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2,775 results for “G×E”
Figure 4 from: Tepe E, Rodríguez-Castañeda G, Glassmire A, Dyer L (2014) Piper kelleyi, a hotspot of ecological interactions and a new species from Ecuador and Peru. PhytoKeys 34: 19-32. https://doi.org/10.3897/phytokeys.34.6376
Figure 4 - A Leaf of Piper kelleyi with characteristic herbivory marks or "windows" made by the specialist herbivore Eois species of Eois that specialize on Piper kelleyi include B Eois viridiflava (Dognin) C Eois aff. viridiflava (Dognin) D Eois ignefumata (Dognin) E Eois planetaria (Dognin) F Eois aff. pallidicosta (Warren) G Eois encina (Dognin) H Eois aff. encina (Dognin).
Figure 2 from: Tepe E, Rodríguez-Castañeda G, Glassmire A, Dyer L (2014) Piper kelleyi, a hotspot of ecological interactions and a new species from Ecuador and Peru. PhytoKeys 34: 19-32. https://doi.org/10.3897/phytokeys.34.6376
Figure 2 - Piper kelleyi. A Habit B Close-up of leaves showing characteristic red color of younger leaves [Tepe et al. 2381] C Close-up of inflorescence [Tepe et al. 2615] D Close-up of infructescence [Tepe et al. 1597].
Figure 1 from: Tepe E, Rodríguez-Castañeda G, Glassmire A, Dyer L (2014) Piper kelleyi, a hotspot of ecological interactions and a new species from Ecuador and Peru. PhytoKeys 34: 19-32. https://doi.org/10.3897/phytokeys.34.6376
Figure 1 - Piper kelleyi Tepe. A leaf and inflorescence B Stamen C fruit in lateral view D Fruit in apical view E Bracts in apical view. [A and E (lower) drawn from Tepe et al. 1597; B–E (upper) drawn from Tepe et al. 2615]
Figure 1 from: Tepe E, Ridley G, Bohs L (2012) A new species of Solanum named for Jeanne Baret, an overlooked contributor to the history of botany. PhytoKeys 8: 37-47. https://doi.org/10.3897/phytokeys.8.2101
Figure 1 - Solanum baretiae Tepe. A Habit of flowering branch B Flowering branch with close-up of pubescence C Pseudostipules with close-up of pubescence D Habit of vegetative branch E Flower and detail of stigma F Longitudinal section of flower G Calyx (left) and longitudinal section of calyx, showing ovary (right) H Stamens in ventral, dorsal, and side view with close-up of pubescence I Longitudinal section of ovary J Infructescence with immature fruits K Fruit, mature L Seeds. [A and J drawn from Tepe et al. 2888; B–D, F–I drawn from Tepe et al. 2886; E drawn from Tepe et al. 2885; K–L drawn from Bohs et al. 3735].
Figure 2 from: Tepe E, Ridley G, Bohs L (2012) A new species of Solanum named for Jeanne Baret, an overlooked contributor to the history of botany. PhytoKeys 8: 37-47. https://doi.org/10.3897/phytokeys.8.2101
Figure 2 - Solanum baretiae Tepe. A Habit B Flower showing reflexed corolla and bud C Flower with flat corolla D Mature fruit E Immature fruit; note mottling, which is absent in the mature fruit. [A–B Tepe and McCarthy 3346; C Tepe et al. 2885; D Bohs et al. 3735; E Tepe et al. 2888].
Figure 9 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 9 - Detailed topology of the Thelotrema clade p.p. (subfamily Graphidoideae tribe Thelotremateae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 8 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 8 - Detailed topology of the Thelotrema clade p.p. (subfamily Graphidoideae tribe Thelotremateae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 7 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 7 - Detailed topology of the Chroodiscus, Chapsa s.lat., and Leucodecton clades (subfamily Graphidoideae tribe Thelotremateae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 6 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 6 - Detailed topology of the Acanthothecis s. lat., Acanthotrema, Carbacanthographis, Diploschistes, Heiomasia, Nadvornikia, Phaeographopsis, Schizotrema, Topeliopsis, and Wirthiotrema clades (subfamily Graphidoideae). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 5 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 5 - Detailed topology of the Phaeographis s.lat. clade p.p. (subfamily Graphidoideae tribe Graphideae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 3 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 3 - Detailed topology of the Graphis, Platythecium, Allographa, Glyphis, and Diorygma clades (subfamily Graphidoideae tribe Graphideae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 13 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 13 - Detailed topology of the Ocellularia s.lat. clade p.p. (subfamily Graphidoideae tribe Ocellularieae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 4 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 4 - Detailed topology of the Phaeographis s.lat. clade p.p. (subfamily Graphidoideae tribe Graphideae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 2 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 2 - Detailed topology of the Fissurina clade (subfamily Fissurinoideae). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 11 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 11 - Detailed topology of the Myriotrema s.lat. clade and relatives (subfamily Graphidoideae tribe Ocellularieae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 1 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 1 - Cartoon tree showing the major clades distinguished within Graphidaceae with bootstrap support given next to branches. Blue clades indicate graphidoid taxa (lirellate or pseudostromatic ascomata), orange clades indicate thelotremoid taxa (rounded ascomata), and grey clades indicate mixed graphidoid and thelotremoid taxa. Bootstrap support is indicated for major clades and figures with detailed clade information are indicated for each clade. The entire, detailed tree is available as Appendix 2.
Figure 12 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 12 - Detailed topology of the Ocellularia s.lat. clade p.p. (subfamily Graphidoideae tribe Ocellularieae p.p.). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 10 from: Luecking R, Rivas Plata E, Parnmen S, Staiger B, Mangold A, Frisch A, Weerakoon G, Hernandez J, Caceres M, Kalb K, Sipman H, Common R, Nelsen M, Lumbsch T (2013) A molecular phylogeny of Graphidaceae (Ascomycota, Lecanoromycetes, Ostropales) including 428 species. MycoKeys 6: 55-94. https://doi.org/10.3897/mycokeys.6.3482
Figure 10 - Detailed topology of the Diploschistes ocellatus, Leptotrema, and Phaeographopsis clades (subfamily Graphidoideae). Genus level clades are highlighted. Bootstrap support is indicated as black (90% and higher) and black-and-white (70% and higher) symbols. For specimen information and GenBank numbers see Appendix 1. The entire, fully resolved tree with detailed bootstrap support values is available as Appendix 2.
Figure 1 from: Kurina O, Õunap E, Ramel G (2011) Baeopterogyna mihalyii Matile (Diptera, Mycetophilidae): association of sexes using morphological and molecular approaches with the first description of females. ZooKeys 114: 15-27. https://doi.org/10.3897/zookeys.114.1364
Figure 1 - Bayesian phylogenetic tree (GTR+I model) of selected Mycetophilidae taxa, based on a 762 bp fragment of a COI gene. Bayesian posterior probabilities are given above the branches; bootstrap support for the ML/NJ/MP trees, which exhibited identical topology, are presented below the branches.
Figure 3 from: Kurina O, Õunap E, Ramel G (2011) Baeopterogyna mihalyii Matile (Diptera, Mycetophilidae): association of sexes using morphological and molecular approaches with the first description of females. ZooKeys 114: 15-27. https://doi.org/10.3897/zookeys.114.1364
Figure 3 - Baeopterogyna mihalyii. a female terminalia, lateral view b female terminalia, dorsal view c female terminalia, ventral view d male terminalia, ventral view. Scale = 0.2 mm.<br> cerc = cercus; gc = gonocoxite; gp = gonapophysis; gst = gonostylus; hyp = hypoproct; st = sternite; tg = tergite
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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
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.