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15 results for “molecular specimen identification”
Fig. 3 in Molecular and Morphological Identification of Mola Sunfish Specimens (Actinopterygii: Tetraodontiformes: Molidae) from the Indian Ocean
Fig. 3. Photographs of the clavus of the two specimens of Mola sp. A from Oman (A: OMMSFC 1085; B: OMMSTC 1097). Solid arrows indicate clavus fin rays. Open arrows indicate ossicles. The double-headed arrow indicates the width of the smooth band. Question marks indicate unclear ossicles.
Fig. 4 in Molecular and Morphological Identification of Mola Sunfish Specimens (Actinopterygii: Tetraodontiformes: Molidae) from the Indian Ocean
Fig. 4. Specimens of Mola sp. A as illustrated in earlier literature. A, OMMSFC 1085, 91.6 cm TL, fig. 1 (fresh) in Jawad et al. (2012); B, OMMSTC 1097, 135.0 cm TL, fig. 1 (fresh) in Jawad (2013); C, KMNH VR 100,123, 325.0 cm TL, fig. 2C (stuffed) in Sawai et al. (2015). Arrows indicate bumps developing with age. Scale bars: 10 cm. Redrawn with permission from Jawad et al. (2012), Jawad (2013), and Sawai et al. (2015).
Fig. 1 in Molecular and Morphological Identification of Mola Sunfish Specimens (Actinopterygii: Tetraodontiformes: Molidae) from the Indian Ocean
Fig. 1. Correspondence between species names of Mola sunfishes in previous studies. The dotted arrows indicate unclear relationships, while the solid arrows indicate clear relationships.
FIGURE 3 in Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo
FIGURE 3. Results of Hierarchical Ascending Classification on the Principal Component Analysis are shown. Clusters correspond to those in figure 2.
FIGURE 5 in Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo
FIGURE 5. Strict Bayesian consensus tree obtained with the combined molecular data sets (12S rRNA and ITSS) including three species Euseius sp., Euseius fustis and outgroup species Typhlodromus pyri. Two main clades within the genus Euseius are emphasised. The numbers below branches indicate the posterior probability values.
FIGURE 1 in Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo
FIGURE 1. Sampling locations of different populations of species considered in this study: Euseius sp. (Site 1, 2, 3 and, 4) and Euseius fustis (Site 1, 2 and, 3).
FIGURE 4 in Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo
FIGURE 4. Genetic distances between and within Euseius sp., Euseius fustis and outgroup species Typhlodromus pyri for the two molecular markers used 12S rRNA (a) and ITSS (b).
FIGURE 4 in Confirmation of Aedes koreicus (Diptera: Culicidae) in Belgium and description of morphological differences between Korean and Belgian specimens validated by molecular identification
FIGURE 4. Differences in hindleg ornamentation of (a) Aedes koreicus from Belgium, (b) Aedes koreicus from peninsular Korea and (c) Aedes j. japonicus from Belgium.
Fig. 2 in Molecular and Morphological Identification of Mola Sunfish Specimens (Actinopterygii: Tetraodontiformes: Molidae) from the Indian Ocean
Fig. 2. The phylogenetic placements of the two specimens from Oman in the neighbor-joining tree of Mola species inferred from D-loop sequences available in the DDBJ/EMBL/GenBank databases. The Omani specimens are shown in bold. The numbers beside branches indicate bootstrap values (values of less than 50% and those within the Mola sp. B and Mola sp. C clades are not shown). The scale indicates expected nucleotide substitutions per site.
FIGURE 5 in Confirmation of Aedes koreicus (Diptera: Culicidae) in Belgium and description of morphological differences between Korean and Belgian specimens validated by molecular identification
FIGURE 5. SEM photo of the saddle and siphon of Aedes koreicus.
FIGURE 6 in Confirmation of Aedes koreicus (Diptera: Culicidae) in Belgium and description of morphological differences between Korean and Belgian specimens validated by molecular identification
FIGURE 6. SEM photo of an egg of Aedes koreicus.
FIGURE 2 in Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo
FIGURE 2. Dendrogram of Hierarchical Ascending Classification of 45 individuals studied and (see Table 2) five classes obtained with the K-means partitioning method. The five classes are indicated by the red, olive-green, light green, blue and purple clusters. Individuals of E. fustis, E. neodossei and E. nsp. belong to olive-light green, red and, blue-purple clusters.
Fig. 2 ITS phylogeny and genetic distances from the 13 in DNA barcoding of brown Parmeliae (Parmeliaceae) species: a molecular approach for accurate specimen identification, emphasizing species in Greenland
Fig. 2 ITS phylogeny and genetic distances from the 13 brown Pakmeliae species occurring in Greenland. a Cartoon representation of the maximum likelihood ITS topology obtained from 372 brown Pakmeliae specimens. Values at each node indicate non-parametric bootstrap support; only support values>50% are shown (complete ITS topology is shown in Supplementary Figure, S1). b Box plots of ITS genetic distances estimated for each species and all interspecific distances. 'CO' =Cetkakiella commixta; 'AG' =Melaielia agiata; 'HE' = M. hepatizoi; 'ST' = M. stygia; 'EL' = Melaiohalea elegaitula; 'EX' = M. exaspekatula; 'IN' = M. iifumata; 'OL' =M. olivacea; 'SE' =M. septeitkioialis; 'DI' =Moitaielia disjuicta; 'PA' = M.
Fig. 1 in DNA barcoding of brown Parmeliae (Parmeliaceae) species: a molecular approach for accurate specimen identification, emphasizing species in Greenland
Fig. 1 Brown Pakmeliae species occurring in Greenland. a – d Cetrarioid clade: a Cetkakiella commixta; b Melaielia agiata; c Melaielia hepatizoi; d Melaielia stygia. e – h The genus Melaiohalea: e Melaiohalea elegaitula; f Melaiohalea exaspekatula; g Melaiohalea iifumata; h Melaiohalea olivacea. i – l The genus Moitaielia: i
Identification of consensus molecular subtypes in muscle-invasive bladder cancer: A comparison of two sequencing methods and gene sets using FFPE specimens
GEO Series GSE225376. Homo sapiens. 30 samples. Type: Expression profiling by high throughput sequencing.
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