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393 results for “New Hybrids”
Phylogeny and evolution of Cupressaceae: updates on intergeneric relationships and new insights on ancient intergeneric hybridization
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Data from: Anchored hybrid enrichment provides new insights into the phylogeny and evolution of longhorned beetles (Cerambycidae)
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Figure 9 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 9 Distribution map of Begonia taliensis (syn. B. muliensis) Triangles show distribution sites, based on specimens and field surveys and red triangles indicate type locality of B. muliensis (Muli of Sichuan) and B. taliensis (Dali of Yunnan), respectively.
Figure 8 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 8 Habitat and morphology of B. taliensis (Photos by Daike Tian) A habitat B population with pure-green leaves C, D blooming individuals with variegated leaves E comparison of variegated and solid green-leaved individuals (adaxially and abaxially views) F–H inflorescence of large individuals and young fruits with red lines (G) I underground tubers (usually 2–3 connected) with numerous roots.
Figure 7 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 7 Distribution of Begonia longiciliata (including syn. B. sizemoreae) Triangles show distribution based on specimens and field survey and red triangles indicate type locality of B. longiciliata (Guizhou, China) and B. sizemoreae (Bavi, Vietnam), respectively.
Figure 6 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 6 Comparison on hairy and glabrous adaxial leaf surface of B. longiciliataA plant with hairs (cultivated as Begonia U388, American Begonia Society Conference 2012) B Guizhou population with hairs (arrow direction) C Yunnan population with glabrous adaxial leaf surface.(Photos by Daike Tian).
Figure 4 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 4 Distribution map of B. circumlobata (including syn. B. lipingensis) Triangles show distribution based on specimens and field surveys and red triangles indicate type locality of B. circumlobata (Guangdong) and B. lipingensis (Guizhou), respectively.
Figure 2 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 2 Habitat and morphology of Begonia flagellaris (Photos by Daike Tian) A, B habitat (rock hill or under bamboos, arrows indicate begonia plants) C individuals with long stolons D flowering plant E individual with aerial bulbs on stolon tips (arrows indicate tiny aerial bulbs) F fruit with extremely unequal wings G large individual with stolons (arrows indicate stolons) and fruits H simple umbellate inflorescence with white male and female flowers I infructescence J male flowers in front, dorsal and side views, respectively K cross-section of an ovary with the bilamellate axile placenta and three locules L underground tubers.
Figure 12 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 12 Begonia × malipoensis and its parents (B. hemsleyana and B. versicolor) (Photos by Daike Tian) A habitat of a natural hybrid zone of B. versicolor × B. hemsleyanaB–E variation of B. × malipoensisFB. hemsleyanaG, HB. versicolor with variegated and pure green leaves I, J comparison of B. × malipoensis (middle two leaves) and its parents B. hemsleyana (left) and B. versicolor (right two leaves) (I adaxial view J abaxial view).
Figure 10 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 10 Comparison of types of Begonia taliensis (A–C) and B. muliensis (D) A Ducloux No. 5184 (Yunnan) B Delavay No. 220 (Yunnan) C Henry 8946 (Sichuan) D T.T. Yü #14024 (Sichuan) (A accessed JSTOR and imaged by Botanical Museum Berlin-Dahlem B, C. Photos by Daike Tian at Herbarium Museum of Paris D accessed JSTOR, Imaged by Herbarium of the Arnold Arboretum, Harvard University).
Figure 3 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 3 Begonia lipingensis and B. circumlobata (E–H photos by Daike Tian) A–EBegonia lipingensis: A holotype (WU) (digitalised by Herbarium of Institut fur Botanik der Universitat Wien) B close-up view of type leaf C close-up of male flower from holotype, showing abaxial hairs on the middle of outer tepals D wild blooming plants E, F male flowers showing colour variation G, HBegonia circumlobata: adaxial (G) and abaxial (H) views showing variations of leaf lobes and colour in a single small population.
Figure 1 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 1 . Habitat and morphology of Begonia dioica (Photos by Daike Tian) A, B habitat (rock-moss surface and tree trunk, arrows indicate begonia plants) C individuals with long red stolons (arrows indicate stolons) D plants of different size and stolons with small whitish aerial bulbs (arrows indicate tiny bulbs) E leaves showing glabrous adaxial (upper) and abaxial (low) surfaces F female flowers with three tepals (upper: adaxial view, low: abaxial view) G cross-section of ovary with bilamellate axile placenta and three locules H tubers under moss.
Figure 11 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 11 Begonia × lancangensis and its parents (B. acetosella and B. handelii) (Photos by Daike Tian) A, B male plant and female flower of B. × lancangensisC, D plant and fruits of B. acetosellaE, F male and female flowering plants of B. handelii.
Figure 5 from: Tian D-K, Xiao Y, Li Y-C, Yan K-J (2020) Several new records, synonyms, and hybrid-origin of Chinese begonias. PhytoKeys 153: 13-35. https://doi.org/10.3897/phytokeys.153.50805
Figure 5 Morphological variation of Begonia longiciliata in China(Photos by Daike Tian) A–E population from Guizhou Province: A individual with dark green leaves and white variegation (near white ring or isolated white spots) B pure green-leaved individual C fruit with one long wing and two short wings D comparison of adaxial (upper) and abaxial (low) views of leaf variation in colour and variegation E male flower (deep-pink one not shown) F–J population from Yunnan province: F female flower, showing pink variant G cross-section of ovary showing two locules and bilamillate placenta H dark-green leaved individual with a light-green ring band I male flower showing very long anther in upper portion of androecium J comparison of adaxial (upper five leaves) and abaxial (lower five leaves), showing differences in leaf colour and variegation of different individuals.
Figure 1 from: Zhong C, Li D, Zhang Y (2020) Description of a new natural Sonneratia hybrid from Hainan Island, China. PhytoKeys 154: 1-9. https://doi.org/10.3897/phytokeys.154.53223
Figure 1 Morphology of S. × zhongcairongii. A Habitat B stem with aerial root C bark D branches E leaf branch end with flowers F leaves G inflorescence H minute bract at a dichotomous inflorescence branch I flower J–L. Dissection of the flower (J), pistil (K) and stamens (L).
Figure 2 from: Zhong C, Li D, Zhang Y (2020) Description of a new natural Sonneratia hybrid from Hainan Island, China. PhytoKeys 154: 1-9. https://doi.org/10.3897/phytokeys.154.53223
Figure 2 Comparison of the three taxa A S. apetala B S. × zhongcairongii C S. alba1 leaves, 2 branches, 3 flowers.
Figure 3 from: Zhong C, Li D, Zhang Y (2020) Description of a new natural Sonneratia hybrid from Hainan Island, China. PhytoKeys 154: 1-9. https://doi.org/10.3897/phytokeys.154.53223
Figure 3 Schematic diagrams of Sonneratia taxa and their inter-specific affinities deduced from morphometric analyses. The choice of circle size and line length is arbitrary.
Figure 9 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 9 Abaxial surface of pinnule and sori of AD. viridifronsBD. × nanakuraensis, and CD. pterorachis (illustration by K. Hori).
Figure 2 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 2 The ML tree based on the sequence variation of the gene trnL-F (ln L = -2309.05) with PP (>0.90) and BP (>70) of ML/MP/BI analyses on each branch. The sequences with asterisks were quoted from Genbank.
Figure 5 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 5 Map showing the known distribution of D. × nanakuraensis in Japan. Red star indicates type locality, other circles indicate examined specimens.
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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.