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535 results for “Stripes”
Fig. 5 in sp. nov. (Perciformes: Labridae), a New Species of Striped Hogfish from Tahiti, with Range Extensions for Two Congeners.
Fig. 5. Bayesian phylogenetic analysis of the genus Terelabrus based on mitochondrial DNA cytochrome oxidase subunit I (COI). Node support values next to the branches correspond to the posterior probabilities of the Bayesian analysis. Scale bar is the number of nucleotide substitutions per site.
Fig. 3 in Partial molecular characterization of the mitochondrial genome of Baylisascaris columnaris and prevalence of infection in a wild population of Striped skunks
Fig. 3. Single nucleotide polymorphisms in the ND2 gene of B. columnaris, compared to B. procyonis. Nucleotide position numbers are shown at the top of the figure. Speciesspecific SNPs are shown in bold.
Fig. 1 in Partial molecular characterization of the mitochondrial genome of Baylisascaris columnaris and prevalence of infection in a wild population of Striped skunks
Fig. 1. Single nucleotide polymorphisms in the Cox1 gene of B. columnaris, compared to B. procyonis. Nucleotide position numbers are shown at the top of the figure. Italicized numbers represent the position number from a previously published partial sequence of the B. columnaris Cox1 gene (Franssen et al., 2013). Species-specific SNPs are shown in bold.
Fig. 2 in Partial molecular characterization of the mitochondrial genome of Baylisascaris columnaris and prevalence of infection in a wild population of Striped skunks
Fig. 2. Single nucleotide polymorphisms in the Cox2 gene of B. columnaris, compared to B. procyonis. Nucleotide position numbers are shown at the top of the figure. Italicized numbers represent the position number from a previously published partial sequence of the B. columnaris Cox2 gene (Franssen et al., 2013).
Fig. 4 in Partial molecular characterization of the mitochondrial genome of Baylisascaris columnaris and prevalence of infection in a wild population of Striped skunks
Fig. 4. Single nucleotide polymorphisms in several tRNA genes of B. columnaris, compared to B. procyonis, B. transfuga and B. schroederi. Nucleotide position numbers are shown at the top of the figure. SNPs which distinguish B. columnaris from other Baylisascaris species are shown in bold.
Рис. 2. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — фибриногенпоΑобные беΛки, b — гаΛектины, c — F-Λектины. УсΛовные обозначения и сокращения, зΑесь и ΑаΛее: горизонтаΛьные красные поΛоски — сигнаΛьный пептиΑ, горизонтаΛьные розовые — обΛасть низкой сΛожности, вертикаΛьные синие поΛоски — трансмембранная обΛасть, FBG — фибриногеновый Αомен, FTP — Αомен фукоΛектина, EGF — Αомен эпиΑермаΛьного фактора роста, EGF_CA — каΛьцийсвязывающий EGF-поΑобный Αомен, PAN_AP — APPLE-поΑобный Αомен, SCAN — обΛасть, богатая Λейцином, GLECT — гаΛактозосвязывающий Λектин, CLECT — Λектин C-типа, Gal-bind — гаΛактозиΑ–связывающий Λектин, ML — MD-2- поΑробный Αомен распознавания ΛипиΑов Fig. 2. Variants of the predicted domain structure of pattern recognition molecules from hemocytes of Planorbarius corneus molluscs. a — fibrinogen-related proteins, b — galectins, c — F-lectins. Symbols and abbreviations (here and further): horizontal red stripes — signal peptide, horizontal pink stripes — a low complexity region, vertical blue stripes — transmembrane region, FBG — fibrinogen-related domain, FTP — fucolectin domain, EGF — epidermal growth factor-like domain, EGF_CA — calcium-binding EGF-like domain, PAN_AP — APPLE-like domain, SCAN — leucine rich region, Apple — APPLE domain, GLECT — galactose-binding lectin, CLECT — C-type lectin, Gal-bind — galactoside-binding lectin, ML — MD-2-related lipid-recognition domain in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 2. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — фибриногенпоΑобные беΛки, b — гаΛектины, c — F-Λектины. УсΛовные обозначения и сокращения, зΑесь и ΑаΛее: горизонтаΛьные красные поΛоски — сигнаΛьный пептиΑ, горизонтаΛьные розовые — обΛасть низкой сΛожности, вертикаΛьные синие поΛоски — трансмембранная обΛасть, FBG — фибриногеновый Αомен, FTP — Αомен фукоΛектина, EGF — Αомен эпиΑермаΛьного фактора роста, EGF_CA — каΛьцийсвязывающий EGF-поΑобный Αомен, PAN_AP — APPLE-поΑобный Αомен, SCAN — обΛасть, богатая Λейцином, GLECT — гаΛактозосвязывающий Λектин, CLECT — Λектин C-типа, Gal-bind — гаΛактозиΑ–связывающий Λектин, ML — MD-2- поΑробный Αомен распознавания ΛипиΑов Fig. 2. Variants of the predicted domain structure of pattern recognition molecules from hemocytes of Planorbarius corneus molluscs. a — fibrinogen-related proteins, b — galectins, c — F-lectins. Symbols and abbreviations (here and further): horizontal red stripes — signal peptide, horizontal pink stripes — a low complexity region, vertical blue stripes — transmembrane region, FBG — fibrinogen-related domain, FTP — fucolectin domain, EGF — epidermal growth factor-like domain, EGF_CA — calcium-binding EGF-like domain, PAN_AP — APPLE-like domain, SCAN — leucine rich region, Apple — APPLE domain, GLECT — galactose-binding lectin, CLECT — C-type lectin, Gal-bind — galactoside-binding lectin, ML — MD-2-related lipid-recognition domain
GaN Stripes EBSD
<p>Raw EBSD Data for a GaN thin film sample with changing polarities and crystal structures as published in:</p> <p>Point-Group Sensitive Orientation Mapping Using EBSD. Winkelmann A., Nolze G., Himmerlich M., Lebedev V., Reichmann A. (2016) In: Holm E.A. et al. (eds) Proceedings of the 6th International Conference on Recrystallization and Grain Growth (ReX&GG 2016). Springer. The data was measured by G.Nolze, the sample was provided by V. Lebedev and M. Himmerlich<br> <a href="https://doi.org/10.1007/978-3-319-48770-0_41">https://doi.org/10.1007/978-3-319-48770-0_41</a></p> <p>The data in <a href="https://zenodo.org/api/files/0f9f0014-75e7-4f63-bf8d-1636448101a8/static_bam_ef.txt?versionId=9ca597c9-edd1-486d-b542-00a5dd1edf72">static_bam_ef.txt </a> is a static EBSD background image (taken from a different experiment with the same detector)</p>
Catalog of X-ray & WISE AGN in the SDSS-IV eBOSS Stripe 82X Survey
<p>This catalog contains 4847 spectroscopically identified X-ray sources and <em>WISE</em> AGN candidates within the 36.8 deg<sup>2</sup> SDSS-IV eBOSS Stripe 82X survey area. This survey overlaps the largest contiguous portion of the Stripe 82 X-ray survey (15.6 deg<sup>2</sup>). Based on X-ray luminosities or <em>WISE</em> <em>W1</em>-<em>W2</em> colors (based on Assef et al. 2018), there are 4730 AGN in this catalog: 1790 X-ray AGN and 3638 <em>WISE</em> AGN, of which 698 are X-ray and <em>WISE</em> AGN. The sample is 82% complete to <em>r</em> ~ 22, where the X-ray and <em>WISE</em> AGN samples are 88% and 82% complete, respectively, at this magnitude limit.</p> <p>The redshifts and spectroscopic classifications include spectra from the SDSS-IV eBOSS Stripe 82X survey, previous data releases of SDSS (Abazajian et al. 2009; Aihara et al. 201; Alam et al. 2015; Albareti et al. 2017; Abolfathi et al. 2019; Pâris et al. 2017, 2018), 2SLAQ (Croom et al. 2009), 6dF (Jones et al. 2004, 2009), and dedicated follow-up programs of Stripe 82 X-ray sources (LaMassa et al. 2016, 2017, and published here for the first time). Description of the catalog columns are given in LaMassa et al. (2019). </p>
Fig. 3 in Molecular characterization and phylogenetic analysis of Trypanosoma spp. detected from striped leaf-nosed bats (Hipposideros vittatus) in Zambia
Fig. 3. Species delimitation of Trypanosoma cruzi clade. Maximum likelihood phylogeny with outgroup (Trypanosoma lewisi) and with Baysian support values presented 17 linages recognized as species for the PTP analysis. Monophyletic groups in red indicated single putative species as well as terminal branches in blue.. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1 in Molecular characterization and phylogenetic analysis of Trypanosoma spp. detected from striped leaf-nosed bats (Hipposideros vittatus) in Zambia
Fig. 1. Giemsa staining of Trypanosoma sp. from ZB17–105 in BSK-M medium Representative images of ZB17-105 in the BSK-M medium are displayed at the same magnification (x1000). (a,b) flagellates resembling promastigote forms. (c) possibly epimastigote forms under division. K: kinetoplast, N: nucleus, F: flagellum.
Figure 1 in New records of the striped earwig Labidura riparia (Pallas, 1773) (Insecta: Dermaptera: Labiduridae) in Mexico
Figure 1. Labidura riparia from Nuevo León, Mexico. For A and B, scale bars: 5 mm; for C and D, scale bars: 1 mm. A. Dorsal aspect of adult male. B. Dorsal aspect of adult female. C. Photo of male genitalia. D. Illustration of male genitalia. For C and D the abbreviatures are the following: mp = metaparameres, pp = proparameres, ps-e = prepucial sack (erect), ps-r = prepucial sack (repose), v = virga, vv = virga vesicle. / Labidura riparia de Nuevo León, México. Para A y B, barras de escala: 5 mm; para C y D, barras de escala: 1 mm. A. Aspecto dorsal de un macho adulto. B. Aspecto dorsal de una hembra adulta. C. Foto de los genitales masculinos. D. Ilustración de los genitales masculinos. Para C y D las abreviaturas son las siguientes: mp = metaparámeras, pp = proparámeras, ps-e = saco prepucial (erecto); ps-r = saco prepucial (reposo), v = virga, vv = vesÍcula de la virga.
Figure 2 in New records of the striped earwig Labidura riparia (Pallas, 1773) (Insecta: Dermaptera: Labiduridae) in Mexico
Figure 2. Records of Labidura riparia in Mexico. New records represented with yellow triangles. Old records represented with blue circles; those of Langston and Powell (1975) could not be pointed, as they only mentioned "northern Baja California and Sonora". / Registros de Labidura riparia en México. Nuevos registros representados por triángulos amarillos. Registros antiguos representados por cÍrculos azules; aquellos de Langston y Powell (1975) no pudieron ser señalados, pues solo mencionaron "norte de Baja California y Sonora".
Figure 2 in First record of a flavistic black-striped field mouse (Apodemus agrarius) in Slovakia
Figure 2. Anomalously colored (flavism) female of the black-striped field mouse (Apodemus agrarius) trapped in the New Jewish Cemetery of Košice City, Slovakia. (a) Dorsal and (b) ventral view. Photos by the author.
Figure 1 in First record of a flavistic black-striped field mouse (Apodemus agrarius) in Slovakia
Figure 1. Location of coloration anomalies of black-striped mouse (Apodemus agrarius) trapped in the New Jewish Cemetery of Košice City, Slovakia. (Source: ©2015 Google, Image ©2015 CNES/Astrium).
Figure 3. Hyaena hyaena records from Turkey recorded before 2004 in Status and distribution of the Striped Hyaena, Hyaena hyaena, in Turkey: an updated assessment (Carnivora: Mammalia)
Figure 3. Hyaena hyaena records from Turkey recorded before 2004 (blue circles) and after 2004 (red circles), and the estimated current distribution areas in Turkey (blue filled areas).
Figure 2 in Autophagic chemicals effect to Atg8 and rice stripe virus relative expressions, and Wolbachia relative density in Laodelphax striatellus (Hemiptera: Delphacidae)
Figure 2. Comparison of Atg8, Wolbachia, and RSV relative expressions and densities. Vertical bar lines indicate the ± of SD. Significant difference was determined by the Student's t-tests accompanied by Bonferroni correction (0.05). Control was used as a reference. Asterisks represent a significant difference in genes between treatment and control (*p <0.05).
Figure 1 in Autophagic chemicals effect to Atg8 and rice stripe virus relative expressions, and Wolbachia relative density in Laodelphax striatellus (Hemiptera: Delphacidae)
Figure 1. Comparison of Atg8, Wolbachia, and RSV relative expressions and densities. Vertical bar lines indicate the ± of SD. Significant difference was determined by the Student's t-tests accompanied by Bonferroni correction (0.05). Control was used as a reference. Asterisks represent a significant difference in genes between treatment and control (*p <0.05).
Figure 1 in First release of a captured Sumatran striped rabbit Nesolagus netscheri (Schlegel, 1880) into the wild
Figure 1. Two young individuals of N.netscheri received by Nature Conservation Agency of Bengkulu Province from local people, late September 2021, Rejang Lebong District, Bengkulu Province (Photo: Said Jauhari).
Fig. 39. Character 54, ventrolateral stripe. A in PHYLOGENETIC SYSTEMATICS OF DART-POISON FROGS AND THEIR RELATIVES (AMPHIBIA: ATHESPHATANURA: DENDROBATIDAE)
Fig. 39. Character 54, ventrolateral stripe. A: State 1, wavy series of elongate, interconnected spots (espinosai, AMNH 104875). In this specimen the spotting forms a fairly contiguous wavy stripe, but it is common for the elongate spots to be separated, forming a broken stripe. B: State 2, straight (talamancae, AMNH 69829, photo by R. Zweifel). Note also that the pale dorsolateral stripe does not drop toward the thigh posteriorly (Character 52, state 3).
Fig. 41. Character 57, oblique lateral stripe structure. A in PHYLOGENETIC SYSTEMATICS OF DART-POISON FROGS AND THEIR RELATIVES (AMPHIBIA: ATHESPHATANURA: DENDROBATIDAE)
Fig. 41. Character 57, oblique lateral stripe structure. A: State 0, solid (pulchripectus, AMNH 137290). B: State 1, series of spots (mertensi, ICN 43698). C: State 2, diffuse (trilineatus, AMNH 171974).
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