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173 results for “parasitoid biology”
Figure 1 in Biological attributes of Argentinian phorid parasitoids (Insecta: Diptera: Phoridae) of leaf-cutting ants, Acromyrmex and Atta
Figure 1. Ant size (head width in mm) distributions from foragers or waste removers from all nests pooled (in dark grey) discriminating those selected by different species of phorids (in white); light grey represents the intersection of both distributions). Left column, parasitoids of Acromyrmex: Myrmosicarius catharinensis selecting Acromyrmex heyeri foragers, Myrmosicarius cristobalensis selecting Acromyrmex lobicornis foragers, and Myrmosicarius crudelis selecting Acromyrmex crassispinus waste removers; right column, parasitoids of Atta vollenweideri: Myrmosicarius brandaoi, Myrmosicarius gonzalezae and Eibesfeldtphora trilobata. Asterisk denotes median values and black arrows indicate range of
Figure 5 in Biological attributes of Argentinian phorid parasitoids (Insecta: Diptera: Phoridae) of leaf-cutting ants, Acromyrmex and Atta
Figure 5. Natural parasitism rate by phorid species reared from Atta vollenweideri foragers, discriminated by seasons. The contribution of the two Myrmosicarius species was estimated together, as males were not possible to be identified. Numbers represent nest codes to follow parasitism through time.
Figure 3 in Biological attributes of Argentinian phorid parasitoids (Insecta: Diptera: Phoridae) of leaf-cutting ants, Acromyrmex and Atta
Figure 3. Seasonal parasitism rates by phorid parasitoids from of Atta and Acromyrmex ants. Boxes represent median and quartiles; circles are outliers.
Figure 2 in Biological attributes of Argentinian phorid parasitoids (Insecta: Diptera: Phoridae) of leaf-cutting ants, Acromyrmex and Atta
Figure 2. Adjusted least square regression lines for ant head sizes selected by phorids and the thorax width of the adult parasitoids that emerged from them. Above, parasitoids of Acromyrmex; below, Atta's phorids; note different scales in both axes.
FIGURE 2. A in Identification based on morphological and molecular characters of Phassus huebneri (Geyer) (Lepidoptera: Hepialidae), a ghost moth feeding on blackberry in Michoacán, Mexico: its biology and parasitoids
FIGURE 2. A phenogram inferred using the Neighbor-Joining method based on COI mitochondrial DNA partial sequences showing the relationship of nine samples from Mexico, Guatemala, and Costa Rica. Reference sequences from the different species of Phassus and the extern group (Gymelloxes terea) were downloaded from GenBank (see Table 1).
FIGURE 1 in Identification based on morphological and molecular characters of Phassus huebneri (Geyer) (Lepidoptera: Hepialidae), a ghost moth feeding on blackberry in Michoacán, Mexico: its biology and parasitoids
FIGURE 1. Phassus huebneri. (a) and (b) dorsal view of female and males, respectively, with extended wings (scale: 1 cm); (c) dorsal view of female in resting position; (d) dorsal view of larva; (e) and (f) typical signs of infestation and larva into the blackberry tunnel stem, respectively; (g) and (h) ventral view of the last abdominal segments of a pupa of male (with a small ridge on a circular area on the abdominal segment IX) and female (showing a differentiated longitudinal incision), respectively; (i) pupa over tunnel entrance, exposing their head and thorax, and (j) dorsal view of infertile eggs of 8 hours old. *Mexico, Colima, Comala, 1600 m, 19°27′ N 103°42′ W, 3–11.VI.2000, V.O. Becker leg.; CGCM 14.344 (CGCM). **Mexico, Michoacán, 25.VI.2008, Hwy. Villa Victoria—Coalcoman, Los Laureles, 18°42′ 16.86″N, 103°23′ 32.76″W, 1540 m, J. Haxaire & O. Paquit leg.; CGCM 23.361 (CGCM). CGCM—Collection Carlos G. C. Mielke, Curitiba, Paraná, Brazil.
Data from: Adaptive evolution of a generalist parasitoid: implications for the effectiveness of biological control agents
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Data from: Rapid evolution of symbiont-mediated resistance compromises biological control of aphids by parasitoids
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Data from: Sex determination meltdown upon biological control introduction of the parasitoid Cotesia rubecula?
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Data from: Trade-offs in parasitism efficiency and brood size mediate parasitoid coexistence, with implications for biological control of the invasive emerald ash borer
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Data from: New species based on the biological species concept within the complex of <em>Lariophagus distinguendus</em> (Hymenoptera, Chalcidoidea, Pteromalidae), a parasitoid of household pests
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Figure 1 from: Cruz-Bustos J, Montoya P, Pérez-Lachaud G, Valle-Mora J, Liedo P (2020) Biological attributes of diapausing and non-diapausing Doryctobracon areolatus (Hymenoptera, Braconidae), a parasitoid of Anastrepha spp. (Diptera, Tephritidae) fruit flies. Journal of Hymenoptera Research 78: 41-56. https://doi.org/10.3897/jhr.78.52269
Figure 1 Duration of development of non-diapausing and diapausing Doryctobracon areolatus females and males, parasitizing Anastrepha ludens larvae.
Figure 5 from: Cruz-Bustos J, Montoya P, Pérez-Lachaud G, Valle-Mora J, Liedo P (2020) Biological attributes of diapausing and non-diapausing Doryctobracon areolatus (Hymenoptera, Braconidae), a parasitoid of Anastrepha spp. (Diptera, Tephritidae) fruit flies. Journal of Hymenoptera Research 78: 41-56. https://doi.org/10.3897/jhr.78.52269
Figure 5 Net fecundity of Doryctobracon areolatus females from A non-diapausing and B diapausing cohorts.
Figure 3 from: Cruz-Bustos J, Montoya P, Pérez-Lachaud G, Valle-Mora J, Liedo P (2020) Biological attributes of diapausing and non-diapausing Doryctobracon areolatus (Hymenoptera, Braconidae), a parasitoid of Anastrepha spp. (Diptera, Tephritidae) fruit flies. Journal of Hymenoptera Research 78: 41-56. https://doi.org/10.3897/jhr.78.52269
Figure 3 Canonical analysis of adult parasitoids' morphological data from non-diapausing and diapausing Doryctobracon areolatus. A Comparison by type of development B comparison among females C comparison between sexes. The asterisk (*) indicates a significant difference.
Figure 2 from: Cruz-Bustos J, Montoya P, Pérez-Lachaud G, Valle-Mora J, Liedo P (2020) Biological attributes of diapausing and non-diapausing Doryctobracon areolatus (Hymenoptera, Braconidae), a parasitoid of Anastrepha spp. (Diptera, Tephritidae) fruit flies. Journal of Hymenoptera Research 78: 41-56. https://doi.org/10.3897/jhr.78.52269
Figure 2 Canonical analysis of morphological data from puparia containing non-diapausing and diapausing male and female Doryctobracon areolatus parasitoids. The asterisk (*) indicates a significant difference.
Figure 2 from: Kuramitsu K, Kosaki A, Ishihara T, Yamada H, Watanabe K (2016) Infestation of the woodwasp Tremex apicalis Matsumura (Hymenoptera, Siricidae) on the large-leaf dogwood Swida macrophylla (Wall.) with biological notes on its parasitoid wasps. Journal of Hymenoptera Research 52: 71-79. https://doi.org/10.3897/jhr.52.10060
Figure 2 - Hymenopteran insects landing on and inserting their ovipositor into the Swida macrophylla tree trunk. a Tremex apicalis female b Tremex apicalis ovipositor with abdomen inserted into the wood c Ibalia japonica female d Megarhyssa jezoensis. female. Scale lines = 10 mm.
Figure 4 from: Kuramitsu K, Kosaki A, Ishihara T, Yamada H, Watanabe K (2016) Infestation of the woodwasp Tremex apicalis Matsumura (Hymenoptera, Siricidae) on the large-leaf dogwood Swida macrophylla (Wall.) with biological notes on its parasitoid wasps. Journal of Hymenoptera Research 52: 71-79. https://doi.org/10.3897/jhr.52.10060
Figure 4 - Hymenopteran insects found in Swida macrophylla. a Tremex apicalis prepupa b pupa of Tremex apicalis female c Ibalia japonica pupa d pupa of Megarhyssa sp.1 female. Scale lines = 10 mm.
Figure 1 from: Kuramitsu K, Kosaki A, Ishihara T, Yamada H, Watanabe K (2016) Infestation of the woodwasp Tremex apicalis Matsumura (Hymenoptera, Siricidae) on the large-leaf dogwood Swida macrophylla (Wall.) with biological notes on its parasitoid wasps. Journal of Hymenoptera Research 52: 71-79. https://doi.org/10.3897/jhr.52.10060
Figure 1 - Infested Swida macrophylla at Botanical Garden, University of Tsukuba, Honshu, Japan. a a decayed Swida macrophylla infested with Tremex apicalis b Tremex apicalis adults and their emergence holes (red arrows) on the tree trunk. Scale lines = (a) 100 cm; (b) 100 mm.
Figure 3 from: Kuramitsu K, Kosaki A, Ishihara T, Yamada H, Watanabe K (2016) Infestation of the woodwasp Tremex apicalis Matsumura (Hymenoptera, Siricidae) on the large-leaf dogwood Swida macrophylla (Wall.) with biological notes on its parasitoid wasps. Journal of Hymenoptera Research 52: 71-79. https://doi.org/10.3897/jhr.52.10060
Figure 3 - Swida macrophylla wood infested with Tremex apicalis. a Wood discoloration in the cross section with Tremex apicalis infestation b Basidiocarp of Cerrena unicolor in the wood infested with Tremex apicalis c Longitudinal section through stem of the wood infested with Tremex apicalis and woodwasp larvae, pupae and larval tunnels. Scale lines = (a, c) 100 mm; (b)10 mm.
Figures 4-7 from: Tortorici F, Talamas EJ, Moraglio ST, Pansa MG, Asadi-Farfar M, Tavella L, Caleca V (2019) A morphological, biological and molecular approach reveals four cryptic species of Trissolcus Ashmead (Hymenoptera, Scelionidae), egg parasitoids of Pentatomidae (Hemiptera). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 153-200. https://doi.org/10.3897/jhr.73.39052
Figures 4-7 EPS, metapleural epicoxal sulcus, anterolateral extension of metapleuron: 4Trissolcus belenus [DISAFA-draw1465-HYM-0009] 5T. colemani [DISAFA-draw1466-HYM-0484] 6T. manteroi [DISAFA-draw1465-HYM-0430] 7T. semistriatus [DISAFA-draw1465-HYM-0227].
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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.