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FIGURE 4. A–E in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 4. A–E. Cyathea mexiae (Schwartsburd 2983 [VIC]): A. Base of petiole, showing aculei, scales, and scurf. B. Petiolar aculei and scurf. C. Medial pinna. D. Rachis, pinna-rachis, and pinnules, abaxially, showing sericeous axes and sessile pinnules. E. Segment, abaxially, showing sori, hairs, and bullate scales on costule. F–J. Alsophila salvinii (Schwartsburd 3369 [VIC]): F. Base of petiole, showing scales and broken-off aphlebiae. G. Entire aphlebia with laminar expansions. H. Broken-off aphlebia without laminar expansion. I. Medial pinna. J. Rachis, pinna-rachis, and pinnules, abaxially, showing scurf, scales, and segments.
FIGURE 3. A–C in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 3. A–C. VIC: Cyathea corcovadensis s. str. (Silva 1593): A. Departure of pinnule (tangential section) from pinna-rachis (cross section), showing the schlerenquima ring internally on pinnule articulation (arrows). B. Mesophyll in cross section. C. Stomata from abaxial surface of lamina. D–F. Cyathea ×stella-matutina (Schwartsburd 3303 [VIC]): D. Departure of pinnule (tangential section) from pinna-rachis (cross section), showing the sclerenchyma ring internally on pinnule articulation (arrows). E. Mesophyll in cross section (asterisk showing intercellular protuberances). F. Stomata from abaxial surface of lamina. G–I. Cyathea microdonta (Schwartsburd 3300 [VIC]): G. Departure of pinnule (tangential section) from pinna-rachis (cross section), showing the absence of a sclerenchyma ring internally. H. Mesophyll in cross section (asterisk showing intercellular protuberances). I. Stomata from abaxial surface of lamina.
FIGURE 5. A in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 5. A. Petiolar scale of Cyathea mexiae (Schwartsburd 2983 [VIC]). B. Petiolar scales of Alsophila salvinii (Schwartsburd 3369 [VIC]). Bar of 0.5 cm.
FIGURE 2. A in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 2. A. Petiolar scale of Cyathea corcovadensis s. str. (Schwartsburd 3455 [VIC]). B. Petiolar scale of C. ×stella-matutina (Schwartsburd 3303 [VIC]). C. Petiolar scale of C. microdonta (Schwartsburd 3462 [VIC]). Bar of 0.5 cm.
FIGURE 1. A in A new hybrid and further taxonomic notes on Brazilian tree ferns (Cyatheaceae)
FIGURE 1. A. Lamina apex of Cyathea corcovadensis s. str. (Bovini 1537 [VIC]). B. Lamina apex of C. microdonta (Schwartsburd 3300 [VIC]). C–G. Cyathea ×stella-matutina (Schwartsburd 3303 [VIC]): C. Lamina apex. D. Petiolar aculei. E–G. Medial pinnules, showing variation on degree of dissection and size.
FIGURE 4 in Molecular and cytogenetic confirmation of the hybrid origin of Jacobaea ×mirabilis (Asteraceae, Senecioneae), with nomenclatural notes on this name
FIGURE 4. Capitula of the studied taxa (Mézenc, August 2013). From left to right: Jacobaea leucophylla, J. ×mirabilis, J. adonidifolia (two capitula of each taxon).
FIGURE 2 in Molecular and cytogenetic confirmation of the hybrid origin of Jacobaea ×mirabilis (Asteraceae, Senecioneae), with nomenclatural notes on this name
FIGURE 2. ITS network in Jacobaea, and leaves of the studied taxa. Numbers below the branches are bootstrap values.
FIGURE 3. Haplotypes network from rpl32 in Molecular and cytogenetic confirmation of the hybrid origin of Jacobaea ×mirabilis (Asteraceae, Senecioneae), with nomenclatural notes on this name
FIGURE 3. Haplotypes network from rpl32-trnL region in Jacobaea. Each circle corresponds to a haplotype and circles' size is proportional to haplotype frequency (from n=1 to n=5). Small white circles represent single mutational steps.
FIGURE 1 in Molecular and cytogenetic confirmation of the hybrid origin of Jacobaea ×mirabilis (Asteraceae, Senecioneae), with nomenclatural notes on this name
FIGURE 1. Boxplot graph indicating genome size means per species for the three Jacobaea taxa studied with standard deviation and the number of specimens sampled (n). Asterisk and circle indicate outlier values.
FIGURE 3 in Adiantum ailaoshanense (Pteridaceae), a new natural hybrid from Yunnan, China
FIGURE 3. SEM photographs of the spore morphology of Adiantum × ailaoshanense (B, D and E) and its parents. A. A. sinicum. C. A. menglianense.
FIGURE 1 in Adiantum ailaoshanense (Pteridaceae), a new natural hybrid from Yunnan, China
FIGURE 1. Adiantum × ailaoshanense Y.H. Yan & Y. Wang. A. Habit. B. Pinna abaxial. C. Pinna adaxial. D. Sporangia. E. Multicellular hair. F. Rhizome scale. Drawn from the holotype Yan12410 (CSH).
FIGURE 4. Malesherbia hybrids. a in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 4. Malesherbia hybrids. a. Malesherbia fatimae × tenuifolia, inflorescence (M. Weigend et al. 9370); b. Malesherbia fatimae × tenuifolia, leaves (M. Weigend et al. 9370); c. Profesora Fatima Cáceres Huamaní with a bunch of Malesherbia fatimae × tenuifolia and Malesherbia tenuifolia; d. Inflorescence of Malesherbia arequipensis (left), M. ardens (right), Malesherbia ardens × arequipensis (middle; same collections as in e, f, and g); e. Leaves of M. ardens (M. Weigend et al. 7866); f. Leaves of M. ardens × arequipensis (M. Weigend et al. 7868). g. Leaves of M. arequipensis (M. Weigend et al. 7865).
FIGURE 3. Malesherbia fatimae and M in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 3. Malesherbia fatimae and M. tenuifolia in native habitat. a. M. fatimae, inflorescence (M. Weigend et al. 9370). b. M. fatimae growing on rock face. c. Habitat of M. fatimae. d. M. tenuifolia (M. Weigend et al. 9368). e. M. tenuifolia (M. Weigend et al. 9369). f. habitat of M. tenuifolia.
FIGURE 2. Malesherbia fatimae, photographic plate. a in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 2. Malesherbia fatimae, photographic plate. a. inflorescence; b. flower; c. leaf, abaxial and adaxial side; d. androgynophore (with bracts and bractoles attached); e. Perianth, seen from adaxial side; f. corona and perianth seen from adaxial side (M. Weigend et al. 9372).
FIGURE 1. Malesherbia fatimae, line drawing. a in Notes on Malesherbia (Passifloraceae) in Peru: a new species from southern Peru, a new record and a first report on interspecific hybridization in Malesherbia
FIGURE 1. Malesherbia fatimae, line drawing. a. habit and inflorescence; b. leaf; c. calyx lobe; d. petal; e. corona; f. calyx and corolla seen from adaxial side, corona removed; g. androgynophore, stamens, ovary, and styles [drawn from Weibel 05 (USM) by Hamilton Beltrán].
FIGURE 1 in Morphometric and flow cytometric evaluations of a putative natural hybrid of Centaurium (Gentianaceae) from Turkey
FIGURE 1. Habit of the putative natural hybrid of Centaurium (C. serpentinicola × C. tenuiflorum subsp. tenuiflorum), M. Çiçek & A.E. Yaprak 2010-202 (ANK).
FIGURE 5 in Morphometric and flow cytometric evaluations of a putative natural hybrid of Centaurium (Gentianaceae) from Turkey
FIGURE 5. Scatter plot of scores derived from discriminant functions. Function 1 and Function 2 produced by Stepwise Discriminant Analysis applied to the 14 morphometric characters for mixed populations of Centaurium in Muğla, 10 km E of Köyceğiz. Centaurium serpentinicola (Δ), C. tenuiflorum subsp. tenuiflorum (○), putative natural hybrid (×) and C. tenuiflorum subsp. acutiflorum (□).
FIGURE 2 in Morphometric and flow cytometric evaluations of a putative natural hybrid of Centaurium (Gentianaceae) from Turkey
FIGURE 2. Taxa of Centaurium in their natural habitat. A. Centaurium serpentinicola (M. Çiçek 2013-1). B. C. tenuiflorum subsp. tenuiflorum (M. Çiçek 2013-2). C. Putative natural hybrid between C. serpentinicola and C. tenuiflorum subsp. tenuiflorum (M. Çiçek 2013-3).
FIGURE 3 in Morphometric and flow cytometric evaluations of a putative natural hybrid of Centaurium (Gentianaceae) from Turkey
FIGURE 3. Stigmas of Centaurium taxa. A. C. serpentinicola (from M. Çiçek & A.E. Yaprak 2010-201). B. Putative natural hybrid (from M. Çiçek & A.E. Yaprak 2010-202). C. C. tenuiflorum subsp. tenuiflorum (from M. Çiçek & A.E. Yaprak 2010-200).
FIGURE 4 in Morphometric and flow cytometric evaluations of a putative natural hybrid of Centaurium (Gentianaceae) from Turkey
FIGURE 4. Corolla lobes of Centaurium taxa. A. C. serpentinicola (M. Çiçek 2013-1). B. Putative natural hybrid (M. Çiçek 2013-2). C. C. tenuiflorum subsp. tenuiflorum (M. Çiçek 2013-3).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.