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821 results for “Molecular Systematics”
Figures 6- 7 from: Lomeli-Flores JR, Rodríguez-Rodríguez SE, Rodríguez-Levya E, González-Hernández H, Gariepy TD, Talamas EJ (2019) Field studies and molecular forensics identify a new association: Idris elba Talamas, sp. nov. parasitizes the eggs of Bagrada hilaris (Burmeister). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 125-141. https://doi.org/10.3897/jhr.73.38025
Figures 6- 7 6Idris howardi, lectotype female (USNMENT00989875), head, mesosoma, metasoma, lateral view 7Idris elba, holotype female (FSCA 00033238), head, mesosoma, metasoma, lateral view. Scale bars: in millimeters.
Figures 1-5 from: Lomeli-Flores JR, Rodríguez-Rodríguez SE, Rodríguez-Levya E, González-Hernández H, Gariepy TD, Talamas EJ (2019) Field studies and molecular forensics identify a new association: Idris elba Talamas, sp. nov. parasitizes the eggs of Bagrada hilaris (Burmeister). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 125-141. https://doi.org/10.3897/jhr.73.38025
Figures 1-5 1 unparasitized egg of B. hilaris2 egg of B. hilaris from which I. elba emerged 3Idris elba, holotype female (FSCA 00033238), lateral habitus 4Idris elba paratype female (FSCA 00090587) fore and hind wings, dorsal view 5Idris elba, paratype male (FSCA 00033237), lateral habitus. Scale bars: in millimeters.
Figures 10-15 from: Lomeli-Flores JR, Rodríguez-Rodríguez SE, Rodríguez-Levya E, González-Hernández H, Gariepy TD, Talamas EJ (2019) Field studies and molecular forensics identify a new association: Idris elba Talamas, sp. nov. parasitizes the eggs of Bagrada hilaris (Burmeister). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 125-141. https://doi.org/10.3897/jhr.73.38025
Figures 10-15 10Idris elba, holotype female (FSCA 00033238), mesosoma, lateral view 11Idris howardi, lectotype female (USNMENT00989875), mesosoma, lateral view 12Idris sp., female (FSCA 00090464), mesosoma, lateral view 13Idris sp., female (FSCA 00033145), mesosoma, lateral view 14Idris sp., female (FSCA 00090465), mesosoma, lateral view 15Idris sp., male (FSCA 00090467), mesosoma, lateral view. Scale bars: in millimeters.
Figures 20- 21 from: Lomeli-Flores JR, Rodríguez-Rodríguez SE, Rodríguez-Levya E, González-Hernández H, Gariepy TD, Talamas EJ (2019) Field studies and molecular forensics identify a new association: Idris elba Talamas, sp. nov. parasitizes the eggs of Bagrada hilaris (Burmeister). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 125-141. https://doi.org/10.3897/jhr.73.38025
Figures 20- 21 20Idris howardi, lectotype female (USNMENT00989875), mesosoma and metasoma, dorsolateral view 21Idris elba, holotype female (FSCA 00033238), mesosoma and metasoma, dorsal view. Scale bars: in millimeters.
Fig. 4 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 4. Itatingamyia couriae Haseyama and de Carvalho, 2011, female genitalia UFMG-IDI-1600467.(A) Ovipositor, dorsal view.Scale:1 mm; (B) Ovipositor,ventral view. Scale: 1 mm; (C) Spermathecae. Scale: 0.2 mm.
Fig. 1 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 1. Molecular phylogenetic hypothesis using Maximum Likelihood of the combined mitochondrial (COI) and nuclear (AATS, CAD, and EF1-a) protein-coding genes for 68 species of Muscidae highlighting the position of Itatingamyia within the Cyrtoneurininae. Subfamily-level classification follows Haseyama et al. (2015). Numbers on nodes are SH-aLRT, aBayes, and Ultrafast Bootstrap support values.
Fig. 5 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 5. Known collection sites for Itatingamyia species. Blue squares: I. bivittata. Red circles: I. couriae. Darker green area: Atlantic forest biome. Yellowish green area: Cerrado biome. Yellowish gray area: Caatinga biome.
Fig. 3 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 3. Itatingamyia couriae Haseyama and de Carvalho, 2011, female UFMG-IDI- 1600467. (A) lateral habitus view. Scale: 3 mm; (B) dorsal habitus view. Scale: 3 mm; (C) head, frontal view. Scale: 0.75 mm; (D) egg, dorsal view. Scale: 0.3 mm.
Figure 2 in Molecular systematics and phylogeography of Bufotes variabilis (syn. Pseudepidalea variabilis) (Pallas, 1769) in Turkey
Figure 2. Phylogeny of Bufotes populations in Turkey, Greece, Albania, Russia, and Azerbaijan based on Bayesian and ML analysis of the combined mitochondrial genes (D-loop and 12S). Numbers above branches are Bayesian posterior probabilities, and numbers below are likelihood bootstrap support values. Single and double asterisks indicate nodes that are not strongly supported in both Bayesian and likelihood analysis (bootstrap values of <70% and Bayesian posterior probabilities of <0.95). IDs in front of the branches show DNA ID in Table 1.
Figure 2 in Molecular systematics of the genus Pseudocerastes (Ophidia: Viperidae) based on the mitochondrial cytochrome b gene
Figure 2. Maximum parsimony strict consensus tree of the 2 most parsimonious trees recovered in the analysis. Eristicophis macmahonii was used as an outgroup taxon for rooting the tree. The phylogenetic tree produced by NJ has the same topology as the presented tree with regard to the major lineages. Numbers above branches on the right side of slashes are bootstrap percentages (8000 replicates) for MP and on the left side are bootstrap percentages (6000 replicates) for NJ.
Figure 1 in Molecular systematics of the genus Pseudocerastes (Ophidia: Viperidae) based on the mitochondrial cytochrome b gene
Figure 1. Map showing the localities of collected Iranian specimens used in the study. Solid circle for the western specimens of P. urarachnoides (KF314714–16) and P. persicus (KF314707–10); solid square for the only specimen from the northern populations of P. persicus (KF314705); solid octagon for the only specimen of the central populations of P. persicus (KF314706); and solid triangle for specimens of the southern populations (KF314711–13).
Fig. 5 in Molecular phylogenetics and systematics of two enteric helminth parasites (Baylisascaris laevis and Diandrya vancouverensis) in the Vancouver Island marmot (Marmota vancouverensis)
Fig. 5. Bayesian consensus tree from Diandrya, related genera, and outgroup alignments of cox1, ITS1, and concatenated sequences from GenBank and this study (D. vancouverensis). Branch labels represent Bayesian posterior probabilities. Branch lengths are scaled to expected number of substitutions per site. See also Table 2.
FIGURE 20 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 20. Morphology of Rhexinema sancta-tomea ACOI 592 grown on MiEB12 medium.
FIGURE 17 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 17. Morphology of Rhexinema sarcinoidea UTEX 1710 grown on MiEB12 medium.
FIGURE 7 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 7. Morphology of Paulbroadya prostrata SAG 23.92 grown on 1/2SWES medium.
FIGURE 6 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 6. Morphology of Pseudendoclonium commune SAG 2051 grown on 1/2SWES medium.
FIGURE 5 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 5. Morphology of Pseudendoclonium submarinum SAG 2237 grown on SWES medium.
FIGURE 18 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 18. Morphology of Rhexinema planctonica UTEX 1570 grown on MiEB12 medium.
FIGURE 23 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 23. Morphology of Vischerioclonium submersum UTEX 1913 grown on 3NBBM medium.
FIGURE 22 in Toward a monograph of non-marine Ulvophyceae using an integrative approach (Molecular phylogeny and systematics of terrestrial Ulvophyceae II.)
FIGURE 22. Morphology of Tupiella speciosa CCALA 423 grown on 3NBBM medium.
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Allen Brain Atlas
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International Brain Laboratory public data
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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.