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FIGURE 6 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 6. Habit and morphology of Sinodielsia microloba. a. Habit. b. Compound umbels. c. Flowers. d. Cauline leaf. e. Bracts. f. Bracteoles. g. Basal leaves. h. Root. i. Fruits.
FIGURE 3 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 3. Specimen and fruits of Meeboldia achilleifolia. a. Specimen of M. achilleifolia (From herbarium BM, barcode BM000622295, Wallich 568 (Natural History Museum 2014)). b. Attachment on the specimen with note "Meeboldia 3402 Type of Meeboldia". c. Morphology of fruits in the attachment. d. Fruits drawing of M. achilleifolia from previous research (Pu & Peng 2005).
FIGURE 5 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 5. Diagnostic morphological characters of Meeboldia yunnanensis from Kunming, Yunnan. a. Habit. b–c. Compound umbels. d. Basal leaf. e. Root. f. Fruits.
FIGURE 2 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 2. Phylogenetic tree of Meeboldia, Sinodielsia and their relatives derived from Bayesian inference analysis using concatenated rpl16 and rps16 introns dataset. The numbers above and below the nodes are BI-PP and ML-BS presented as percentages, respectively (> 50%). Those nodes not occurring in the ML tree are indicated by pound symbols (#). The names of the clades follow the study of Downie et al. (2010).
FIGURE 7 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 7. Terminal leaflets of basal leaves, from 3 populations of Meeboldia yunnanensis and 1 population of Sinodielsia delavayi. Scale bars are 10 mm. P1. Population of M. yunnanensis from Kunming. P2. Population of S. delavayi from Baisha River, Eryuan. P3. Population of M. yunnanensis from Haba village, Zhongdian. P4. Population of M. yunnanensis from Tiger Leaping Gorge, Zhongdian.
Figure 1 in Diet of the black rat (Rattus rattus) in a Canary laurel forest: species identification based on morphological markers and DNA sequences
Figure 1. (a) Map of the Canary Islands showing the location of La Palma Island Biosphere Reserve. (b) Current distribution of the laurel forest (grey) on the island and the study area in Bosque de Los Tilos. (c) Percentages of invertebrates and plants consumed, as detected after the barcode analysis. Each circle represents one location (including one or more separate microsites c. 200 m apart), located in the three plant formations (dominant laurel forest, Morella faya – Erica arborea woodland and fern patch).
Supplementary material 4 from: Colgan DJ, Ahyong ST, Mardon K, Brereton IM (2021) Rare specimen identification in an un-integrated taxonomy: implications of DNA sequences from a Taiwanese Philine (Mollusca, Philinidae). ZooKeys 1060: 93-110. https://doi.org/10.3897/zookeys.1060.28809
Figure S3. Phylogenetic relationships of C.559479 based on Maximum Likelihood analysis of the histone H3 dataset.
Supplementary material 3 from: Colgan DJ, Ahyong ST, Mardon K, Brereton IM (2021) Rare specimen identification in an un-integrated taxonomy: implications of DNA sequences from a Taiwanese Philine (Mollusca, Philinidae). ZooKeys 1060: 93-110. https://doi.org/10.3897/zookeys.1060.28809
Figure S2. Phylogenetic relationships of C.559479 based on maximum likelihood analysis of the D1 28S rRNA dataset
FIGURE. Median network analyses (MNA) of a subset of the C. trilobus aggregate (i.e. those in the clade A from Fig. 11) based on concatenated DNA sequence data from ITS, trnL-trnF and psbJ-petA. Stars and arrow indicate accessions discussed in the text. NI: North Island, SI: South Island. in Five new species of Corybas (Diurideae, Orchidaceae) endemic to New Zealand and phylogeny of the Nematoceras clade
FIGURE. Median network analyses (MNA) of a subset of the C. trilobus aggregate (i.e. those in the clade A from Fig. 11) based on concatenated DNA sequence data from ITS, trnL-trnF and psbJ-petA. Stars and arrow indicate accessions discussed in the text. NI: North Island, SI: South Island.
FIGURE. Bayesian tree of New Zealand spider orchids (Corybas) based on DNA sequence data from ITS, trnL-trnF and psbJ-petA. Major clades are indicated by open bars and capital letters, members of the C. trilobus aggregate are shaded, and posterior probabilities/ bootstrap percentages (≥50) indicated by numbers near each node. NI: North Island, SI: South Island, MCQI: Macquarie Island, CHI: Chatham Island in Five new species of Corybas (Diurideae, Orchidaceae) endemic to New Zealand and phylogeny of the Nematoceras clade
FIGURE. Bayesian tree of New Zealand spider orchids (Corybas) based on DNA sequence data from ITS, trnL-trnF and psbJ-petA. Major clades are indicated by open bars and capital letters, members of the C. trilobus aggregate are shaded, and posterior probabilities/ bootstrap percentages (≥50) indicated by numbers near each node. NI: North Island, SI: South Island, MCQI: Macquarie Island, CHI: Chatham Island
Aligned DNA sequence matrix for phylogenetic analyses in the article "Molecular and Morphological Assessment of Rain Frogs in the Pristimantis orestes Species Group (Amphibia: Anura: Strabomantidae) with the Description of Three New Cryptic Species from Southern Ecuador"
<p>The aligned matrix is in fasta format. Genes are arranged as follows:</p> <p>12S = 1–901</p> <p>16S = 902–2094</p> <p>RAG-1 = 2095–2733</p>
FIG. 15 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 15. Phylogenetic relationships of Chaetonotidae inferred from a Maximum Likelihood analysis. Values near branches show bootstrap support, values below 95 are omitted.
FIG. 14 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 14. Distribution of three species of Chaetonotus in South America. Green: Chaetonotus dadayi, Blue: C. paucisquamatus, Yellow: C. furcatus.
FIG. 12. Chaetonotus furcatus Kisielewski, 1991 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 12. Chaetonotus furcatus Kisielewski, 1991, schematic illustration. Dorsal view of the set of scales at the furca base. Scale bar: 20 μm.
FIG. 8 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 8. Chaetonotus paucisquamatus, light microscopy photomicrographs (DIC). A. Lateral view of the body—habitus, B, C. Dorsal view of the posterior dorsal region. Asc: Anterior scales, De: Denticle, Ks: Keeled scale, S: Scales, Si: spines, Ls: Lateral spine. Scale bars: A, 40 μm; B–C, 30 μm.
FIG. 7 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 7. Chaetonotus paucisquamatus, light microscopy photomicrographs (DIC). A. Lateral view of the body - habitus, B. Ventral view of the anterior region. C, Ventral view of the anterior and middle regions. Ad: Adhesive tube, Ct: Cephalic cilia tuft, Lc: Locomotory cilia, Mo: Mouth ring, Pe: Pleurae, Pr: Protonephridium, Si: Spines. Scale bars: A, 50 μm; B–C, 30 μm.
FIG. 11 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 11. Chaetonotus furcatus, light microscopy photomicrographs (DIC). A–F. Distinct optical focal plans of the posterior body end, dorsal view. Ks: Keeled scale, Lt: Lateral spine, Psc: Posterior sensory cilia, St: Dorsal spined scales. Scale bars: A–F, 20 μm.
FIG. 9 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 9. Chaetonotus paucisquamatus, light microscopy photomicrographs (DIC). A. Ventral view of the body—habitus, B. Dorsal view of the posterior region. C. Ventral view of the posterior region. Ad: Adhesive tube, Ks: Keeled scale, Lc: Locomotory cilia, Rs: Rounded scales, Vs: Ventral scales. Scale bars: A, 50 μm; B–C, 30 μm.
FIG. 4 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 4. Chaetonotus dadayi, light microscopy photomicrographs (DIC). A. Dorsal view of the body - habitus, B, C. Dorsal view of the anterior region, D. Dorsal view of the head and anterior trunk region, E. Detail of the dorsal denticulate spines. De: Denticle, S: Scales, Si: Spines, St: Dorsal spined scales. Scale bars: A, 50 μm; B, 10 μm; C, E, 30 μm; D 15 μm.
FIG. 3 in New records, neotype designation and DNA sequences of three species of Chaetonotus (Gastrotricha: Chaetonotidae) from Brazil
FIG. 3. Chaetonotus dadayi, light microscopy photomicrographs (DIC). A, C. Dorsal view of the posterior region, B, D. Ventral view of the posterior region. De: Denticle, Fs: Furcal ventral spines, Pts: Paired terminal dorsal scales, S: Scales, Si: Spines, Vs: Ventral scales. Scale bars: A–B, 20 μm; C–D, 50 μm.
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)
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.