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Figure 1 in Lack of refuge as a bottleneck for reptiles in intensive woody crops
Figure 1. Box plot showing the predicted values of individuals per transect (individuals/100 m) according to crop type of Downloaded from Brill.com 08/07/2024 04:57:34PM olives groves (left) and vineyards (right). Thevia valuesOpenwithAccess different. Thisletters is an areopen significantly access article different (P <distributed0.05). under the terms
Figure 2 in Lack of refuge as a bottleneck for reptiles in intensive woody crops
Figure 2. Sankey diagrams showing the number of lizards and the percentage (%) observed in each zone of observation (left) and where they escaped to (right) in each type of crop. For IOR and IVR the category "Art. Refuge" refers to the use of artificial refuges.
FIGURE 9. Cultived woody bamboos. A–B. Bambusa vulgaris var. vittata, yellow culms with green stripes. B. Guadua angustifolia culms. C in Morphological keys to the genera and species of bamboos (Poaceae: Bambusoideae) of Mexico
FIGURE 9. Cultived woody bamboos. A–B. Bambusa vulgaris var. vittata, yellow culms with green stripes. B. Guadua angustifolia culms. C. Phyllostachys aurea, showing ventricose basal nodes.. D. Phyllostachys bambusoides, diffuse culms. E. Bambusa oldhamii, showing glaucous culms and culm leaves. Photos by E. Ruiz-Sanchez.
FIGURE 3 in A checklist of woody Leguminosae in the South American Corridor of Dry Vegetation
FIGURE 3. Graph showing the variation in species richness by vegetation type using different data sources (herbarium collections and literature, only herbarium collections and only literature). Brazilian Savannas (Bs), Chaco (Ch), Seasonal Forest (Sf) and Thorny Woodland (Tw).
FIGURE 2 in A checklist of woody Leguminosae in the South American Corridor of Dry Vegetation
FIGURE 2. Graph showing the species richness (literature and herbarium records), and species present exclusively in different types of seasonally vegetation in the South American Corridor of Dry Vegetation.
FIGURE 1 in A checklist of woody Leguminosae in the South American Corridor of Dry Vegetation
FIGURE 1. Map highlighting the seasonally dry vegetation of South America. Thorny Woodland (A), Brazilian Savannas (B), Seasonal Forests (C or black) and Chaco (D).
FIGURE 2. Amburana acreana. A in A Taxonomic Review And A New Species Of The South American Woody Genus Amburana (Leguminosae, Papilionoideae)
FIGURE 2. Amburana acreana. A. Branch with leaves; B. Inflorescence; C. Leaflet (adaxial face); D. Detail of midvein in C; E–F. Bracteole (abaxial and adaxial face, respectively); G. Flower bud; H. Flower in side view; J. Flower (with the petal removed) in side view showing the stamens and carpel; K. Standard (adaxial face); L. Longitudinal section of flower showing hypanthium and stamen insertion; M. Fruits; N. Winged seed (A from L. F. G. da Silva et al. 59, B–L from S. Romaniuc Neto et al. 687, M–N from T. D. Pennington et al. 16994). Drawn by Ana L. Souza.
FIGURE 5. Amburana erythrosperma. A in A Taxonomic Review And A New Species Of The South American Woody Genus Amburana (Leguminosae, Papilionoideae)
FIGURE 5. Amburana erythrosperma. A. Flowers and flower buds; B. Fruits; C. Fruit and seeds (Photos: G. P. Lewis).
FIGURE 3. Amburana cearensis. A in A Taxonomic Review And A New Species Of The South American Woody Genus Amburana (Leguminosae, Papilionoideae)
FIGURE 3. Amburana cearensis. A. Fruits and seeds; B. Flowers and flower buds (Photos: E. P. Seleme).
FIGURE 4. Amburana cearensis. A in A Taxonomic Review And A New Species Of The South American Woody Genus Amburana (Leguminosae, Papilionoideae)
FIGURE 4. Amburana cearensis. A. Branch with leaves and inflorescence; B. Part inflorescence in bud; C. Leaflet (adaxial face); D. Detail of C; E. Standard (adaxial face); F. Anther; G. Stamens; H. Calyx and hypanthium; J. Flower, side view; K. Bracteole; L. Flower bud; M. Style and stigma; N. Gynoecium; P. Longitudinal section of flower showing hypanthium; Q. Winged seed; R. Fruit (A–N from J. R. I. Wood et al. 19592, P–R from J. R. I. Wood 10671). Drawn by Angela J. Beaumont.
FIGURE 7 in A Taxonomic Review And A New Species Of The South American Woody Genus Amburana (Leguminosae, Papilionoideae)
FIGURE 7. Geographical distribution of Amburana acreana (■), A. cearensis (●) and A. erythrosperma (▲). Map created using Diva GIS.
FIGURE 6. Amburana erythrosperma. A in A Taxonomic Review And A New Species Of The South American Woody Genus Amburana (Leguminosae, Papilionoideae)
FIGURE 6. Amburana erythrosperma. A. Inflorescence; B. Leaf; C. Detail of leaflet lower surface; D. Flower buds; E. Standard (adaxial face); F. Longitudinal section of flower showing hypanthium, stamens and carpel; G. Anther; H. Gynoecium; J. Style and stigma; K. Calyx and hypanthium; L. Stamens; M. Flower, side view; N. Flower bud; P. Bracteole (abaxial face); Q. Fruit; R. Seed; S. Opened fruit showing two seeds (A–M from G. P. Lewis & S. M. M. de Andrade 1876; N–S from G. P. Lewis & S. M. M. de Andrade 1997). Artist unknown.
FIGURE 1. Chimonocalamus elegans. A in Chimonocalamus elegans, a new temperate woody bamboo species (Poaceae: Bambusoideae) from Doi Phu Kha National Park, Thailand
FIGURE 1. Chimonocalamus elegans. A. Flowering branchlet; B. Portion of culm showing node; C. Culm leaves on the new shoot (flying shoot); D. Culm leaf sheaths; E. Spikelet without glumes; F. Glumes; G. Lemmas; H. Paleas; I. Lodicules. Drawn by A. Teerawatananon from P. Pinyo s.n. (BKF).
FIGURE 1. Chimonocalamus auriculatus. A in Chimonocalamus auriculatus, one more new temperate woody bamboo species of the genus (Poaceae: Bambusoideae: Arundinarieae) described from Thailand
FIGURE 1. Chimonocalamus auriculatus. A. Abaxial surface of a whole culm leaf; B. Portions of culm leaves, showing adaxial surface (left) and abaxial surface (right); C. Shoot; D. Portion of culm showing bud complement and nodes with a ring of root-thorns; E. Leafy branch. Drawn from S. Sungkaew, A. Teerawatananon & W. Sajia 1503 (BKF) by A. Teerawatananon.
FIGURE 2. Chimonocalamus auriculatus A in Chimonocalamus auriculatus, one more new temperate woody bamboo species of the genus (Poaceae: Bambusoideae: Arundinarieae) described from Thailand
FIGURE 2. Chimonocalamus auriculatus A. Habit; B. Foliage leaves; C. Young culm showing nodes with a ring of root-thorns; D. Branch complements; E. Clump habit; F. Shoot, showing deltoid lobed auricles with oral setae. Photos by A. Teerawatananon.
FIGURE 2. A–L. Syagrus amicorum. A. Leaf sheath with woody fibers like rudimentary spines. B. Leaf blade. B1 in Syagrus amicorum, a new Arecaceae from Bahia, Brazil
FIGURE 2. A–L. Syagrus amicorum. A. Leaf sheath with woody fibers like rudimentary spines. B. Leaf blade. B1. Adaxial surface of the apical portion. B2. Abaxial surface of the middle portion showing the dense floccose tomentum where the leaflets are inserted on the rachis. C. Leaflet apex. D. Middle-apical portion of the inflorescence. E. Apical portion of dry peduncular bract. F. Flowers triad at basal portion of the rachilla, a pistillate flower flanked by two lateral staminate flowers. G. Staminate flower. H. Pistillate flower. I. Fruit in lateral view. J. Fruit in top view. K. Mature fruit split at its apex, showing the mesocarp and the endocarp. L. Endocarps, one of them sectioned showing the homogeneous endosperm. Drawn by K. Soares from K. Soares et al. 67.
FIGURE 1 in Paronychia sanchez-vegae (Caryophyllaceae), a new woody species of Paronychia from North Peru
FIGURE 1. Maximum likelihood (ML) tree from the analysis of ITS sequences obtained from Paronychia sanchezvegae as well as available GenBank sequences. Numbers associated with the nodes are ML bootstrap values. Bootstrap values below 50% are not shown. The numbers at the tips of branches represent GenBank accession numbers. Paronychia sanchez-vegae is indicated in bold.
FIGURE 3. Paronychia sanchez-vegae. A in Paronychia sanchez-vegae (Caryophyllaceae), a new woody species of Paronychia from North Peru
FIGURE 3. Paronychia sanchez-vegae. A. Habit of the plant (bottom left), B. Ramified stems, C. Detail of the rooting stems.
FIGURE 2. A Habit X 3, B Branch X 10, C Leaf abaxial side X 25, D Leaf adaxial side X 25, E in Paronychia sanchez-vegae (Caryophyllaceae), a new woody species of Paronychia from North Peru
FIGURE 2. A Habit X 3, B Branch X 10, C Leaf abaxial side X 25, D Leaf adaxial side X 25, E Detail of the leaf margin, X 100, F Stipule adaxial side X 25, G Stipule abaxial side X 25, H Node with leaf and bracts and flower X 25, I Flower X 55, J Flower opened X 40, K Section of ovary X 55.
Data from: Commonness, rarity and oligarchies of woody plants in the tropical dry forests of Mexico
We assessed woody plant communities in two widely separated forests in the tropical dry forest (TDF) biome of Mexico for evidence of similar patterns of species commonness and rarity. We used belt transects laid out along contour lines (i.e., constant elevation) and stratified across elevation gradients at sites in Jalisco and Oaxaca to sample woody plant species diversity, abundance, relative frequency and basal area. We assembled a combined species list and compared species found in both sites (shared) to species found in only one site, assessing whether the most and least common species at a site tended to be shared or unshared. Of the 8242 individuals sampled, 370 species or morpho-species were identified, with 222 species recorded at the Jalisco site and 270 at the Oaxaca site—122 (33%) species were shared across sites. Abundance, frequency and basal area of shared species were greater on average than for unshared species, and were positively correlated across sites. A subset of 68 shared species (18%) accounted for over half of all individuals encountered at the two sites. Species in the most common quartile were more likely to be shared than expected by chance, while species in the least common quartile were less likely. A genus-level analysis found similar patterns. Our findings suggest that the TDF of Pacific coast Mexico shows evidence of widespread dominance by a small subset of species. These findings have potentially important implications for predicting species composition, understanding the role of oligarchic species in ecological processes, and conserving rare species.
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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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International Brain Laboratory public data
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OpenNeuro
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