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298 results for “Iridaceae”
FIGURE 5 in A taxonomic revision of Iris section Psammiris (Iridaceae) in Russia
FIGURE 5. Lectotype of Iris humilis from Trinius's collection (MW 0021793, fragments numbered 1 & 2).
FIGURE 2 in Iris tibetica, a new combination in I. ser. Lacteae (Iridaceae) from China: evidence from morphological and chloroplast DNA analyses
FIGURE 2. Median-joining network based on combined sequences of four cpDNA regions, depicting the relationships among haplotypes of 136 individuals from 59 localities across the geographic range of Iris ser. Lacteae. Each white circle represents a haplotype and the size of the circle is proportional to the number of individuals with that haplotype. Haplotype codes correspond to those in Table 1. Black dots indicate missing haplotypes (extinct or not sampled). Haplotypes of A, B, and C haplogroups are encircled with thin lines.
FIGURE 4 in Iris tibetica, a new combination in I. ser. Lacteae (Iridaceae) from China: evidence from morphological and chloroplast DNA analyses
FIGURE 4. Phylogenetic analysis of Iris ser. Lacteae based on psbA–trnH/rps4–trnS/trnS–trnG/trnL–trnF sequences. Neighbour-joining tree is shown with bootstrap values in 1000 replicates for NJ/MP/ML analyses (shown only when> 50%) above the branches and Bayesian posterior probabilities more than PP = 0.90 below the branches. Clades I and II within I. ser. Lacteae are indicated. Haplotypes and locality codes are given in Table 1.
FIGURE 1 in Iris tibetica, a new combination in I. ser. Lacteae (Iridaceae) from China: evidence from morphological and chloroplast DNA analyses
FIGURE 1. Map showing the locations of Iris ser. Lacteae samples analyzed in the present study (created with http://www. spatialepidemiology.net). The locality codes are given in Table 1.
FIGURE 3 in Iris tibetica, a new combination in I. ser. Lacteae (Iridaceae) from China: evidence from morphological and chloroplast DNA analyses
FIGURE 3. Genetic clustering of Iris ser. Lacteae haplotypes from 136 individuals inferred with the program BAPS. Each vertical column corresponds to one haplotype, and black vertical lines separate haplotypes from the different localities. Locality codes are given in Table 1. Different colours represent the different genetic cluster (blue-cluster 1, red-cluster 2, green-cluster 3). (a) Mixture clustering results revealing three clusters with a posterior marginal probability of 0.80; (b) Bar plot from the admixture results. The vertical bars are split into several colours when there is evidence for the admixture (P <0.05). Localities are ordered according to latitude, from south to north.
FIGURE 3. Iris setosa. A in The first record of Iris setosa (Iridaceae) in Europe
FIGURE 3. Iris setosa. A) General view of the population in Kildin Island; B) Flower with the small inner perianth segments (arrows).
FIGURE 2 in The first record of Iris setosa (Iridaceae) in Europe
FIGURE 2. Herbarium specimen of Iris setosa collected in Kildin Island, Murmansk Oblast, Russian Federation.
FIGURE 1 in The first record of Iris setosa (Iridaceae) in Europe
FIGURE 1. Maps of the Kola Peninsula (left), with a detail on Kildin Island (right) showing the locality (●) of collection of Iris setosa specimens.
FIGURE 1 in Typification of the name Iris benacensis A.Kern. ex Stapf (Iridaceae)
FIGURE 1. Lectotype of Iris benacensis (WU 0038648, University of Vienna, Institute for Botany - Herbarium WU, https://www.jacq. org/detail.php?ID=63461)
FIGURE 5. Mitotic metaphase plate with 2n in Notes on Crocus L. Series Flavi Mathew (Iridaceae) and a new species with unique corm structure
FIGURE 5. Mitotic metaphase plate with 2n = 8 chromosomes (a), and idiogram (b) of C. asymmetricus. Scale bar = 10 µm.
FIGURE 1 in Notes on Crocus L. Series Flavi Mathew (Iridaceae) and a new species with unique corm structure
FIGURE 1. Crocus asymmetricus from its locus classicus: habit (A, B); peeled corm (C); corms with tunics (D).
FIGURE 3 in Notes on Crocus L. Series Flavi Mathew (Iridaceae) and a new species with unique corm structure
FIGURE 3. Illustration of Crocus antalyensis: A. Habitus; B. Flower dissection; C. Leaf cross section; D. Corm: D1. General view, D2. Young (above) and mature (below) corm; E. Tunics (E1, E2, E3). Drawing made from specimen ISTF 41144.
FIGURE 2 in Notes on Crocus L. Series Flavi Mathew (Iridaceae) and a new species with unique corm structure
FIGURE 2. Illustration of C. asymmetricus: A. Habitus; B. Flower dissection; C. Leaf cross section; D. Corm: D1. General view, D2. Young (above) and mature corm (below); E. Corm tunics (E1 and E2); F. Basal tunic. Drawing made from specimen ISTF 41370.
FIGURE 4 in Notes on Crocus L. Series Flavi Mathew (Iridaceae) and a new species with unique corm structure
FIGURE 4. Phylogenetic tree obtained by Bayesian inference of the nuclear rDNA ITS. Numbers along branches are posterior probabilities.
FIGURE 5 in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 5. Tigrideae in the Sierra of Nanchititla, State of México. A. Cardiostigma longispatha. B. Cipura campanulata. C. Flower lateral view of Tigridia meleagris. D–E. Flower frontal view of T. meleagris. F. T. pavonia. Photographs: Aarón Rodríguez (C–E), Georgina Vargas-Amado (F), Guadalupe Munguía-Lino (A–B).
FIGURE 2. Tigridia nanchititlensis. A–B. Habitat. C–D. Flower lateral and front view. E. Habit. F in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 2. Tigridia nanchititlensis. A–B. Habitat. C–D. Flower lateral and front view. E. Habit. F. Fruits. Photographs: Aarón Rodríguez.
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H. Fruits. Illustrated by Ericka Belén Cortez Castro based on type material (A. Rodríguez et al. 6049).
FIGURE 3. Cypella luteogibbosa. A. Flower, upper view. B. Flower, lateral view. Cypella magnicristata. C. Flower, upper view. D in Two new species of Cypella (Iridaceae: Tigridieae) from Rio Grande do Sul, Brazil
FIGURE 3. Cypella luteogibbosa. A. Flower, upper view. B. Flower, lateral view. Cypella magnicristata. C. Flower, upper view. D. Flower, showing the androgynoecium apparatus. (A–B from Deble & Oliveira-Deble 10265; C–D from Deble & Oliveira-Deble 12816).
FIGURE 2. Cypella magnicristata. A in Two new species of Cypella (Iridaceae: Tigridieae) from Rio Grande do Sul, Brazil
FIGURE 2. Cypella magnicristata. A. Basal part of the Plant. B. Distal part of the plant. C. Flower, lateral view. D. Flower with tepals removed. E. Gynoecium F. Stamen, dorsal view. G. Stamen, lateral view. H. Capsule. I. Seed. J. Stem bract. A–C from Deble & Oliveira-Deble 12816; D–J from Deble & Oliveira-Deble 13018).
FIGURE 1. Cypella luteogibbosa. A. Habit. B in Two new species of Cypella (Iridaceae: Tigridieae) from Rio Grande do Sul, Brazil
FIGURE 1. Cypella luteogibbosa. A. Habit. B. Distal part of the plant. C. Flower, lateral view. D. Flower, upper view. E. Flower, tepals removed. F. Stamen. G. Capsule. H. Seed. I. Seed, longitudinal section. J. Stem bract. K. Leaf in cross section (from Deble & Oliveira-Deble 10265).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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
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.