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292 results for “Indicator species”
FIGURE 4 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 4. The male terminalia of A. drakensbergensis. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 1 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 1. The male terminalia of A. nyeriensis. A, Dorsal view; B, Lateral view; C, Ventral view; D, Gonostylus from inner side; E, Hypandrial lobe; F, Dorsal structures; G, Basal part of gonostylus. Abbreviations: ap = apodeme, b par = basal part, cerc = cerci, d lb = dorsal lobe, gc = gonocoxite, hyp = hypoproct, hyp lb = hypandrial lobe, i br = internal branch, m lb = median lobe, ps cerc = pseudocerci, tg 9 = tergite 9. Scale bar = 1µm.
FIGURE 3 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 3. The male terminalia of A. mazumbaiensis. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 6 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 6. The male terminalia of A. keurbosensis. A, left: dorsal view, right: ventral view; B, Gonostylus from inner side; C, Basal part of gonostylus. Scale bar = 1µm.
FIGURE 11. Identification tree. Neighbor-Joining analysis involving 20 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 11. Identification tree. Neighbor-Joining analysis involving 20 CO1 sequences. Evolutionary distances were calculated using the p-distance model. Abbreviations: M = male, F = female. Sequences retrieved from BOLD (Ratasingham & Hebert 2007) are labelled with Process ID (see Appendix 1). See methods for details.
FIGURE 10. Variation between Afrotropical Allodia, gonostylus from inner side. A, A in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 10. Variation between Afrotropical Allodia, gonostylus from inner side. A, A. nyeriensis; B, A. mazumbaiensis; C, A. drakensbergensis; D, A. keurbosensis; E, A. jaschhofi; F, A. karkloofensis. Scale bar = 1µm.
FIGURE 9 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 9. The male terminalia of A. karkloofensis. A: left: dorsal view, right: ventral view, B: Gonostylus from inner side, C: Basal part of gonostylus. Scale bar = 1µm.
FIGURE 8 in Six new species of Afrotropical Allodia (Diptera: Mycetophilidae): DNA barcodes indicate recent diversification with a single origin
FIGURE 8. The female terminalia of A. jaschhofi. A, Lateral view; B, Dorsal view; C, Hypogynium, ventral view. Scale bar = 1µm.
FIGURE 2. Neurocranium. Yellow color indicates the naked areas around the snout plates. Corumbataia britskii, LBP 9590, a in Two new species of Corumbataia (Hypoptopomatinae: Loricariidae) from Rio Corrente, upper Rio Paraná basin, Brazil
FIGURE 2. Neurocranium. Yellow color indicates the naked areas around the snout plates. Corumbataia britskii, LBP 9590, a) dorsal view, b) lateral view. Corumbataia lucianoi, LBP 25543., paratype, c) dorsal view, d) lateral view. Corumbataia liliai, LBP 25544., paratype, e) dorsal view, f) lateral view.
FIGURES 21–22. Haplodrassus invalidus. 21 Epigyne. 22 Vulva. Arrow indicates posterior extensions, g in Ground spiders (Araneae: Gnaphosidae, Liocranidae, Prodidomidae) from the Greek islands Rodos, Symi and Karpathos, with the description of new species
FIGURES 21–22. Haplodrassus invalidus. 21 Epigyne. 22 Vulva. Arrow indicates posterior extensions, g: glandular heads.
Table S.4 - List of the indicator species obtained from the 10,000 SDMs analysis
<p>Oteiza, M (2019). Table S.4 - List of the indicator species obtained from the 10,000 SDMs analysis. MSc Thesis. Universidad Internacional Menéndez Pelayo</p>
Table S.5 - List of the indicator species obtained from the 1,000 SDMs analysis
<p>Oteiza, M (2019). Table S.5 - List of the indicator species obtained from the 1,000 SDMs analysis. MSc Thesis. Universidad Internacional Menéndez Pelayo</p>
FIGURE 3. Ultrametric tree showing focal groups. Node bars indicate 95 in Diversification in the mountains: a generic reappraisal of the Western Ghats endemic gecko genus Dravidogecko Smith, 1933 (Squamata: Gekkonidae) with descriptions of six new species
FIGURE 3. Ultrametric tree showing focal groups. Node bars indicate 95% HPD. Slant arrow indicates the point of divergence between Dravidogecko and Hemidactylus. Key geological events are indicated on the timeline: KT- Cretaceous/Tertiary boundary, IA-India's collision with Laurasia.
Fig. 8 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 8 Overview of South American Tantilla species. a T. selmae; b T. boipiranga; c T. melanocephala, Surinam pattern (above), Brazilian Cerrado pattern (middle), and transAndean pattern (bellow); d T. capistrata; e T. petersi. Illustrations by Lucas Kias
Fig. 4 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 4 Boxplots for selected variables based on the dataset D1, demonstrating the morphological differences among OTUs of the Tantilla melanocephala complex. Number of ventral scales in (a) females and (b) males; number of subcaudal scales in (c) females and (d) males. The thin (red) horizontal line within the box indicates the mean; the thick (black) horizontal line within the box indicates the median; the open circles are data points
Fig. 5 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 5 Specimens of Tantilla melanocephala complex from Brazil. a T. aff. melanocephala 1 from Bagé, RS, Brazil, IBSP 91713; b T. boipiranga from Morro do Pilar, MG, Brazil, IBSP 79060; c T. cf. melanocephala from Atibaia, SP, Brazil, IBSP 19376; d T. cf. melanocephala from Palmas, TO, Brazil, IBSP 65185; e T. cf. melanocephala from Aquidauana, MS, Brazil, IBSP 26757; f T. melanocephala from Belém, PA, Brazil, IBSP 15047
Fig. 7 in Integrated evidence sheds light on the taxonomy of the widespread Tantilla melanocephala species complex (Serpentes: Colubridae) and indicates the existence of a new species from southern South America
Fig. 7 Holotype of Tantilla selmae (IBSP 92724). Head views on the (a) dorsal, (b) right lateral, (c) left lateral, and (d) ventral. Body views on the (e) dorsal and (f) ventral. Horizontal scale bar: 2 mm. Vertical scale bar: 10 mm
Fig. 1 in Possible Indicators of Feeding Habit Types: Analysis of the Mouthparts of Five Dichotomius Hope (Coleoptera: Scarabaeidae) Species from Argentina
Fig. 1. Mouthparts of the five studied species of Dichotomius: D. carbonarius, D. sericeus, D. nisus, D. mormon, and D. depressicollis. A) Epipharynx and B) Labium (glossa and paraglossa) in dorsal view and hypopharynx. The D. nisus epipharynx shows the presence of a mite basally.
FIGURE 5 in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 5. Bispora betulina, conidiophores and conidia. a. From natural wood substrate (IMI 78573, K). Scale bar = 10 μm. b. From agar plate culture (IMI 96728, K). Scale bar = 20 μm.
FIGURE 2. Corynesporopsis acaciae. a in Phylogenetic placement of a new species of Corynesporopsis from dead acacia wood indicates occurrence of tretic conidiogenesis within Xylariales
FIGURE 2. Corynesporopsis acaciae. a. Habitat formed by stump of Acacia confusa at type locality. b. Ex-type culture on corn meal agar with red pigment diffusing from the dark brown colony.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.