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347 results for “molecular ecology”
Figure 17 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 17 - Distribution of Chaetopteryx rugulosa group in Croatia.
Figure 14 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 14 - Chaetopteryx bucari sp. n., female genitalia, dorsal view.
Figure 13 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 13 - Chaetopteryx bucari sp. n., female genitalia, dorso-lateral view.
Figure 11 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 11 - Chaetopteryx bucari sp. n., male genitalia a-f parameres with sclerotized bristles.
Figure 5 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 5 - Chaetopteryx bucari sp. n., male genitalia, lateral view.
Figure 8 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 8 - Chaetopteryx bucari sp. n., male genitalia, caudal view.
Figure 12 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 12 - Chaetopteryx bucari sp. n., female genitalia, lateral view.
Figure 15 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 15 - Chaetopteryx bucari sp. n., female genitalia, ventral view.
Figure 4 from: Kučinić M, Szivak I, Pauls S, Balint M, Delić A, Vučković I (2013) Chaetopteryx bucari sp. n., a new species from the Chaetopteryx rugulosa group from Croatia (Insecta, Trichoptera, Limnephilidae) with molecular, taxonomic and ecological notes on the group. ZooKeys 320: 1-28. https://doi.org/10.3897/zookeys.320.4565
Figure 4 - Chaetopteryx bucari sp. n., male genitalia, lateral view.
Comparing dormancy in two distantly related tunicates reveals morphological, molecular, and ecological convergences and repeated co-option
GEO Series GSE198056. Polyandrocarpa zorritensis; Clavelina lepadiformis. 36 samples. Type: Expression profiling by high throughput sequencing.
Fig. 5 a,b Ecological niche models obtained for S. caeruleus populations. a Chihuahuan Desert, b in Molecular evidence for the origin and evolutionary history of the rare American desert monotypic family Setchellanthaceae
Fig. 5 a,b Ecological niche models obtained for S. caeruleus populations. a Chihuahuan Desert, b Tehuacán-Cuicatlán Valley
Fig. 6 in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 6 Resting-egg size in populations of Triops cancriformis and main lineages of T. mauritanicus (C = 'Cádiz' lineage; G = 'Gitanilla' lineage; MM = T. m. mauritanicus; MS = T. m. simplex; P = 'Portuguese' lineage; S. I = 'S.Iberian' lineage; T.c.c. = Triops c. cancriformis). Eggs from populations 082, 084, 058, 108–111, 119, 120–123, 130 and some eggs from population 103 obtained from lab cultures, remaining samples extracted from field-collected sediments; for details on populations see Table A1. Error bars indicate 95% confidence intervals
Fig. 5 in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. 5 Unrooted NJ tree of squared Mahalanobis distances between group centroids obtained from discriminant function analysis of morphological data on adult males of all known Triops mauritanicus lineages. Abbreviations: T.m.m. = T. m. mauritanicus; T.m.s = T. m. simplex
Fig. A1 in Phylogeny, molecular ecology and taxonomy of southern Iberian lineages of Triops mauritanicus (Crustacea: Notostraca)
Fig. A1 ML tree based on COI sequences (RAxML program, setting 'estimate proportion of invariable sites'; best evolutionary model obtained by Modeltest was TrN+I+G, selected by AIC). ML bootstrap support (obtained with RAxML) given for selected branches. Outgroups [GenBank sequences of Lepidurus apus (accession number EF189669), L. arcticus (AF209067), L. couesii (DQ310622), L. lemmoni (GQ144447), Triops longicaudatus (DQ310623 and GQ144444), T. australiensis (DQ889135), T. granarius (GQ144446)] removed for clarity. Samples labelled, as applicable, with short names of main phylogenetic lineages (Table A1) followed by museum specimen tissue voucher numbers (MTD-TW; sequences submitted to GenBank, acc. nrs. FN691430–FN691444) or by GenBank accessions, or labelled with GenBank accessions containing numbers but no lineage data (samples with GenBank taxon labels apparently resulting from erroneous species identification, i.e. samples submitted to GenBank with invalid species names). Abbreviations: T.c. = Triops cancriformis; T.m. = T. mauritanicus
FIGURE 9 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 9. Currently known distribution of Anotosaura collaris (left) and of Anotosaura, Colobosauroides and Dryadosaura (right). On the right, colors represent different biomes.
FIGURE 5 in Rediscovery of the Earless Microteiid Lizard Anotosaura collaris Amaral, 1933 (Squamata: Gymnophthalmidae): A redescription complemented by osteological, hemipenial, molecular, karyological, physiological and ecological data
FIGURE 5. Skeleton of Anotosaura collaris (MZUSP 103837), snout-vent length 42.8 mm. (A) Dorsal, (B) lateral, and (C) ventral views of the skull. (D) Ventral view of the pectoral girdle and forelimbs. (E) Ventral view of the pelvic girdle and hindlimbs. Abbreviations: bo, basioccipital; cl, clavicle; cm, columella; cn, coronoid; d, dentary; ept, epipterygoid; exc, exoccipital; f, frontal; fe, femur; fi, fibula; icl, interclavicle; is, ischium; j, jugal; m, maxilla; n, nasal; obp, orbitosphenoid; or, occipital recess; p, parietal; pa.pr, alar process of the prootic; pb, pubis; pd.p, descending process of the parietal; pf, prefrontal pl, palatine; pm, premaxilla; pof, postorbitofrontal; pt, pterygoid; q, quadrate; ra, radius; s.v, sacral vertebra; scc, scapulocoracoid; so, supraoccipital; spc, suprascapula; sq, squamosal; sra, surangular; st, sternum; st.r, sternal rib; ti, tibia; ul, ulna; v, vomer.
FIGURE 42 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 42. Waveform plots illustrating the lilting component of the male calling song of Pauropsalta kobongoides sp. nov. from four different localities, including: (i) Weengallon (28°22'S 149°03'E), (ii) Barmedman (34°09'S 147°23'E), (iii) Mount Hope (32°50'S 145°53'E), and (iv) Narromine (32°20'S 148°14'E). Mean phrase repetition rates (PRR) for each recording are provided to the right of each plot for reference. Recording (i) was made using RS1, while all other recordings were made using RS5 (see methods).
FIGURE 39 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 39. Illustrations of male pygofer and internal genitalia, viewed ventrally (left) and laterally from left (right): (A) Pauropsalta kobongoides sp. nov., 65km NNE. of St George (27°32'S 148°50'E); (B) P. corymbiae sp. nov., Bull's Gully via Adavale (25°58'S 144°59'E); (C) P. inversa sp. nov., Eidsvold (25°22'S 151°07'E); (D) P. rubristrigata (Goding and Froggatt), Mt Lofty (34°59'S 138°43'E); (E–F) P. ayrensis Ewart, (E) Eidsvold (25°22'S 151°07'E), (F) Mount Surprise (18°09'S 144°19'E). Scaling is the same for all illustrations except (D), which is scaled differently to the rest.
FIGURE 37 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 37. Male calling song structure of Pauropsalta decora sp. nov. illustrated in expanded waveform plots (explained in Fig. 8), showing both buzzing and lilting components. The spectrogram at the bottom of the figure displays song frequency, which exhibits no modulation between the song components in this species. This specimen was recorded in the field at Beardmore Dam via St George (27°51'S 148°38'E).
FIGURE 30 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 30. Waveform plots illustrating the lilting component of the male calling song of Pauropsalta granitica sp. nov. from six different localities, including: (i) Mount Carbine (16°35'S 145°11'E), (ii) 27 km W. of Mount Surprise (18°13'S 144°04'E), (iii) Einasleigh River (18°11'S 144°00'E), (iv) 75 km W. of Georgetown (18°16'S 142°41'E), (v) Savannah Way 2 km E. of Qld/ NT border (17°13'S 138°01'E), and (vi) 8 km W. of Calvert River via Borroloola (16°53'S 137°18'E). Mean phrase repetition rates (PRR) for each recording are provided to the right of each plot for reference. All recordings were made by D. Marshall using RS4, apart from recording (i), which was made using RS1 (see methods).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
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.