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133 results for “Molecular phylogenetic analyses”
Figure 14 from: Capa M, Nygren A, Parapar J, Bakken T, Meißner K, Moreira J (2019) Systematic re-structure and new species of Sphaerodoridae (Annelida) after morphological revision and molecular phylogenetic analyses of the North East Atlantic fauna. ZooKeys 845: 1-97. https://doi.org/10.3897/zookeys.845.32428
Figure 14 Sphaerephesiaartabrensis comb. n., scanning electron micrographs (MNCN 16.01/18461). A Complete specimen, dorsal view B head and chaetiger 1, dorsal view C anterior end, ventral view D chaetigers 4 and 5, dorsal view E anterior chaetigers, ventral view F parapodia, chaetigers 7 and 8, ventral view (female) G genital opening, between chaetigers 7 and 8, detail (female) H parapodium, chaetiger 4, dorsal view I chaetal fascicle, mid-body chaetiger.
Figure 18 from: Capa M, Nygren A, Parapar J, Bakken T, Meißner K, Moreira J (2019) Systematic re-structure and new species of Sphaerodoridae (Annelida) after morphological revision and molecular phylogenetic analyses of the North East Atlantic fauna. ZooKeys 845: 1-97. https://doi.org/10.3897/zookeys.845.32428
Figure 18 Sphaerephesiamultichaeta sp. n. (NTNU-VM24809, ZMH P13351), scanning electron micrographs. A Anterior end, side view (NTNU-VM 24809) B head, frontal view (NTNU-VM 24809) C head, antero-ventral view (ZMH P13351) D posterior end, dorsal view (ZMH P13351) E posterior end, dorsal view (NTNU-VM 24809) F ventrum, showing arrangement of ventral papillae (ZMH P13351) G Chaetigers 4–6, antero-dorsal view (NTNU-VM 24809) H mid-body parapodia, lateral view (NTNU-VM 24809).
Figure 30 from: Capa M, Nygren A, Parapar J, Bakken T, Meißner K, Moreira J (2019) Systematic re-structure and new species of Sphaerodoridae (Annelida) after morphological revision and molecular phylogenetic analyses of the North East Atlantic fauna. ZooKeys 845: 1-97. https://doi.org/10.3897/zookeys.845.32428
Figure 30 Sphaerodoridiumcf.minutum, from Barents Sea (ZMBN 129500), scanning electron micrographs. A Complete specimen, dorsal view B anterior chaetigers, ventral view C dorsal macrotubercles (slightly stalked) and epithelial papillae, mid-body chaetigers D detached macrotubercle, showing short peduncle E ventral papillae, mid-body chaetigers F parapodia, chaetigers 1–4, side view G parapodium, chaetiger 5, anterior view H parapodium, chaetiger 3, posterior view I parapodium, chaetiger 5 J chaetal fascicle, mid-body chaetiger K chaetae, detail.
Figure 4 from: Capa M, Nygren A, Parapar J, Bakken T, Meißner K, Moreira J (2019) Systematic re-structure and new species of Sphaerodoridae (Annelida) after morphological revision and molecular phylogenetic analyses of the North East Atlantic fauna. ZooKeys 845: 1-97. https://doi.org/10.3897/zookeys.845.32428
Figure 4 Stylized drawings of selected dorsal (left) and ventral (right) segments of species of Clavodorum, Commensodorum, Euritmia and Geminofilum gen. n., showing number and arrangement of epithelial tubercles and papillae.
Figure 9 from: Capa M, Nygren A, Parapar J, Bakken T, Meißner K, Moreira J (2019) Systematic re-structure and new species of Sphaerodoridae (Annelida) after morphological revision and molecular phylogenetic analyses of the North East Atlantic fauna. ZooKeys 845: 1-97. https://doi.org/10.3897/zookeys.845.32428
Figure 9 Commensodorumcommensalis (Skagerrak, NTNU VM 73780). A Complete specimen, lateral view B anterior end, lateral view C mid-body chaetigers, lateral view D dorsal tubercle, mid-body chaetiger, detail E epithelium between dorsal tubercles, detail F parapodia, chaetigers 12–14, lateral view G parapodium, anterior chaetiger, lateral view H parapodium, mid-body chaetiger, anterior view I parapodium, posterior chaetiger J, K simple chaetae, anterior and posterior chaetigers L epithelium, detail, showing granules.
Figure 1 from: Capa M, Nygren A, Parapar J, Bakken T, Meißner K, Moreira J (2019) Systematic re-structure and new species of Sphaerodoridae (Annelida) after morphological revision and molecular phylogenetic analyses of the North East Atlantic fauna. ZooKeys 845: 1-97. https://doi.org/10.3897/zookeys.845.32428
Figure 1 Consensus tree obtained after Bayesian analysis of the combined nuclear and mitochondrial dataset. Coloured squared on nodes (as indicated in the bottom of the figure) indicate (from top left to bottom right): TBI, Bayesian posterior probabilities of total dataset; TML, Maximum Likelihood Boostrap values of total dataset; NUC, Bayesian posterior probabilities of nuclear partition; MIT, Bayesian posterior probabilities of mitochondrial partition.
Data from: Kakusan4 and Aminosan: two programs for comparing nonpartitioned, proportional, and separate models for combined molecular phylogenetic analyses of multilocus sequence data
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Data from: Phylogenetic analyses reveal molecular signatures associated with functional divergence among Subtilisin like Serine Proteases are linked to lifestyle transitions in Hypocreales
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Genome-wide molecular phylogenetic analyses and mating experiments which reveal the evolutionary history and an intermediate stage of speciation of a giant water bug
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FIGURE 10 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 10. Sueus striatulus female holotype (NHMW), 1.75 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
Fig. 9 Crangonyx parhobbsi n in A new species rises from beneath Florida: molecular phylogenetic analyses reveal cryptic diversity among the metapopulation of Crangonyx hobbsi Shoemaker, 1941 (Amphipoda: Crangonyctidae)
Fig. 9 Crangonyx parhobbsi n. sp.; holotype female, Madison Blue Spring, Madison County, Florida (UFID 051869), 7.25 mm: A, pleopod 1 (coupling hooks enlarged); B, pleopod 2 coupling hooks; C, pleopod 3 coupling hooks; D, epimera 1–3; E, uropod 1; F, uropod 2; G, uropod 3; H, telson. Scale bars 1 mm (A, D) and 0.5 mm (E–G)
Fig. 4 in A new species rises from beneath Florida: molecular phylogenetic analyses reveal cryptic diversity among the metapopulation of Crangonyx hobbsi Shoemaker, 1941 (Amphipoda: Crangonyctidae)
Fig. 4 Principal component analysis (PCA) scatterplot based on 18 morphometric variables collected from Crangonyx parhobbsi n. sp. and populations of C. hobbsi Axes PC 1 (gnathopod 2 carpus length) and PC 2 (uropod 3 outer ramus length to peduncle length) explain 68% and 7.8% of variation, respectively. CCLC Coastal Central Lowland Clade, NSRBC Northern Suwannee River Basin Clade
Fig. 2 in A new species rises from beneath Florida: molecular phylogenetic analyses reveal cryptic diversity among the metapopulation of Crangonyx hobbsi Shoemaker, 1941 (Amphipoda: Crangonyctidae)
Fig. 2 Time-calibrated multilocus phylogeny of selected members of Crangonyctoidea. Posterior probability is indicated by colored diamonds (black 0.95–1.0, gray 0.94–0.90, white 0.89–0.80), blue bars indicate the 95% HPD interval of clade age. Results of species delimitations presented right of tree. ABDG Automatic Barcode Gap Discovery; bPTP Bayesian Poisson Tree Processes; GMYC generalized
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International Brain Laboratory public data
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OpenNeuro
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