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FIGURE 3 in Flower of the heart, Magnolia yajlachhi (subsect. Talauma, Magnoliaceae), a new species of ceremonial, medicinal, conservation and nurse tree relevance in the Zapotec culture, Sierra Norte de Oaxaca, Mexico
FIGURE 3. Magnolia yajlachhi at San Juan Juquila Vijanos, Oaxaca. A–B. Bernardo Domínguez Yescas and his wife, Ma. Luisa PascualYescas, the family that transplanted and cared for seedlings for over a decade, until the trees flowered and turned out to be a new species. C. First documented (2010) open flower at male phase for this species. D. Flower bud flower of the heart, ready to be harvested for decoration, each tree producing up to 200 flower buds. E. Female phase (1:30 pm), with ca. perpendicular sepals, partially opened for beetle entrance, closing latter at night. F. Male phase (8:01 am) fully open flower, after pollen shedding (Photographs: A, D–F by J.A. Vázquez-García; B–C by R. Domínguez-Yescas).
FIGURE 2. Magnolia yajlachhi. A. Flowering branch. B. Flower with reflexed sepals. C in Flower of the heart, Magnolia yajlachhi (subsect. Talauma, Magnoliaceae), a new species of ceremonial, medicinal, conservation and nurse tree relevance in the Zapotec culture, Sierra Norte de Oaxaca, Mexico
FIGURE 2. Magnolia yajlachhi. A. Flowering branch. B. Flower with reflexed sepals. C. Receptive gynoecium (female phase), still retaining the stamens. D. Leaf venation. E. Flower bud without spathaceous bract. F. Fruit axis. G. Fruit. (By Edgar Esau Vázquez Verdejo).
FIGURE 3 in A new species of Saxifraga in section Ciliatae subsection Gemmiparae (Saxifragaceae) from Sichuan province, China
FIGURE 3. Fifty percent strict consensus tree based on the concatenated sequences of trnL-F and ITS from Saxifraga viridipetala and additional 104 Saxifraga species. Numbers on the branches are bootstrap values from maximum parsimony (left) and maximum likelihood (middle) analyses and posterior probabilities (right) from Bayesian inference.
FIGURE 2. Saxifraga viridipetala. a in A new species of Saxifraga in section Ciliatae subsection Gemmiparae (Saxifragaceae) from Sichuan province, China
FIGURE 2. Saxifraga viridipetala. a) whole plant showing cespitose habit; b) stems in vegetative phase with distal leaf rosettes; c) abaxial surface of rosette leaves, showing silvery-striation; d) original photograph of a flower; e) inflorescence with one open flower. Photographs by Qingbo Gao (a, e), Zhenguo Dong (d) and Zhuoxin Zhang (b, c).
FIGURE 1. Saxifraga viridipetala Z-X. Zhang & Gornall. A. Plant. B. Adaxial leaf surface. C. Flower. D. Abaxial sepal surface. E. Adaxial sepal surface. F. Petal. All from the holotype Gao2015006 in A new species of Saxifraga in section Ciliatae subsection Gemmiparae (Saxifragaceae) from Sichuan province, China
FIGURE 1. Saxifraga viridipetala Z-X. Zhang & Gornall. A. Plant. B. Adaxial leaf surface. C. Flower. D. Abaxial sepal surface. E. Adaxial sepal surface. F. Petal. All from the holotype Gao2015006 (HNWP). Drawn by Chen Zhang (Nanjing Xiaozhuang University).
FIGURE 4 in A new species of Saxifraga in section Ciliatae subsection Gemmiparae (Saxifragaceae) from Sichuan province, China
FIGURE 4. Distribution of S. viridipetala (green) and S. gemmipara (red) in southern China. Prepared by R. J. Gornall.
Data from: Magnolia mercedesiarum (subsect. Talauma, Magnoliaceae): a new Andean species from northern Ecuador, with insights into its potential distribution
Magnolia mercedesiarum, a new species from the eastern slopes of the Andes in northern Ecuador, is described and illustrated, and a key to Ecuadorian Magnolia (subsect. Talauma) is provided. This species differs from M. vargasiana in having broadly elliptic leaves obtuse at the base vs. suborbicular and subcordate to cordate at the base, glabrous stipular scar, more numerous lateral veins per side and fewer stamens. It also differs from M. llanganatensis in having leaf blades broadly elliptic vs. elliptic, longer petioles, less numerous lateral leaf veins per side; larger fruits, and more numerous petals and carpels. Using MaxEnt species distribution models and IUCN threat criteria, M. mercedesiarum has a potential distribution area of less than 3307 km² and is assessed as Endangered (EN): B1 ab (i, ii, iii). The relevance of systematic vegetation sampling in the discovery of rare species is highlighted.
FIGURE 1. A. Flower bud with spathaceous bract. B. Flower with reflexed sepals. C in Magnolia zoquepopolucae (subsection Talauma, Magnoliaceae), a new species from Sierra de Santa Marta, Veracruz, Mexico
FIGURE 1. A. Flower bud with spathaceous bract. B. Flower with reflexed sepals. C. Open flower tinged with purple at the distal adaxial half of outer and inner petals. D. Trunk of a 35 m tall tree. E. Subglobose fruit. F. Fruit axis with seeds, after circumscissile dehiscence. (Photographs A, B, C, E and F by J. A. Vázquez-García; D by M. A. Muñiz-Castro.)
FIGURE 2 in Magnolia lacandonica (subsection Talauma, Magnoliaceae), a new rainforest species from Chiapas, Mexico
FIGURE 2. Magnolia lacandonica. Type tree in tropical rainforest at Chajul (center), Chiapas; José Angel Torres Santos climbing in search for flowers (upper right corner); leaf variability (lower left corner). Photographs by J. Antonio Vázquez-García.
FIGURE 1. Magnolia lacandonica. A. Spathaceous bract topped with a in Magnolia lacandonica (subsection Talauma, Magnoliaceae), a new rainforest species from Chiapas, Mexico
FIGURE 1. Magnolia lacandonica. A. Spathaceous bract topped with a reduced leaf blade (left) and flower bud without spathaceous bract (right). B. Flower before fully opened. C. Gynoecium with and without stamens and showing styles. D. Carpels, single and aggregated in a small group. E. Mature fruit with inconspicuous and flat apex of carpels. F. Fruit during dehiscence, with carpels falling singly. Photographs: A–D from Vázquez-García et al. 9341 (by J. Antonio Vázquez-García); E and F, from Martínez-Camilo 1416 (by Ruben Martínez Camilo).
Supplementary Table S1 for manuscript Two new species of Russula subsection Amoeninae described from dry dipterocarp forest in Thailand suggest niche speciali-zation to this habitat type
<p>Specimens and GenBank accession number of DNA sequences used in the phylogenetic analyses. The newly generated sequences in this study are presented in boldface. The A is indicated for angiocarpic specimens.</p>
FIGURE 3. Hyptis lavoisierifolia A.Soares, J.F.B in Hyptis lavoisierifolia, a new species from the noteworthy Hyptis subsect. Pachyphyllae (Lamiaceae-Hyptidinae) endemic to Chapada dos Veadeiros region, Goiás, Brazil
FIGURE 3. Hyptis lavoisierifolia A.Soares, J.F.B.Pastore & Harley: A: Upper branch detail showing indumentum and inflorescence.; B: Mature individual.
FIGURE 2 in Hyptis lavoisierifolia, a new species from the noteworthy Hyptis subsect. Pachyphyllae (Lamiaceae-Hyptidinae) endemic to Chapada dos Veadeiros region, Goiás, Brazil
FIGURE 2. Distribution map of Hyptis lavoisierifolia A.Soares, J.F.B.Pastore & Harley. Red lines indicate Chapada dos Veadeiros National Park limits. White star: Hyptis lavoisierifolia A.Soares, J.F.B.Pastore & Harley; White circle with black dot: Capital town of Alto Paraíso de Goiás.
FIGURE 1. Hyptis lavoisierifolia A.Soares, J.F.B in Hyptis lavoisierifolia, a new species from the noteworthy Hyptis subsect. Pachyphyllae (Lamiaceae-Hyptidinae) endemic to Chapada dos Veadeiros region, Goiás, Brazil
FIGURE 1. Hyptis lavoisierifolia A.Soares, J.F.B.Pastore & Harley: A: Habit; B: Leaf (abaxial and adaxial surfaces); C: Cymule; D: Outer bracteole (outer and inner surfaces); E: inner bracteole (outer and inner surfaces); F: Flower; G: Calyx at anthesis (outer and inner surfaces); H: Opened corolla; I: Gynoecium. All structures and habit drawn from Soares 640 (UFRN). Illustration by Klei Sousa.
FIGURE 3 in Morphology and molecular approach reveal a new species of the genus Russula subsect. Lepidinae (Russulaceae) from India
FIGURE 3. Russula baniyakundensis (CAL 1806, holotype). a. Basidiospores b. Elements of the pileipellis near the pileus margin: hyphal terminations and pileocystidia c. Elements of the pileipellis near the pileus centre: hyphal terminations and pileocystidia d. Hymenial cystidia near the lamellae sides e. Hymenial cystidia near the lamellae edges f. Basidia. Scale bars: a= 2 µm; b–f= 10 µm. Drawings by: Aniket Ghosh.
FIGURE 2 in Morphology and molecular approach reveal a new species of the genus Russula subsect. Lepidinae (Russulaceae) from India
FIGURE 2. Russula baniyakundensis (CAL 1806, holotype). a–c. Fresh and dissected basidiomata d. Transverse section through pileipellis showing elements e. Transverse section through lamellae showing hymenial cystidia near the lamellae sides and basidia (indicated in black arrow) f. Transverse section through lamellae showing hymenial cystidia near the lamellae sides g. Transverse section through lamellae showing hymenial cystidia near the lamellae edges h. SEM micrograph of basidiospores. Scale bars: a= 50 mm; d−g= 10 μm; h= 2 μm. Photos by: Aniket Ghosh.
FIGURE 1 in Morphology and molecular approach reveal a new species of the genus Russula subsect. Lepidinae (Russulaceae) from India
FIGURE 1. Maximum Likelihood (ML) phylogram inferred from raxmlGUI 2.0 based on nrITS sequences of Russula. Bootstrap support
FIGURE 5 in Typifications and a new synonym in Phyllanthus sect. Phyllanthus subsect. Clausseniani (Phyllanthaceae)
FIGURE 5. Lectotype of Phyllanthus amoenus at the Natural History Museum of Denmark, Copenhagen (Denmark), specimen C10022982.
FIGURE 6 in Typifications and a new synonym in Phyllanthus sect. Phyllanthus subsect. Clausseniani (Phyllanthaceae)
FIGURE 6. Lectotype of Phyllanthus janeirensis at the Meise Botanic Garden, Meise (Belgium), specimen BR000005103515.
FIGURE 4 in Typifications and a new synonym in Phyllanthus sect. Phyllanthus subsect. Clausseniani (Phyllanthaceae)
FIGURE 4. Lectotype of Phyllanthus hypoleucus at the Field Museum of Natural History, Chicago (The United States of America), specimen F0057027.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
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
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.