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155 results for “multilocus phylogeny”
Figure 11 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 11. Iberiarmadillidium psammophilum from El Pardo, male paratype: A, pereopod 1; B, pereopod 7; C, antenna; D, uropod; E, pleopod 1 exopod; F, pleopod 1 endopod; G, pleopod 2 exopod; H, pleopod 2 endopod; I, pleopod 3 exopod; J, pleopod 4 exopod; and K, pleopod 5 exopod.
Figure 9 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 9. Cristarmadillidium myrmecophilum from ~8 km north-east of Hoyo de Pinares, male paratype: A, pereopod 1; B, pereopod 7; C, antenna; D, uropod; E, pleopod 1 exopod; F, pleopod 1 endopod; G, pleopod 2 exopod; H, pleopod 2 endopod; I, pleopod 3 exopod; J, pleopod 4 exopod; and K, pleopod 5 exopod.
Figure 10 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 10. Iberiarmadillidium pinicola from ~8 km north-east of Hoyo de Pinares, male paratype: A, pereopod 1; B, pereopod 7; C, antenna; D, uropod; E, pleopod 1 exopod; F, pleopod 1 endopod; G, pleopod 2 exopod; H, pleopod 2 endopod; I, pleopod 3 exopod; J, pleopod 4 exopod; and K, pleopod 5 exopod.
Figure 8 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 8. Scanning electron photomicrographs showing details of the head of Iberiarmadillidium psammophilum (A), Iberiarmadillidium pinicola (B), Iberiarmadillidium sakura (C) and Cristarmadillidium myrmecophilum (D).
Figure 7 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 7. Scanning electron photomicrographs showing details of the telson of Iberiarmadillidium psammophilum (A), Iberiarmadillidium pinicola (B), Iberiarmadillidium sakura (C), Cristarmadillidium myrmecophilum (D) and Cristarmadillidium breuili (E).
Figure 6 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 6. Scanning electron photomicrographs showing details of pereonite 1 and 2 epimera of Iberiarmadillidium psammophilum (A), Iberiarmadillidium pinicola (B), Iberiarmadillidium sakura (C), Cristarmadillidium myrmecophilum (D) and Cristarmadillidium muricatum (E) (only epimera 1 is shown).
Figure 3 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 3. *BEAST chronogram of Armadillidiidae. Bars represent, highest posterior densities (95% HPD), and are shown only in highly supported nodes (posterior probabilities values ≥ 0.95).
Figure 4 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 4. Ancestral state reconstruction for the following characters: A, myrmecophily; B, schisma on pereon 1 epimera; and C, head morphology type. Reconstructions are shown on the species tree based on the multispecies coalescent implemented in *BEAST; highly supported nodes (posterior probabilities values ≥ 0.95) are marked with an asterisk.
Figure 5 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 5. Scanning electron photomicrographs showing the general habitus of Iberiarmadillidium psammophilum (A), Iberiarmadillidium pinicola (B), Iberiarmadillidium sakura (C), Cristarmadillidium myrmecophilum (D) and Cristarmadillidium muricatum (E).
Figure 2 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 2. Multilocus Bayesian phylogenetic reconstruction of Armadillidiidae, based on the full dataset and including the new taxa. Numbers at nodes correspond to posterior probabilities/maximum likelihood bootstrap values (values <0.7/50 are not shown). Symbols match those in Figure 1.
Figure 1 in Homoplasy and morphological stasis revealed through multilocus phylogeny of new myrmecophilous species in Armadillidiidae (Isopoda: Oniscidea)
Figure 1. Map showing the sampling localities of Iberiarmadillidium pinicola (black stars), I. psammophilum (purple stars), I. sakura (white star), Cristarmadillidium breuili (black circle), Cristarmadillidium muricatum (red circles) and C. myrmecophilum (yellow circles). Habitus in vivo: A, I. pinicola from Valdemaqueda, Madrid; B, I. psammophilum from El Pardo, Madrid; C, C. myrmecophilum from Casas de Don Antonio, Cáceres; D, C. muricatum from Punta de Benimaquia Cave, Alicante; and E, C. breuili from Bolumini Cave, Alicante.
Figure 12. Diagram showing the relationships between 27 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 12. Diagram showing the relationships between 27 genera of Afrotropical freshwater crabs and the higher taxonomy proposed here (based on Fig. 1 and Daniels et al., 2015: fig.1). Glabrithelphusa is not included because of the lack of sequencable DNA of this genus.
Figure 5. Gonopods 1 and 2 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 5. Gonopods 1 and 2 of one genus in Maritimonautini and three genera in Potamonautini. A–C, Maritimonautes obesus; D–F, Arcopotamonautes suprasulcatus; G–I, Lirrangopotamonautes dybowskii; J–L, Platythelphusa armata. Scale bar: A, B, G–L = 2.0 mm, C, F = 1.8 mm; D, E = 5.0 mm; L = 6.7 mm.
Figure 11 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 11. Maps showing the distributional ranges of (A) Deckeniidae, (B) revised Deckeniinae and (C) revised Hydrothelphusinae.
Figure 10 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 10. Maps showing the distributional ranges of the five genera of Potamonautini. (A) Arcopotamonautes, (B) Lirrangopotamonautes, (C) Platythelphusa, (D) Potamonautes s.s. and (E) Rotundopotamonautes.
Figure 6. Gonopods 1 and 2 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 6. Gonopods 1 and 2 of two genera in Potamonautini. A–C, Potamonautes anchetiae (CAW 450A), Angola. A, D, left G1 ventral view. D–F, Rotundopotamonautes loveni, Kenya, B, E, left G1 dorsal view; C, F, left G2 ventral view. Scale bar: A, B, D, E = 2.0 mm, C, F = 1.8 mm.
Figure 8 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 8. Maps showing the distributional ranges of (A) Potamonautinae, (B) Maritimonautini, (C) Erimetopini and (D) Potamonautini.
Figure 9 in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 9. Maps showing the distributional ranges of the four genera of Erimetopini (A) Erimetopus, (B) Longipotamonautes, (C) Nesonautes and (D) Occidensonautes.
Figure 1. A in A new multilocus phylogeny reveals overlooked diversity in African freshwater crabs (Brachyura: Potamoidea): a major revision with new higher taxa and genera
Figure 1. A, maximum clade credibility tree of the Afrotropical freshwater crab fauna based on four DNA loci with support values (posterior probabilities and bootstrap values of the ML analyses) with a geological timescale below the tree topology. Posterior probabilities> 0.95 pP (*above branch) and bootstrap values> 75% (* below branch) were regarded as statistically supported and are shown on the tree topology. Clade A, Liberonautinae, clade B, Potamonautinae, clade B1, Maritimonautini, clade B2, Erimetopini, clade B3, Potamonautini. B, detail of the maximum clade credibility tree of the Afrotropical freshwater crab fauna showing Clade B3 Potamonautini with the species included in the five genera within the tribe: Arcopotamonautes (B3[1]), Lirrangopotamonautes (B3[2]), Platythelphusa (B3[3]), Potamonautes s.s. (B3[4]) and Rotundopotamonautes (B3[5]).
Figure 6 in The story of a rock-star: multilocus phylogeny and species delimitation in the starred or roughtail rock agama, Laudakia stellio (Reptilia: Agamidae)
Figure 6. Summary of heuristic BPP delimitation based on the gdi under three topological scenarios (1, 2 and 3). Four BPP runs were combined in every step of a multiple analysis of progressive hierarchical lumping of sister taxa. Boxplots in the left (A) refer to the gdi of each well-supported phylogenetic subclade while those on the right (B) correspond to the three distinct evolutionary entities: Clade 1 (I), Clade 2 (II) and cypriaca (III).
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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.