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1,918 results for “molecular evidence”
Supplementary material 3 from: Hou Y, Chiba H, Zhu L, Chang Z, Ma L, Huang S, Wang M, Fan X (2021) Molecular and morphological evidence reveals a new genus of the subfamily Heteropterinae (Lepidoptera, Hesperiidae) from China. ZooKeys 1055: 55-67. https://doi.org/10.3897/zookeys.1055.68640
Table S3
Figure 4 from: Hou Y, Chiba H, Zhu L, Chang Z, Ma L, Huang S, Wang M, Fan X (2021) Molecular and morphological evidence reveals a new genus of the subfamily Heteropterinae (Lepidoptera, Hesperiidae) from China. ZooKeys 1055: 55-67. https://doi.org/10.3897/zookeys.1055.68640
Figure 4 Male genitalia of four genera of HeteropterinaeAPulchroptera pulchra (Leech, 1891) comb. nov. BCarterocephalus palaemon (Pallas, 1771) CHeteropterus morpheus (Pallas, 1771) DLeptalina unicolor (Bremer & Grey, 1852).
Figure 3 from: Hou Y, Chiba H, Zhu L, Chang Z, Ma L, Huang S, Wang M, Fan X (2021) Molecular and morphological evidence reveals a new genus of the subfamily Heteropterinae (Lepidoptera, Hesperiidae) from China. ZooKeys 1055: 55-67. https://doi.org/10.3897/zookeys.1055.68640
Figure 3 Wing venation of four genera of HeteropterinaeAPulchroptera pulchra (Leech, 1891) comb. nov. BCarterocephalus palaemon (Pallas, 1771) CHeteropterus morpheus (Pallas, 1771) DLeptalina unicolor (Bremer & Grey, 1852).
Supplementary material 2 from: Hou Y, Chiba H, Zhu L, Chang Z, Ma L, Huang S, Wang M, Fan X (2021) Molecular and morphological evidence reveals a new genus of the subfamily Heteropterinae (Lepidoptera, Hesperiidae) from China. ZooKeys 1055: 55-67. https://doi.org/10.3897/zookeys.1055.68640
Table S2
Supplementary material 1 from: Hou Y, Chiba H, Zhu L, Chang Z, Ma L, Huang S, Wang M, Fan X (2021) Molecular and morphological evidence reveals a new genus of the subfamily Heteropterinae (Lepidoptera, Hesperiidae) from China. ZooKeys 1055: 55-67. https://doi.org/10.3897/zookeys.1055.68640
Table S1
FIGURES 2–3 in Discovery of the female of Protohermes niger Yang & Yang (Megaloptera: Corydalidae): Sexual dimorphism in coloration of a dobsonfly revealed by molecular evidence
FIGURES 2–3. Habitus of Protohermes niger Yang & Yang. 2. Male; 3. Female. Scale bar =5.0 mm.
FIGURE 4 in Phylogenetic relationships in the genus Astropecten Gray (Paxillosida: Astropectinidae) on a global scale: molecular evidence for morphological convergence, species-complexes and possible cryptic speciation
FIGURE 4. Mediterranean and East Atlantic (see caption of Figure 3 for further explanations)
FIGURE 2 in Phylogenetic relationships in the genus Astropecten Gray (Paxillosida: Astropectinidae) on a global scale: molecular evidence for morphological convergence, species-complexes and possible cryptic speciation
FIGURE 2. Collection sites of Astropecten specimens and outgroup taxa.
Figure 6 in Two new species from the Hygrobates nigromaculatus-complex (Acariformes, Hydrachnidia, Hygrobatidae), based on morphological and molecular evidence
Figure 6 Hygrobates limnocrenicus sp. nov., holotype ♀, Mareza, Montenegro: A – coxal and genital field; B – palp, lateral view; C – palp, medial view; D – I-L-5 and -6; E – IV-L-5 and -6. Scale bars = 100 µm.
Figure 4 in Two new species from the Hygrobates nigromaculatus-complex (Acariformes, Hydrachnidia, Hygrobatidae), based on morphological and molecular evidence
Figure 4 Hygrobates lacrima sp. nov., ♂. Montenegro, Trebaljevo: A – idiosoma, ventral view; B – palp, medial view; C – IV-L-5 and -6. Scale bars = 100 µm.
Figure 1 in Two new species from the Hygrobates nigromaculatus-complex (Acariformes, Hydrachnidia, Hygrobatidae), based on morphological and molecular evidence
Figure 1 Phylogenetic tree (BI/FastTree) used for species-delimitation analysis. Values near branches show Bayesian posterior probability/Shimodaira-Hasegawa local supports; only values> 0.9/70 are shown.
FIGURE 3 in Cymbidium weishanense (Orchidaceae; Epidendroideae), a new species from China: evidence from morphological and molecular data
FIGURE 3. Cymbidium weishanense (A), C. concinnum (B) and C. insigne (C).
FIGURE 2 in Ainsliaea polystachya (Asteraceae), a new species from Fujian, China based on morphological and molecular evidence
FIGURE 2. Holotype of Ainsliaea polystachya.
FIGURE 1 in Molecular and morphological evidence of Onobrychis avanakensis, a new species from Iran
FIGURE 1. Habit of Onobrychis avanakensis (from holotype: DU).
Figure 15 in Revision of the genus Bosmina Baird, 1845 (Cladocera: Bosminidae), based on evidence from male morphological characters and molecular phylogenies
Figure 15. Bosmina (Lunobosmina) oriens: adult male from a pond on highway 1, Newfoundland, Canada (A, B, D–F, H, I), and from Hell Hollow Pond, Connecticut, USA (C, G, J). A, B, lateral view; C–E, head, lateral view; F, G, head, anterior view; H–J, mucro, inner view. Scale bars: 100 Mm.
Figure 3. A in The taxonomic status of some Atlanto-Mediterranean species in the subgenus Holothuria (Echinodermata: Holothuroidea: Holothuriidae) based on molecular evidence
Figure 3. A, distribution of 49 individuals of the Holothuria subgenus and four of Holothuria sanctori in the space defined by the first two axes of the principal components (PC) analysis on the basis of morphometric variables of the ossicles. The symbols indicate assignment to the three identified clades; labels of the individuals indicate the preliminary species identified (st, Holothuria stellati; m, Holothuria mammata; t, Holothuria tubulosa; d, Holothuria dakarensis; and s, Holothuria sanctori) and the locality according to Figure 1. B, the most important variables are presented. PC1 (+): mTArHdt, mTArHvt, mAdt, mAvt, mTArHvb. PC1 (-): sdXDHdt, sdNDHdt, mESIvb. PC2 (+): mESIdb, nESIdb, mArCvt. PC2 (-): mNHdb, sdPvb, sdXDvb, mPdb (see Table 2 and Appendix S1 for the meaning of the abbreviations of the variables).
Figure 5. Bootstrap 50 in Evolutionary systematics of the Indian mouse Mus famulus Bonhote, 1898: molecular (DNA/DNA hybridization and 12S rRNA sequences) and morphological evidence
Figure 5. Bootstrap 50% majority rule consensus tree from analysis of the morphological data. Bootstrap support values (100 heuristic bootstrap replicates, 10 addition replicates, random addition sequence) are shown above the branches.
FIGURE 17 in The genus Leucophenga (Diptera, Drosophilidae), part IV: the ornata species group from the East Asia, with morphological and molecular evidence (II)
FIGURE 17. Male terminalia: A, B. Leucophenga villosa sp. nov.
Figure 1 from: Diniz F, Silva G, Souza B, Pereira F, Lopes M, Valente S (2014) New molecular evidence for fragmentation between two distant populations of the threatened stingless bee Melipona subnitida Ducke (Hymenoptera, Apidae, Meliponini). Journal of Hymenoptera Research 38: 1-9. https://doi.org/10.3897/jhr.38.7302
Figure 1 - A Sampling sites of Melipona subnitida: NAT (coordinates: 5°48'04"S, 35°11'08"W; State of Rio Grande do Norte) and PAR (coordinates: 2°46'39"S, 41°51'59"W; on the border of the States of Piauí and Maranhão) B Clustering analysis using UPGMA for Melipona subnitida genotypes included in this study based on DICE similarity coefficient values. Numbers indicate bootstrap values for nodes retained by more than 50% of bootstrap replicates (1000 replications) C Scatter-plot of the principal coordinate analysis (PCoA) using ISSR loci. ■ PAR genotypes; ● NAT genotypes D Bar plot from Inferred population structure of using the Bayesian grouping admixture model-based program STRUCTURE (K = 2).
Figure 1 from: Qiao G, Chen J, Jiang L (2011) Taxonomic position of Hormaphis similibetulae Qiao & Zhang, 2004 (Hemiptera, Aphididae): molecular and biological evidence. ZooKeys 111: 11-18. https://doi.org/10.3897/zookeys.111.1284
Figure 1 - Phylogenetic tree reconstructed from the combined dataset of EF-1α and tRNA/COII sequences. The Bayesian topology and branch lengths are shown. Values above the branches are MP and ML bootstrap percentages, respectively, and Bayesian posterior probabilities are shown below the branches. The broken line indicates inconsistent branch.
ScienceDex guides
Understand access before you commit
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.