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477 results for “Molecular evolution”
Figure 1 from: Ottoni FP, Mattos JLO, Katz AM, Bragança PHN (2019) Phylogeny and species delimitation based on molecular approaches on the species of the Australoheros autrani group (Teleostei, Cichlidae), with biogeographic comments. Zoosystematics and Evolution 95(1): 49-64. https://doi.org/10.3897/zse.95.31658
Figure 1 Map of the samples obtained for the present work. Circles = Australoherosautrani species group; Red circles = Southern Mata Atlântica clade; Yellow circles = Upper/middle Paraíba do Sul river basin and adjacent drainages clade; Green circles – Northern Mata Atlântica clade; and Square = A. sp. Timbé do Sul. Localities: A.autrani = 1 and 18, A.barbosae = 2, 3, 10, 11 and 19, A.ipatinguensis = 4, A.macacuensis = 5, A.macaensis = 6, A.muriae = 9, A.perdi = 12, A.ribeirae = 14, A.robustus = 7, 8, 15, 16 and 20, A.sanguineus = 17, A.cf.capixaba = 13, and A. sp. Timbé do Sul = 21.
Explaining the luminosity spread in young clusters: proto and pre-main sequence stellar evolution in a molecular cloud environment
<p>MESA inlists associated with <a href="https://ui.adsabs.harvard.edu/?#abs/2018MNRAS.474.1176J">Jensen & Haugbølle (2018)</a>. MESA version 8845.</p> <p>Publication DOI: <a href="https://doi.org/10.1093/mnras/stx2844">10.1093/mnras/stx2844</a></p>
Fig. 6 in A dated molecular perspective of eucalypt taxonomy, evolution and diversification
Fig. 6. Bayesian analyses of macroevolutionary mixtures (BAMM) using the maximum likelihood (ML)
Figure 1. A in Phylogenetic relationships and evolution of Orbiniidae (Annelida, Polychaeta) based on molecular data
Figure 1. A, Protoaricia oerstedi, lateral view. B, Methanoaricia dendrobranchiata, anterior end. C, Naineris dendritica, anterior end. D, Naineris dendritica, notopodium with camerated chaetae. Abbreviations: cc, camerated chaetae; per, peristomal ring.
Figure 5 in Phylogenetic relationships and evolution of Orbiniidae (Annelida, Polychaeta) based on molecular data
Figure 5. Maximum likelihood tree of the combined dataset based on the GTR + I + G model of sequence evolution (–lnL = 14756.30445). The first value at each node represents the ML bootstrap support, the second the Bayesian posterior probability. Taxa which are discussed in detail in the discussion are in bold type.
Figure 3 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 3 - Ancestral reconstruction of host plant affiliations in the studied species of Chrysolina and Oreina. Terminal taxa are coded according to the available host plants records from the literature (Table 1). Pie charts at selected nodes show probabilities of each state from the Bayesian analysis in BayesTraits. Clades mentioned in the text are highlighted.
Figure 2 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 2 - Maximum likelihood phylogenetic tree obtained from the combined analysis of cox1, rrnL and H3. Node numbers represent bootstrap support values. Only support values higher than 0.7 are shown. Numbers accompanying the subgeneric classification of the Chrysolina species on the right correspond to the systematic groups defined by Bourdonné and Doguet (1991). Clades mentioned in the text are highlighted.
Figure 1 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 1 - Bayesian phylogenetic tree obtained from the combined analysis of cox1, rrnL and H3. Node numbers represent Bayesian posterior probability values. Only support values higher than 0.9 are shown. Numbers accompanying the subgeneric classification of the Chrysolina species on the right correspond to the systematic groups defined by Bourdonné and Doguet (1991). Clades mentioned in the text are highlighted.
Data for "A massively parallel double selection workflow for the evolution of molecular switches based on surface-display in Escherichia coli" by Givelet, et al., 2023
<p>Data related to a publication on "A massively parallel double selection workflow for the evolution of molecular switches based on surface-display in Escherichia coli"</p> <p> </p> <p>The data contains</p> <p>- FACS data for the images (organized in folders)<br> - images (tiff and jpg)<br> - sequence data (fasta)<br> - one video (mov)</p>
Data from: The relationship of recombination rate, genome structure, and patterns of molecular evolution across angiosperms
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Data from: Molecular evolution of shattering loci in U.S. weedy rice
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Data from: Evolution of reduced postcopulatory molecular interactions in Drosophila populations lacking sperm competition
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Data from: A multilocus timescale for oomycete evolution estimated under three distinct molecular clock models
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Data from: Conflicting selection alters the trajectory of molecular evolution in a tripartite bacteria–plasmid–phage interaction
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Data from: Flight loss linked to faster molecular evolution in insects
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Data from: Immune evasion and the evolution of molecular mimicry in parasites
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Data from: Using long-term experimental evolution to uncover the patterns and determinants of molecular evolution of an Escherichia coli natural isolate in the streptomycin treated mouse gut
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Data from: Molecular evidence for the compilospecies model of reticulate evolution in Armeria (Plumbaginaceae)
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Data from: Mitochondrial phylogeny of notothenioids: a molecular approach to Antarctic fish evolution and biogeography
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Data from: Testing the molecular clock using mechanistic models of fossil preservation and molecular evolution
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.