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2,164 results for “Fabaceae”
Medicago lupulina (Fabaceae) - herbaceous angiosperms - whole plant - in flower - general view
Image of Medicago lupulina (Fabaceae) - herbaceous angiosperms - whole plant - in flower - general view
Medicago lupulina (Fabaceae) - herbaceous angiosperms - inflorescence - whole - unspecified
Image of Medicago lupulina (Fabaceae) - herbaceous angiosperms - inflorescence - whole - unspecified
Dataset for Gelatinous fibers develop asymmetrically to support bends and coils in common bean vines (Phaseolus vulgaris L., Fabaceae)
<ol> <li>Internode_lengths_AveragePerGroup_Stage5.csv = averaged internode lengths for each treatment groups at stage 5 (plastochron 9). Data represented in Appendix S2.</li> <li>Internode_lengths_Stage5.csv = data of all internodes lengths per individual plant at stage 5 (plastochron 9). Data represented in Appendix S2.</li> <li>InternodeLengths_allStages.csv = internode lengths through 5 stages (0-9 plastochon). Data represented in Appendix S1.</li> </ol> <p>Associated scripts: https://github.com/angelique-acevedo/Common-Bean-Analysis</p>
Figure 3 in You are what you eat: native versus exotic Crotalaria species (Fabaceae) as host plants of the Ornate Bella Moth, Utetheisa ornatrix (Lepidoptera: Erebidae: Arctiinae)
Figure 3. Rates of development of Utetheisa ornatrix larvae on different species of native and exotic Crotalaria in Florida and effect of leaves versus beans in the diet (see text for details): (A) partial development of larvae on the native C. rotundifolia versus exotic C. lanceolata; (B, C) partial development of larvae on the native C. pumila versus exotic C. lanceolata; (D, E) development of larvae on the exotic C. spectabilis/retusa versus exotic C. lanceolata; (F) development of larvae on C. incana (native to U. ornatrix range in the Neotropics, but introduced to Florida) versus exotic C. lanceolata. (F – based on data from Sourakov and Locascio 2013).
Figure 4 in You are what you eat: native versus exotic Crotalaria species (Fabaceae) as host plants of the Ornate Bella Moth, Utetheisa ornatrix (Lepidoptera: Erebidae: Arctiinae)
Figure 4. Fore wing size of Utetheisa ornatrix raised on different species of native and exotic Crotalaria and effect of leaves versus beans in the diet (see text for details): (A) Fore wing size of
Figure 2 in You are what you eat: native versus exotic Crotalaria species (Fabaceae) as host plants of the Ornate Bella Moth, Utetheisa ornatrix (Lepidoptera: Erebidae: Arctiinae)
Figure 2. (A) Understorey of the Florida hammock habitat occupied with invasive exotic Crotalaria spectabilis; (B) a clearing in a secondary Florida habitat, overgrown with exotic Crotalaria pallida; (C, D) mature larvae of U. ornatrix prefer pods of C. spectabilis over leaves; (E) carpenter ants are attracted to the extrafloral nectaries of C. lanceolata; (F, G) larva of U. ornatrix on C. pumila and a pod destroyed by it; (H) mature larva of U. ornatrix inside a pod of C. incana; (I, J) pods of C. pallida are numerous and large and provide ample food and shelter for U. ornatrix; (K) empty pods of C. spectabilis in December with all of their seeds consumed by U. ornatrix larvae; (L) in December, C. retusa becomes the preferred hostplant of U. ornatrix in the C. spectabilis-dominated habitat, when the latter declines; similarly, C. pumila becomes preferred for oviposition in C. lanceolata-dominated habitat; (M) the seeds of C. retusa are well protected by thick walls of the pod; here, a third instar larva is unable to penetrate it; (N) onset of the ultimate instar; (O–Q) prepupa-to-pupa development of U. ornatrix.
Figure 1 in You are what you eat: native versus exotic Crotalaria species (Fabaceae) as host plants of the Ornate Bella Moth, Utetheisa ornatrix (Lepidoptera: Erebidae: Arctiinae)
Figure 1. (A) In the wild population of U. ornatrix, adult moth landing on the flower of exotic Crotalaria retusa, Micanopy, Florida; (B) a typical size of a moth from a wild population at Cross Creek, Florida, resulting from larval feeding on C. rotundifolia leaves (top) and its offspring raised in the laboratory on beans of C. spectabilis (bottom) (fore wing length = 20 mm); (C) a single egg batch split in two (experimental and control groups) prior to hatching; (D) hostplant preference test using mature larvae of U. ornatrix inside a tray; (E) differences in pod size and seed volume in six Crotalaria species found in Florida; (F) difference in sprouting rate under similar conditions: native Crotalaria pumila shows much slower sprouting rate than introduced invasive Crotalaria species; (G) upland pine habitat on the University of Florida campus overtaken by thousands of exotic Crotalaria lanceolata plants with a sporadic native C. pumila in the midst (October 2014); (H) U. ornatrix eggs on C. lanceolata; (I) first instar larvae; (J) third instar larva.
WCVP: Fabaceae checklist
<p>A preliminary, global, community endorsed checklist for Leguminosae (Fabaceae).</p> <p> </p> <p>The World Checklist of Vascular Plants (WCVP) is a global consensus view of all known vascular plant species (flowering plants, conifers, ferns, clubmosses and firmosses). The Fabaceae subset contains names that have been peer reviewed by external experts from the Legume Phylogeny Working Group’s (LPWG) and internal experts, as well as names that are in the process of being edited and reviewed. WCVP aims to represent a global consensus view of current plant taxonomy by reflecting the latest published taxonomies while incorporating the opinions of taxonomists based around the world, and following the International Code of Nomenclature for algae, fungi, and plants.<br> </p> <p>WCVP is built on the nomenclatural data provided by the International Plant Names Index (IPNI), which is the product of a collaboration between The Royal Botanic Gardens, Kew, The Harvard University Herbaria, and the Australian National Herbarium, combined with the taxonomic data provided by an international collaborative programme with a large number of contributors from around the world. Our thanks go to the compilers and editors of IPNI and WCVP and in particular the thousands of users who have contributed corrections over the past decades, improving those data for the global user community.<br> </p> <p>We acknowledge the long term contribution of the International Legume Database and Information Service (ILDIS), which provided a species naming infrastructure that was used over many decades by the legume systematics community and which remains the foundation for the taxonomy of many legume species.<br> </p> <p>The WCVP Fabaceae checklist includes the data from WorldWideWattle (Maslin and Wilson, 2024). Donald Hobern is acknowledged for his technical assistance with the alignment between the two datasets.<br> </p> <p>Our particular thanks for the WCVP Fabaceae subset go to: Bob Allkin (Kew), Nick Black (Kew), Markus Döring (GBIF), Joe Miller (GBIF) and Carole Sinou (Canadensys, Université de Montréal) for their help setting up the project and publishing the data. The initiative to update legume species names on WCVP was led by Marianne le Roux (LPWG, South African National Biodiversity Institute), Anne Bruneau (LPWG, Université de Montréal), and Juliana Rando (LPWG, Universidade Federal do Oeste da Bahia).<br> </p> <p>The LPWG Taxonomy Working Group is the Taxonomic Expert Network (TEN) for the legumes in World Flora Online and Alan Elliott (TEN manager) is thanked for his assistance.</p>
Figures 6-10 in A new species of Tanaostigmodes Ashmead, 1896 (Hymenoptera: Tanaostigmatidae) from Brazil associated with Machaerium acutifolium Voguel, 1837 (Fabaceae)
Figures 6-10. Tanaostigmodes anamariae Perioto and Lara, sp. nov., female. 6. Mesosoma, dorsal. 7. Propodeum, dorsal. 8. Mesosoma, lateral. 9. Metafemur, lateral. 10. Metasoma, lateral. /Tanaostigmodes anamariae Perioto y Lara, sp. nov., hembra. 6. Mesosoma, dorsal. 7. Propodeo, dorsal. 8. Mesosoma, lateral. 9. Metafémur, lateral. 10. Metasoma, lateral.
Figures 1-5 in A new species of Tanaostigmodes Ashmead, 1896 (Hymenoptera: Tanaostigmatidae) from Brazil associated with Machaerium acutifolium Voguel, 1837 (Fabaceae)
Figures 1-5. Tanaostigmodes anamariae Perioto and Lara, sp. nov., female. 1. Habitus, lateral. 2. Head, frontal. 3. Head, dorsal. 4. Head, lateral. 5. Antenna, frontal. / Tanaostigmodes anamariae Perioto y Lara, sp. nov., hembra. 1. Hábitos, lateral. 2. Cabeza, frontal. 3. Cabeza, dorsal. 4. Cabeza, lateral. 5. Antena, frontal.
Gymnocladus dioicus (Fabaceae) - inflorescence - lateral view of flower
Image of Gymnocladus dioicus (Fabaceae) - inflorescence - lateral view of flower
Gymnocladus dioicus (Fabaceae) - inflorescence - whole - unspecified
Image of Gymnocladus dioicus (Fabaceae) - inflorescence - whole - unspecified
Gymnocladus dioicus (Fabaceae) - inflorescence - frontal view of flower
Image of Gymnocladus dioicus (Fabaceae) - inflorescence - frontal view of flower
Vicia caroliniana (Fabaceae) - inflorescence - whole - unspecified
Image of Vicia caroliniana (Fabaceae) - inflorescence - whole - unspecified
Vicia caroliniana (Fabaceae) - inflorescence - lateral view of flower
Image of Vicia caroliniana (Fabaceae) - inflorescence - lateral view of flower
Vicia caroliniana (Fabaceae) - inflorescence - frontal view of flower
Image of Vicia caroliniana (Fabaceae) - inflorescence - frontal view of flower
Vicia caroliniana (Fabaceae) - stem - showing leaf bases
Image of Vicia caroliniana (Fabaceae) - stem - showing leaf bases
Vicia caroliniana (Fabaceae) - whole plant - in flower - general view
Image of Vicia caroliniana (Fabaceae) - whole plant - in flower - general view
Vicia caroliniana (Fabaceae) - leaf - basal or on lower stem
Image of Vicia caroliniana (Fabaceae) - leaf - basal or on lower stem
Wisteria frutescens (Fabaceae) - fruit - section or open
Image of Wisteria frutescens (Fabaceae) - fruit - section or open
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International Brain Laboratory public data
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OpenNeuro
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