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403 results for “wasp parasite”
Figure 6 in Revision of Aleiodes (Hemigyroneuron) parasitic wasps (Hymenoptera: Braconidae: Rogadinae) with reappraisal of subgeneric limits, descriptions of new species and phylogenetic analysis
Figure 6. Aleiodes (Hemigyroneuron) bengalensis sp. nov., CellD ® light micrographs. (A) Lateral habitus and associated mummified geometrid host remains; (B) mesoscutum, dorsal aspect; (C) head, dorsal aspect; (D) metasoma, dorsal aspect.
Figure 3 in Revision of Aleiodes (Hemigyroneuron) parasitic wasps (Hymenoptera: Braconidae: Rogadinae) with reappraisal of subgeneric limits, descriptions of new species and phylogenetic analysis
Figure 3. Aleiodes (Hemigyroneuron) apicale (Brues), CellD® light micrographs. (A) Habitus of holotype; (B, C) head, frontal aspect, holotype and second specimen respectively; (D) scutellum, metanotum and propodeum; (E) detail of fore wing venation.
Figure 5 in Revision of Aleiodes (Hemigyroneuron) parasitic wasps (Hymenoptera: Braconidae: Rogadinae) with reappraisal of subgeneric limits, descriptions of new species and phylogenetic analysis
Figure 5. Aleiodes (Hemigyroneuron) bakeri sp. nov., CellD ® light micrographs. (A) Detail of fore wing venation showing lack of sclerome and dark junction of veins 3-CU1 and CU1a; (B) hind wing; (C) mesopleuron and propodeum, lateral aspect, arrow indicating longitudinally carinate propodeal tubercle; (D) metasomal tergites 2 onwards.
Figure 1 in Revision of Aleiodes (Hemigyroneuron) parasitic wasps (Hymenoptera: Braconidae: Rogadinae) with reappraisal of subgeneric limits, descriptions of new species and phylogenetic analysis
Figure 1. Aspects of Aleiodes species not in the subgenus Hemigyroneuron, but with similar derived wing venation. (A) Member of undescribed Aleiodes species complex from SE Asia with reclivous spur from fore wing vein 1-1A; (B) undescribed Aleiodes species from the Gambia that was mistakenly referred to as Hemigyroneuron in Zaldivar-Riverón et al. (2004) with completely setose fore wing subbasal cell; (C) Aleiodes sp. near angulinervis He and Chen from India with strongly bent fore wing vein 1-SR+M; (D–F) undescribed Aleiodes species from Brunei with very Hemigyroneuron-like venation except bulla in hind wing vein cu-a short and precoxal suture deep, narrow and strongly crenulate.
Figure 2 in Revision of Aleiodes (Hemigyroneuron) parasitic wasps (Hymenoptera: Braconidae: Rogadinae) with reappraisal of subgeneric limits, descriptions of new species and phylogenetic analysis
Figure 2. Aleiodes (Hemigyroneuron) amoretae sp. nov., CellD ® (Olympus Corporation, Tokyo, Japan) light micrographs. (A) Lateral habitus; (B) head, dorsal aspect; (C) fore wing subbasal cell; (D) head, frontal aspect; (E) fore wing showing colour pattern; (F) anterior metasoma.
Data for: Sexual dimorphism in ichneumonine parasitic wasps (Hymenoptera: Ichneumonidae: Ichneumoninae) and the neglected influence of the ecological niche
<p>Sexual dimorphism is a ubiquitous phenomenon, but its ecological role and evolutionary significance are still poorly understood in many hyperdiverse lineages. We used geometric morphometrics to characterize and quantify sexual dimorphism in the head and mesosoma of 24 species in the wasp subfamily Ichneumoninae (Hymenoptera: Ichneumonidae). Our results show that sexual dimorphism varies substantially among species but is generally more pronounced on the head, with males occupying a noticeably smaller region of the morphospace than females. Phenotypic trajectory analyses showed a trend towards conserved trajectories in the difference between males and females, indicating that dimorphism seems to manifest as predictable shape changes across species. Species parasitizing pupae, particularly in concealed substrates, were found to have higher sexual dimorphism for the head than species parasitizing more exposed hosts such as larvae. For the mesosoma, this difference was not significant, with the degree of sexual dimorphism more influenced by phylogenetic history. We hypothesize that female head shape has adapted to the demands related to finding hosts in concealed habitats, whereas species that attack exposed or weakly concealed hosts have kept a generalized head shape in both sexes. These results highlight the importance of investigating intersex ecological differences as drivers of sexual dimorphism.</p>
FIGURE 2 in Sand wasp (Hymenoptera: Crabronidae) parasites emerging from mud wasp nests (Hymenoptera: Sphecidae) - a reliable host record of Thraxan Yeates & Lambkin (Diptera: Bombyliidae: Anthracinae) with description of the pupal exuviae of three Thraxan species
FIGURE 2 Thraxan luteus Yeates & Lambkin. Male Pupal exuvia: (a) dorsal; (b) lateral; (c) head, ventral; (d); head and thorax, ventral; (e) abdominal segments 2 to 4, dorsal; (f) cephalic spines, dorsal; (g) cephalic spines, frontal; (h) cephalic spines, lateral; (i) anal segment, dorsal; (j) anal segment, ventral. Scale bars = 1 mm (c, e–j); = 0.1 mm (a, b, d).
FIGURE 1 in Sand wasp (Hymenoptera: Crabronidae) parasites emerging from mud wasp nests (Hymenoptera: Sphecidae) - a reliable host record of Thraxan Yeates & Lambkin (Diptera: Bombyliidae: Anthracinae) with description of the pupal exuviae of three Thraxan species
FIGURE 1 Thraxan sp. Female Pupal exuvia: (a) dorsal; (b) lateral; (c) head, ventral; (d); head and thorax, ventral; (e) abdominal segments 2 to 4, dorsal; (f) cephalic spines, dorsal; (g) cephalic spines, frontal; (h) cephalic spines, lateral; (i) anal segment, dorsal; (j) anal segment, ventral. Scale bars = 1 mm (c, e–j); = 0.1 mm (a, b, d). Abbreviations: aap = anterior antennal process; absr = abdominal spiracle; dpp = dorsal posterolateral process; fsp = frontal spine; lesh 1 = fore leg sheath; lesh 2 = mid leg sheath; lesh 3 = hind leg sheath; lfsp = lateral facial spine; lsh = labral sheath; mfha = median facial hair; msh = maxillary sheath; pap = posterior antennal process; pash = palpal sheath; plfha = posterolateral facial hair; pmc = posterior mesothoracic callosity; prsh = proboscidal sheath; vpp = ventral posterolateral process; wsh = wing sheath.
FIGURE 3 in Sand wasp (Hymenoptera: Crabronidae) parasites emerging from mud wasp nests (Hymenoptera: Sphecidae) - a reliable host record of Thraxan Yeates & Lambkin (Diptera: Bombyliidae: Anthracinae) with description of the pupal exuviae of three Thraxan species
FIGURE 3 Thraxan misatulus Yeates & Lambkin. Male Pupal exuvia: (a) dorsal; (b) lateral; (c) head, ventral; (d); head and thorax, ventral; (e) abdominal segments 2 to 4, dorsal; (f) cephalic spines, dorsal; (g) cephalic spines, frontal; (h) cephalic spines, lateral; (i) anal segment, dorsal; (j) anal segment, ventral. Scale bars = 1 mm (c, e–j); = 0.1 mm (a, b, d).
FIGURE 4 in Sand wasp (Hymenoptera: Crabronidae) parasites emerging from mud wasp nests (Hymenoptera: Sphecidae) - a reliable host record of Thraxan Yeates & Lambkin (Diptera: Bombyliidae: Anthracinae) with description of the pupal exuviae of three Thraxan species
FIGURE 4 (a–c, g–j) Pison simillimum Smith, (e–f) old mud nest, (d, k–l) Thraxan sp.: (a) healthy larva; (b) healthy pupa; (c) parasitised larva; (d) pupa; (e–f) showing Thraxan pupa broken free from the mud nest; (g) larva ventral; (h) larva lateral; (i) pupa ventral; (j) pupa lateral; (k) young pupa lateral; (l) mature pupa lateral.
FIGURE 6 in Sand wasp (Hymenoptera: Crabronidae) parasites emerging from mud wasp nests (Hymenoptera: Sphecidae) - a reliable host record of Thraxan Yeates & Lambkin (Diptera: Bombyliidae: Anthracinae) with description of the pupal exuviae of three Thraxan species
FIGURE 6 Thraxan sp. Female: (a) dorsal; (b) lateral; (c) wing; (d) head, dorsal; (e) head, lateral; (f) head, profile; (g) abdomen, dorsal.
Low host specificity and broad geographic ranges in a community of parasitic non-pollinating fig wasps (Sycoryctinae; Chalcidoidea)
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Data from: Nest signature changes throughout colony cycle and after social parasite invasion in social wasps
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Data from: Niche differentiation and colonization of a novel environment by an asexual parasitic wasp.
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Data from: Parasitic wasps do not lack lipogenesis
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Data from: The geographic structure of selection on a coevolving interaction between social parasitic wasps and their hosts hampers social evolution
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Data for: Sexual dimorphism in ichneumonine parasitic wasps (Hymenoptera: Ichneumonidae: Ichneumoninae) and the neglected influence of the ecological niche
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Data from:Parasites and investment to host inflorescences in a fig tree-fig wasp mutualism
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Ant-hemipteran mutualism: parasitic wasps use cuticular hydrocarbons of ants to avoid them
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Comprehensive phylogenomic analyses re-write the evolution of parasitism within cynipoid wasps
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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