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2,576 results for “host species”
Figure 2 in A new species of the pseudoscorpion genus Megachernes (Pseudoscorpiones: Chernetidae) associated with a threatened Sri Lankan rainforest rodent, with a review of host associations of Megachernes
Figure 2. Megachernes kanneliyensis sp. nov. (A) Holotype male, dorsal; (B) holotype male, ventral; (C) paratype female, dorsal; (D) paratype female, ventral.
Figure 2 in Multi-scale patterns in the host specificity of plant-dwelling arthropods: the influence of host plant and temporal variation on species richness and assemblage composition of true bugs (Hemiptera)
Figure 2. Non-metric multi-dimensional scaling (MDS) ordination showing hemipteran composition for all sampling periods with selected plant species superimposed.
Figure 5 in Multi-scale patterns in the host specificity of plant-dwelling arthropods: the influence of host plant and temporal variation on species richness and assemblage composition of true bugs (Hemiptera)
Figure 5. Annual cyclic pattern of the proportion of the effectively specialized fauna (squares) and singleton species (circles) for the total number of hemipteran species from each sampling period.
Figure 3 in Multi-scale patterns in the host specificity of plant-dwelling arthropods: the influence of host plant and temporal variation on species richness and assemblage composition of true bugs (Hemiptera)
Figure 3. Mean number of individuals (from SIMPER analysis) of dominant hemipteran species, during each sampling period, for most plant species.
Figure 1 in Multi-scale patterns in the host specificity of plant-dwelling arthropods: the influence of host plant and temporal variation on species richness and assemblage composition of true bugs (Hemiptera)
Figure 1. Interactions between plant species sampled and sampling period for (A) abundance (number of individuals) per plant and (B) species richness per plant (standard error bars are shown).
Figure 6 in Multi-scale patterns in the host specificity of plant-dwelling arthropods: the influence of host plant and temporal variation on species richness and assemblage composition of true bugs (Hemiptera)
Figure 6. Relationship between the effectively specialized fauna (squares) and singleton species (circles) for the number of hemipteran species from each sampling period and for the entire collection. An exponential decay equation is fitted for effectively specialized fauna, y = 2.973∗ exp (−0.00575∗ x) + (−1.478), R2 = 0.7598, and for singleton species, y = 22.53∗exp (−0.08466∗x) + 0.2614, R2 = 0.9873.
Figure 2 in Species status of two colour morphs of Eupelmus vesicularis (Hymenoptera: Eupelmidae) as revealed by allozyme electrophoresis, morphometric and host preference data
Figure 2. Scaterplots of pairs of variables for Eupelmus vesicularis light colour and dark colour forms. Note: All measurements in mm.
Figure 4 in Species status of two colour morphs of Eupelmus vesicularis (Hymenoptera: Eupelmidae) as revealed by allozyme electrophoresis, morphometric and host preference data
Figure 4. Enzyme electromorphs of Eupelmus vesicularis light colour form (left) and dark colour form (right). Notes: The direction of current flow is indicated by +; the specimen loading point is shown by an arrow.
Figure 3 in Species status of two colour morphs of Eupelmus vesicularis (Hymenoptera: Eupelmidae) as revealed by allozyme electrophoresis, morphometric and host preference data
Figure 3. Plot of the first two factors from the principal component analysis of the log-transformed raw measurements.
Figure 1 in Species status of two colour morphs of Eupelmus vesicularis (Hymenoptera: Eupelmidae) as revealed by allozyme electrophoresis, morphometric and host preference data
Figure 1. Measurements of forewing rudiment and hind tibia for morphometric analysis of Eupelmus vesicularis (female). Notes: ti3L, hind tibia length; waL, forewing apical part length; wbL, forewing base length.
Figure 1 in Two new Encarsia species (Hymenoptera: Aphelinidae) reared from eggs of Cicadellidae (Hemiptera: Auchenorrhyncha) in Argentina: an unusual new host association
Figure 1. Encarsia dalbulae sp. nov. (A) Head; (B) dorsal mesosoma; (C) forewing; (D) male genitalia; (E) antenna. Scale bars: 0.1 mm.
Figure 3 in Two new Encarsia species (Hymenoptera: Aphelinidae) reared from eggs of Cicadellidae (Hemiptera: Auchenorrhyncha) in Argentina: an unusual new host association
Figure 3. Encarsia mollicellae sp. nov. (A) Head; (B) dorsal mesosoma; (C) male genitalia; (D) mandibles; (E) details of antenna (arrows indicate sensilla); (F) antennae.
Figure 1 in Two new species of Hymenoepimecis (Hymenoptera: Ichneumonidae: Pimplinae) with notes on their spider hosts and behaviour manipulation
Figure 1. (A–E) Hymenoepimecis japi sp. nov. (A) Female, dorsal view; (B) fore- and hind wings; (C) metasoma dorsal view; (D) sternite I, lateral view; (E) head. (F–L). Webs of Leucauge roseosignata. (F) Normal web; (G) egg of H. japi sp. nov. attached on the abdomen of a female; (H) third instar larva consuming the host; (I) third instar larva holding the threads of the web hub; (J) cocoon web; (K) fixation point of the axial threads of the cocoon web on vegetation; (L) hub of the cocoon web. Scale bars: (A, G, H) 5 mm; (B, C, I, K, L) 1 mm; (D, E) 0.5 mm; (F) 10 cm; (J) 1 cm.
Figure 3 in Two new species of Hymenoepimecis (Hymenoptera: Ichneumonidae: Pimplinae) with notes on their spider hosts and behaviour manipulation
Figure 3. Webs of Manogea porracea. (A) Normal web showing the positions occupied by the female and by the male. (B) Cocoon web showing the positions occupied by the male, the horizontal sheet of the female (arrow close to male), and the cocoon (arrow below). Scale bars: 1 cm.
Figure 2 in Two new species of Hymenoepimecis (Hymenoptera: Ichneumonidae: Pimplinae) with notes on their spider hosts and behaviour manipulation
Figure 2. (A–F) Hymenoepimecis sooretama sp. nov. (A) Male lateral view; (B) female lateral view; (C) fore- and hind wings; (D) metasoma dorsal view; (E) sternite I lateral view; (F) head. (G–I) Webs of Manogea porracea. (G) Parasitoid invading a web; (H) larva of H. sooretama sp. nov. attached on the abdomen of a host female; (I) cocoon. Scale bars: (A–D) 1 mm; (E) 0.5 mm; (F) 0.1 mm; (G–I) 5 mm.
FIGURES 136–145 in <strong>The Eurasian species of <em>Xyela</em> (Hymenoptera, Xyelidae): taxonomy, host plants and distribution</strong>
FIGURES 136–145. Penis valves of Xyela species: X. curva group, X. julii group (part). Figs 138–139 and 141 reproduced from Blank et al. (2005).
FIGURES 66–85 in <strong>The Eurasian species of <em>Xyela</em> (Hymenoptera, Xyelidae): taxonomy, host plants and distribution</strong>
FIGURES 66–85. Color pattern of head of Xyela species: X. julii group (part). Legend: HT—holotype; PT—paratype.
FIGURES 105–120 in <strong>The Eurasian species of <em>Xyela</em> (Hymenoptera, Xyelidae): taxonomy, host plants and distribution</strong>
FIGURES 105–120. Ovipositor sheaths of Xyela species. All figures at same scale. Legend: HT—holotype; NT—neotype; PT—paratype.
FIGURE 21 in <strong>The Eurasian species of <em>Xyela</em> (Hymenoptera, Xyelidae): taxonomy, host plants and distribution</strong>
FIGURE 21. Records of Xyela lugdunensis (7 specimens from 4 collection sites) and natural distribution of the supposed host plant, Pinus nigra (solid line, combined from Meusel et al. 1965 and Barbéro et al. 1998).
FIGURES 95–104 in <strong>The Eurasian species of <em>Xyela</em> (Hymenoptera, Xyelidae): taxonomy, host plants and distribution</strong>
FIGURES 95–104. Ovipositor sheaths of Xyela species. All figures at same scale. Legend: HT—holotype; PT—paratype.
ScienceDex guides
Understand access before you commit
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.