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179 results for “50(2)”
FIGURE 2. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50 in A review of the genus Tripylina Brzeski, 1963 (Nematoda: Triplonchida), with descriptions of five new species from New Zealand
FIGURE 2. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species, GenBank numbers, locations are listed for each taxon if known.
FIGURE 2. The Bayesian 50 in A new genus and species of cryptic Asian green pitviper (Serpentes: Viperidae: Crotalinae) from southwest China
FIGURE 2. The Bayesian 50% majority-rule consensus tree inferred from the combined dataset of 12S rRNA, 16S rRNA, cyt b and ND4, including third codon positions. Posterior probabilities (BI) /bootstrap values (MP) for the clades are shown adjacent to the node to which they refer. "-" indicates values <50.
FIGURE 2. 50 in Isleria, a new genus of antwren (Aves: Passeriformes: Thamnophilidae)
FIGURE 2. 50% Majority-rule Bayesian consensus tree of a subset of the Thamnophilidae showing that Isleria is not closely related to Myrmotherula or Epinecrophylla. Numbers at each node indicate posterior probability values.
FIGURES 47–50 in Nepticulidae (Lepidoptera) of East Asia (2). Study of a collection sample deposited at the Russian Academy of Sciences, with descriptions of new species and a checklist
FIGURES 47–50. Male genitalia of Ectoedemia species. 47, E. chasanella Puplesis, ventral view, slide no. AG 267 (ZIN); 48, same, dorsal view; 49, E. olvina Puplesis, capsule, ventral view (aedeagus removed), slide no. AG 266 (ZIN); 50, same, dorsal view. Scale bar 100 µm.
FIGURE 2. Bayesian 50 in Multilocus phylogeny of the Asian Lance-headed pitvipers (Squamata, Viperidae, Protobothrops)
FIGURE 2. Bayesian 50% majority-rule consensus tree of Protobothrops inferred from the combined mitochondrial and nuclear genes dataset analyzed using the models described in the text. Posterior probabilities from Bayesian inference and bootstrap support values from maximum likelihood analysis (where>50%) are given adjacent to respective nodes for major clades.
FIGURES 50–53 in Australasian ants of the subfamily Heteroponerinae (Hymenoptera: Formicidae): (2) the species-group of Heteroponera relicta (Wheeler), with descriptions of nine new species and observations on morphology, biogeography and phylogeny of the genus
FIGURES 50–53. Heteroponera pendergrasti sp. n., holotype worker, standard views (HW = 1.23mm, PW = 0.86mm, WL = 1.54mm, GW = 0.99mm).
FIGURE 2 in Solving a 50 - year Mystery: Rediscovery of Mesaspis antauges (Squamata: Anguidae)
FIGURE 2. Habitus of Mesaspis antauges in life. Top photo: subadult MZFC-HE 29312. Middle and bottom photos: adult male MZFC-HE 29310. Photos by Nelson Martín Cerón de la Luz.
Atmospheric Surface Flux Station #50 measurements (level 2 Processed), Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology (SPLASH), October 2021-June 2023
<p>Processed (Level 2) measurements and derived variables from the Atmospheric Surface Flux Station #50 (ASFS-50) deployed at the Avery Picnic site (38°58.3455' N, 106°59.8113' W) during the Study of Precipitation, the Lower Atmosphere, and Surface for Hydrometeorology (SPLASH) campaign near Gothic, Colorado, from October 2021 through June 2023. The ASFS measured variables of the surface energy budget, momentum flux, near-surface meteorology, and soil properties. Measurements of high-resolution 3-dimensional winds were observed at a nominal height of 4.6 m (depending on snow depth). Measurements of upwelling broadband radiation and meteorology observed from a nominal height of 2.9 m. The measurements are included in three netCDF files per day. The "sledmet" files are comprised of 1-min averages of measured and derived variables, including near-surface meteorology, surface skin temperature, snow depth, radiative fluxes, and conductive fluxes. The "sledseb" files are 10-min averages of the same variables as in the 1-min files and also include calculations of turbulent sensible and latent heat fluxes, momentum flux, and associated diagnostics, surface stress, and Monin-Obukhov parameters using both eddy covariance and bulk methodologies, all valid for the 10-min intervals. Both of these file types also contain a "_qc" variable paired with each measurement variable, or family of variables, that is a temporally-matched quality control code: 0 = good data, 1 = caution (data may be suspect), 2 = bad data, and -1 = missing (no data was collected). The "10hz" files include 3-dimensional winds and gas densities of water vapor and carbon dioxide that are quality-controlled, aggregated to a regular 10-Hz temporal grid, and (for winds) rotated into the earth coordinate frame. A detailed documentation of the measurement conditions, the processing steps taken to construct this data set, and other caveats and uncertainties will be provided in an accompanying published data manuscript.</p> <p>Note on update: v2_1 update provides double rotation ("dbl") turbulent fluxes in addition to planar fit ("pf"), as well as corrects a rotation problem with the v2 data that primarily affects the momentum fluxes. v2_1 only includes updates for the sledseb file set: for sledmet and sledwind10hz, continue to refer to v2 data set.</p>
FIGURE 2. Bayesian 50 in The taxonomic status of Deroceras hesperium Pilsbry, 1944 (Gastropoda: Pulmonata: Agriolimacidae), a species of conservation concern in Oregon, USA
FIGURE 2. Bayesian 50% majority-rule consensus tree composed from a concatenated dataset (CO1 and 16S; total of 975 bp) showing relations among Deroceras species, including samples morphologically identified as D. laeve (LA), D. hesperium (HE) or ambiguous (?). Numbers at nodes represent values of Bayesian posterior probabilities (PP, left) and Maximum Likelihood Bootstrap values (BS, right). Nodal support values ≥ 95% PP and ≥ 70 BS are illustrated and considered highly supported. Taxa and GenBank accession numbers: Deroceras golcheri Altena, CO1 JN248292; D. invadens Reise, Hutchinson, Schunack & Schlitt, CO1 JN248314; D. laeve, CO1 HM584699; D. panormitanum (Lessona & Pollonera), CO1 JN248311; D. reticulatum (Müller), CO1 FJ917286, 16S FJ917266; D. sp.1, CO1 FJ358222; Otina ovata (Brown) (Otinidae), CO1 F489389, 16S EF489310.
Fig. 2. Bayesian 50 in Three new tribes in Myrtaceae and reassessment of Kanieae
Fig. 2. Bayesian 50% majority rule consensus tree of combined nuclear data. Values shown on tree indicate clade support from Bayesian posterior probabilities (PP, above branches) and jackknife values from maximum parsimony analysis of>50% (jk, below). Thick lines received strong support 1.00 PP and jk ≥ 90%. New or revised tribal assignments are indicated in bold.
Fig. 2. Bayesian 50 in Generic and infrageneric limits of Phebalium and its allies (Rutaceae: Zanthoxyloideae)
Fig. 2. Bayesian 50% majority-rule consensus tree of combined molecular data, with thick lines showing supported clades (≥0.95 PP). Jackknife supports from MP analysis are indicated with icons above branches: 100% JK (solid triangles); 90–99% JK (solid squares); 75–89% JK (open triangles); 50–74% JK (open squares). This tree highlights relationships among the outgroup and early diverging clades. New or revised sectional assignments are indicated in bold. Clade numbering has been defined in the text.
FIGURE 50. Hedychridium parcobarbatum Linsenmaier, 1999 in The Palaearctic types of Chrysididae (Insecta, Hymenoptera) deposited in the Linsenmaier collection. Part 2. Elampini: genus Hedychridium Abeille de Perrin, 1878
FIGURE 50. Hedychridium parcobarbatum Linsenmaier, 1999, paratype, female. A) Habitus, dorsal view. B) Head, frontal view. C) Habitus, lateral view. D) Scutellum, metanotum, propodeum, posterior view. E) Metasoma, postero-lateral view. F) Metasoma, ventral view. Scale bar 1 mm.
FIGURE 2. Morphological comparission between C. agatiflora subsp. engleri and C in Misidentified For More Than 50 Years, Crotalaria Rosenii (Leguminosae, Papilionoideae, Crotalarieae), A Cultivated Species In Colombia And Ecuador
FIGURE 2. Morphological comparission between C. agatiflora subsp. engleri and C. rosenii. (A, C, E) C. rosenii, (B, D, F) C. agatiflora subsp. engleri; (A-B) inflorescences; (C-D) bracts; (E-F) bracteoles. Scales: A, 2 cm. B, 5 cm. C-D, 1 cm. E, 5 mm. F, 1 cm. Photographs: Andrés Fonseca-Cortés.
Figure 2 in Phylogenetics and phylogeography of red deer mtDNA lineages during the last 50 000 years in Eurasia
Figure 2. Bayesian phylogeny of Cytb haplotypes (1131 bp) from ancient and modern specimens calculated with MrBayes. Black circles at nodes indicate posterior probabilities above 0.7 and red circles posterior probabilities above 0.9. Names of haplotypes occurring only in modern samples are represented by haplotype names in bold, whereas those occurring in both modern and ancient samples are represented by italicized names, and those found only in ancient samples are in normal font. Names in bigger grey or black font indicate intermediate ancient haplotypes from elaphoid and wapitoid clades, respectively, that do not belong to any of the distinguished haplogroups. Detailed descriptions of haplotypes are presented in the Supporting Information, Tables S1, S2.
Figure 2. Bayesian 50 in Integrative taxonomy of West African Magelona (Annelida: Magelonidae): species with thoracic pigmentation
Figure 2. Bayesian 50% consensus tree from concatenated data of partial mitochondrial cytochrome c oxidase subunit I and large mitochondrial (16S) and nuclear ribosomal genes (28S). Annotated sequence groups were obtained with ABGD. Numbers on nodes correspond to posterior probabilities. Black dots mark significant and grey dots non-significant reciprocally monophyletic clades according to Rosenberg's (2007) test.
FIGURE 2. A. Bayesian 50 in Molecular phylogenetics of Sorocea (Moraceae)
FIGURE 2. A. Bayesian 50% majority rule consensus phylogenetic tree for Sorocea based on the trnL-F marker. B. Bayesian tree for Sorocea based on combined nuclear markers (ITS 4-5 and FA16180b). The numbers above the branches indicate support (maximum parsimony bootstrap, maximum likelihood bootstrap and Bayesian posterior probability). The initials of the collector's name and number are next to each species name.
FIGURES – 8. Cylindrocystis brebissonii (2–4), apical view (3), zygospore (4); Cylindrocystis brebissonii var. turgida (5–6), variability (6); Cylindrocystis crassa (7–8), cell aggregate (8); Mesotaenium caldariorum (9); Mesotaenium chlamydosporum (10–mucilage–wrapped cells); Mesotaenium endlicherianum (11); Mesotaenium macrococcum var. minus (12); Netrium digitus (13–16), N.digitus var. latum? (14), N. digitus var. lamelosum? (15), zigospore (16); Netrium interruptum var. minor (17–18), morphological variability (18); Gonatozygon kinahani (19–20), apex detail (20); Closterium acerosum (21–22), apex detail (22); Closterium dianae var. brevius (23–25), apex detail (24), young superior semicell without thickening (25); Closterium malinvernianiforme (26–28), apex detail (27), isthmus with a girdle band (28). Scale bar 10µm (2–12, 24–25, 27–28), 50 µm (13–23); 100 µm (26). in The forgotten world of subaerial desmids (Zygnematophyceae) in the Atlantic Forest, southeast Brazil
FIGURES – 8. Cylindrocystis brebissonii (2–4), apical view (3), zygospore (4); Cylindrocystis brebissonii var. turgida (5–6), variability (6); Cylindrocystis crassa (7–8), cell aggregate (8); Mesotaenium caldariorum (9); Mesotaenium chlamydosporum (10–mucilage–wrapped cells); Mesotaenium endlicherianum (11); Mesotaenium macrococcum var. minus (12); Netrium digitus (13–16), N.digitus var. latum? (14), N. digitus var. lamelosum? (15), zigospore (16); Netrium interruptum var. minor (17–18), morphological variability (18); Gonatozygon kinahani (19–20), apex detail (20); Closterium acerosum (21–22), apex detail (22); Closterium dianae var. brevius (23–25), apex detail (24), young superior semicell without thickening (25); Closterium malinvernianiforme (26–28), apex detail (27), isthmus with a girdle band (28). Scale bar 10µm (2–12, 24–25, 27–28), 50 µm (13–23); 100 µm (26).
FIGURE 2. Paracobitis starostini, about 50 in DNA barcode data confirm the placement of subterranean Noemacheilus (Troglocobitis) starostini Parin 1983 in the genus Paracobitis (Teleostei, Nemacheilidae)
FIGURE 2. Paracobitis starostini, about 50 mm SL; not preserved; Suvlyoyuk sinkhole, Turkmenistan. Lower picture by Vladimir B. Salnikov.
Fig. 2. Bayesian 50 in A molecular phylogeny of Boronia (Rutaceae): placement of enigmatic taxa and a revised infrageneric classification
Fig. 2. Bayesian 50% majority-rule consensus tree from the combined analysis of two nuclear (ITS, ETS) and three plastid markers (psbA–trnH, trnL–trnF and rbcL) showing the expanded section Boronia clade from Fig. 1. Thick lines show supported clades (≥0.95 PP). Jackknife percentages from MP analysis are indicated with symbols above branches: 100% JK (closed triangle); 90–99% JK (closed circle); (75–89% JK (open triangl)e; 50–74% JK (open circle). New or revised series assignments are indicated in bold.
Fig. 2 50 in Molecular phylogeny of the endemic fern genera Cyrtomidictyum and Cyrtogonellum (Dryopteridaceae) from East Asia
Fig. 2 50% majority rule consensus tree from four Bayesian analyses of 1,000,000 generations each of the rbcL data set, excluding burn-in trees. Posterior probability support values ≥ 0.90 from Bayesian analyses shown above branches, bootstrap support values>50% from Maximum Likelihood analyses below branches
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