgt 941. Photos by Xander van der Burgt.
Data from: Species Delimitation of Endemic Atlantic Forest Inga subnuda (Leguminosae, Caesalpinioideae, mimosoid clade) Subspecies Based on Morphological, Ecological and Palaeoecological Data
<p><i>Inga subnuda</i> Salzm. ex Benth. are one of 31 endemic species in the Brazilian Atlantic Forest. Intermixed leaf and floral traits have made morphological distinctiveness difficult, and its current taxonomic treatment considers <i>I. subnuda</i> as one species with two subspecies. We aim to explore different lines of evidence to disentangle and clarify species boundaries in these two subspecies. Morphological variation and bioclimatic data of the two subspecies of the complex were assessed by using multivariate morphometric analyses and ecological niche modeling. Morphological quantitative characters allowed the recognition of different groups. The climatic space was similar but not identical, and the recent climatic cycles that could have shaped the current distribution are discussed. The results of our integrative study suggest regard both subspecies as two different species. Moreover, we propose a change in status of <i>I. subnuda subsp. luschnathiana</i> to the rank of species. The new up-ranked taxon is described and illustrated.</p>
Fig. 1 in Peltophorum dasyrhachis (Miq.) Kurz: a new record of a Southeast Asian species of Fabaceae (Caesalpinioideae) naturalized in northwestern Madagascar
Fig. 1. – Peltophorum & al. 1177). [Photo: C. Davidson]
FIG. 3 in Cryptosepalum korupense Burgt, sp. nov. (Leguminosae, Caesalpinioideae), a tree species from the Southwest Region in Cameroon
FIG. 3. ― Distribution of Cryptosepalum korupense Burgt, sp. nov.
FIG. 5 in Cryptosepalum korupense Burgt, sp. nov. (Leguminosae, Caesalpinioideae), a tree species from the Southwest Region in Cameroon
FIG. 5. ― Distribution of Cryptosepalum staudtii Harms.
Data for: A phylogenomic investigation of species diversity, morphology, and biogeography in <em>Neptunia</em> Lour. (Fabaceae: Caesalpinioideae: Mimoseae)
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Data from: Species Delimitation of Endemic Atlantic Forest Inga subnuda (Leguminosae, Caesalpinioideae, mimosoid clade) Subspecies Based on Morphological, Ecological and Palaeoecological Data
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A revised subgeneric classification of the neotropical genus Zapoteca (Caesalpinioideae; Fabaceae)
<p><span><span><span><span><span><span><span><span><span><span><span>The subgeneric classification of the neotropical legume genus <i>Zapoteca</i> is revised based on an analysis of the nuclear ETS and ITS, and the plastid <i>trnL</i>-<i>trnF</i> DNA-regions. Subgenus <i>Ravenia</i> is included in subg. <i>Zapoteca</i>, <i>Z</i>. <i>quichoi</i> is transferred from subg. <i>Amazonica</i> to subg. <i>Zapoteca</i>, <i>Z</i>. <i>sousae</i> is included in subg. <i>Zapoteca</i> and one new subgenus, subg. <i>Subamazonica</i>, is described to accommodate the species <i>Z</i>. <i>filipes</i> and <i>Z</i>. <i>scutellifera</i>. A key to the subgenera is presented.</span></span></span></span></span></span></span></span></span></span></span></p>
FIGURE 4 in A new Afrotropical genus and species of Tetrastichinae (Hymenoptera: Eulophidae) inducing galls on Bikinia (Fabaceae: Caesalpinioideae) and a new species of Ormyrus (Hymenoptera: Ormyridae) associated with the gall
FIGURE 4. Foliar gall ecology of Bikinia letestui letestui. (A) workers of Crematogaster sp. at nectaries on basal leaflets of modified leaves; (B) typical gall of Gallastichus mutuus Rasplus & LaSalle gen. nov. & sp. nov. formed in extrafloral nectaries of the basal leaflets of modified leaves; (C) Ormyrus nkoloensis Rasplus sp. nov. females ovipositing on a damaged section of the gall surface; (D) Ormyrus nkoloensis Rasplus sp. nov. female ovipositing.
FIGURE 3 in A new Afrotropical genus and species of Tetrastichinae (Hymenoptera: Eulophidae) inducing galls on Bikinia (Fabaceae: Caesalpinioideae) and a new species of Ormyrus (Hymenoptera: Ormyridae) associated with the gall
FIGURE 3. Ormyrus nkoloensis Rasplus sp. nov. paratype. FEMALE: (A) head, frontal view; (B) habitus; (C) gaster, dorsal view; (D) head and mesosoma, lateral view; (E) gaster, lateral view; (F) head and mesosoma, dorsal view; (G) right wings.
FIGURE 1 in A new Afrotropical genus and species of Tetrastichinae (Hymenoptera: Eulophidae) inducing galls on Bikinia (Fabaceae: Caesalpinioideae) and a new species of Ormyrus (Hymenoptera: Ormyridae) associated with the gall
FIGURE 1. Gallastichus mutuus Rasplus & LaSalle gen. nov. & sp. nov. paratype. FEMALE: (A) head, frontal view; (B) habitus; (C) antenna. MALE: (D) antenna; (E) habitus.
FIGURE 2 in A new Afrotropical genus and species of Tetrastichinae (Hymenoptera: Eulophidae) inducing galls on Bikinia (Fabaceae: Caesalpinioideae) and a new species of Ormyrus (Hymenoptera: Ormyridae) associated with the gall
FIGURE 2. Gallastichus mutuus Rasplus & LaSalle gen. nov. & sp. nov. paratype, female. (A) mesosoma, dorsal view; (B) metasoma, dorsal view; (C) scutellum, metanotum and propodeum, dorsal view; (D) right wings.
Fig. 1 in Taxonomic revision of Australian Erythrophleum (Fabaceae: Caesalpinioideae) including description of two new species
Fig. 1. Maximum-likelihood tree of aligned ribosomal sequences of Erythrophleum, rooted with Pachyelasma tessmannii. Nodal support values are bootstrap support values (RAxML) followed by posterior probabilities (MrBayes). Indel positions in ITS1 are indicated by grey bars, and numbered as in the text (see Results). Three clades (E. arenarium, E. chlorostachys and E. pubescens) match species designations from morphology, as described in the taxonomy section. Within the sampled Erythrophleum taxa, the three Australian species form a clade, and there is weak support for a sister relationship between E. arenarium and E. chlorostachys. The intraspecific variation within E. pubescens lacks support, and is not considered taxonomically informative. Sample names indicate species, state, location, collector and number, and GenBank or ENA accession number.
Fig. 3 in Taxonomic revision of Australian Erythrophleum (Fabaceae: Caesalpinioideae) including description of two new species
Fig. 3. Erythrophleum chlorostachys: (a, b) habit and habitat; (c) bark; (d) inflorescence with very young buds; (e) flower buds; (f) flowering inflorescence (g) portion of flowering inflorescence showing shortly pedicellate flowers, glabrous axis and glabrous calyx; (h) glabrous new adult growth; (i) pod; (j) seed. Vouchers: King River, Kununurra, WA, G.Byrne 3693, PERTH (a, c–g); Ragged Range, WA, not vouchered (b); Katherine, NT, L.G.Adams 1653, NSW (h); 'Katherine National Park', NT, M.D.Tindale 6040 & C.R.Dunlop, NSW (i, j). Images by G. Byrne (a, c–g), and R. L. Barrett (b, h–j).
Fig. 2 in Taxonomic revision of Australian Erythrophleum (Fabaceae: Caesalpinioideae) including description of two new species
Fig. 2. Erythrophleum arenarium: (a) habitat and habit; (b) bark; (c) fruiting branchlet; (d) slightly glaucous leaf; (e) seedling; (f) portion of inflorescence; (g) inside view of legume with attached seeds; (h) young sapling with main stems killed by fire and multiple stems resprouting. Vouchers: north of Pardoo Roadhouse, WA, not vouchered (a, b, d); north of Dampier Downs Station, WA, R.L.Barrett & M.Gresser RLB 9080, PERTH (c, e, g, h); Anna Plains, WA, G.Byrne 1271, PERTH (f). Images by R. L. Barrett (a–e, g, h), and G. Byrne (f).
FIGURE 24 in New taxonomic circumscription to Chamaecrista ser. Setosae (H.S. Irwin & Barneby) H.S. Irwin & Barneby (Leguminosae, Caesalpinioideae)
FIGURE 24: Distribution maps of the species of Ch. ser. Setosae. A. Chamaecrista aurizerdae, Ch. campicola, Ch. coradinii; B. Ch. multiseta, Ch. obtecta. C. Ch. ochrosperma, Ch. orenicensis. D. Ch. scabra, Ch. setosa.
FIGURE 21 in New taxonomic circumscription to Chamaecrista ser. Setosae (H.S. Irwin & Barneby) H.S. Irwin & Barneby (Leguminosae, Caesalpinioideae)
FIGURE 21: Chamaecrista setosa: A, B. and C. Diversity of habits and habitats, note the variation in habit and growth and effuse inflorescence; D. Portion of the main stem, showing the plagiotropic leaves and vinaceous trichomes; E. Detail of indumentum of the branch; F. Foliage, note the ascending leaves; G. Leaf.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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