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513 results for “molecular characters”
Figure 8 from: Roh SJ, Park H, Kim S-H, Kim S-Y, Choi Y-S, Song J-H (2020) A new species of Galleria Fabricius (Lepidoptera, Pyralidae) from Korea based on molecular and morphological characters. ZooKeys 970: 51-61. https://doi.org/10.3897/zookeys.970.54960
Figure 8 Strict consensus tree of equally parsimonious cladograms based on partial COI gene sequences with bootstrap values.
Figure 7 from: Roh SJ, Park H, Kim S-H, Kim S-Y, Choi Y-S, Song J-H (2020) A new species of Galleria Fabricius (Lepidoptera, Pyralidae) from Korea based on molecular and morphological characters. ZooKeys 970: 51-61. https://doi.org/10.3897/zookeys.970.54960
Figure 7 Neighbor-Joining tree based on partial COI gene sequences with bootstrap values. Scale bar indicates the expected number of substitutions per site.
Figures 3- 4 from: Roh SJ, Park H, Kim S-H, Kim S-Y, Choi Y-S, Song J-H (2020) A new species of Galleria Fabricius (Lepidoptera, Pyralidae) from Korea based on molecular and morphological characters. ZooKeys 970: 51-61. https://doi.org/10.3897/zookeys.970.54960
Figures 3- 4 Male genitalia of Galleria species. 3G. mellonella (slide no. 21364) 4G. similis, paratype (slide no. 21367).
PLATE 3 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 3. Wing pattern of M. distans stat. n. (1) and M. aurelia (2).
Data from: Reassessment of Homology of Morphological Characters in Tetractinellid Sponges Based on Molecular Data
We compared four approaches for analyzing three data sets derived from staphylinoid beetles, a superfamily whose known species diversity is roughly comparable to that of vertebrates. One data set is derived from adult morphology and the two molecular data sets are from 12S ribosomal RNA and cytochrome b mitochondrial DNA. We found that taxonomic congruence following conditional data combination, herein called compatible evidence (CE), resolved more nodes compatible with an initial conservative hypothesis than did total evidence (TE), conditional data combination (CDC), or taxonomic congruence (TC). CE sets a base of nodes obtained by CDC analysis and then investigates what further agreement may arise in a universe where these nodes are accepted as given. We suggest that CE75-75 may be appropriate for future studies that aim to both generate a well-corroborated tree and investigate conflicts between data sets, partitions, and characters. CE75-75 is a 75% bootstrap consensus CDC tree followed by combinable-component consensus of a 75% bootstrap consensus of each homogeneous set of partitions having hierarchical structure.
FIGURE 2 in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 2. Formalized types of pronotal shape in Xyleborini, dorsal view; from Hulcr et al. (2007).
FIGURE 5. Fortiborus anisopterae, a in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 5. Fortiborus anisopterae, a typical representative of the genus. Size: 5.2 mm.
FIGURE 3 in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 3. Formalized types of pronotal shape in Xyleborini, lateral view; from Hulcr et al. (2007).
FIGURE 10 in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 10. Wallacellus piceus, the type species of the genus. Size: 2.3 mm.
FIGURE 1 in A new species of the giant pill-millipede genus Sphaerobelum Verhoeff, 1924 from northern Thailand, with an extensive description and molecular characters (Diplopoda: Sphaerotheriida: Zephroniidae)
FIGURE 1. Known distribution of giant pill-millipedes of the genus Sphaerobelum.
FIGURE 6 in Revision of Lepidonopsis humilis (Augener, 1922) and description of L. barnichae sp. nov. (Annelida: Polychaeta: Polynoidae) based upon morphological and molecular characters
FIGURE 6. Neighbor-joining tree of COI sequences of Lepidonopsis species using K2P distance.
FIGURE 38 in Revision of the genus Dinotoperla Tillyard, 1921 (Plecoptera: Gripopterygidae) using morphological characters and molecular data: Establishes two new genera, three new species and updates the larval taxonomy
FIGURE 38. General overview of leg showing terms for areas referred to in key and descriptions.
Figure 7 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 7 Haplotype network, based on ITS rDNA sequences from specimens of Montanelia sorediata. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 3 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 3 Haplotype network, based on ITS rDNA sequences from specimens of Melanelia agnata. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 6 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 6 Haplotype network, based on ITS rDNA sequences from specimens of Montanelia disjuncta. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 2 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 2 Haplotype network, based on ITS rDNA sequences from specimens of Cetraria commixta. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Supplementary material 1 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure S1
Figure 5 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 5 Haplotype network, based on ITS rDNA sequences from specimens of Melanelia stygia. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 9 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 9 Melanelia stygia specimens treated AM. stygia, AMNH 28243 (Iceland) BM. stygia, AMNH 16894 (Iceland) CM. stygia, C 19893 (Greenland) DM. stygia, C 19893 (Greenland) EM. stygia, Szczepańska 1160, WRSL (Poland) FM. stygia, Szczepańska 737, WRSL (Austria). Scale bars: 0.5 cm (A, C, E);1 mm (B, D); 0.5 mm (F).
Figure 4 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 4 Haplotype network, based on ITS rDNA sequences from specimens of Melanelia hepatizon. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
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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.