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940 results for “pupa”
Figure 2 in Predation and oviposition rates of Gaeolaelaps aculeifer and Parasitus bituberosus (Acari: Laelapidae and Parasitidae) on pre-pupae/pupae of Thrips tabaci (Thysanoptera: Thripidae)
Figure 2 Daily oviposition of Gaeolaelaps aculeiferandParasitus bituberosus on different densities
Abb. 1 in Wiederfund von Pupa uniarmata KÜSTER, 1856 (Gastropoda: Vertiginidae) in Triest (Friaul, Italien)
Abb. 1: Castello San Giusto. Fotonachweis: G. Fellner (Wolkersdorf i.W.)
Abb. 2 in Wiederfund von Pupa uniarmata KÜSTER, 1856 (Gastropoda: Vertiginidae) in Triest (Friaul, Italien)
Abb. 2: Kathedrale San Giusto. Fotonachweis: G. Fellner (Wolkersdorf i.W.)
Fig. 35 in Morphology of larvae and pupae of the genus Autocrates (Coleoptera: Trictenotomidae) and its phylogenetic implications
Fig. 35. Bayesian inference tree of trictenotomid species based on combined COI and 16S sequences.
Developmental period of Brachymeria nosatoi Habu (Hymenoptera: Chalcididae) on different host pupae
<p>Screening of intercrop herbivores as alternative hosts for <em>Brachymeria nosatoi</em> Habu (Hymenoptera: Chalcididae), the pupal parasitoid of coconut leaf eating caterpillar, <em>Opisina arenosella </em>Walker (Lepidoptera: Oecophoridae). The developmetal period of <em>B. nosatoi </em>(days) was recorded on pupae of five herbivores, including the natural host, on which the parasitoid had completed its life cycle. Between host species differences in developmental period were tested for using ANOVA in GenStat. The residuals were homogenous and normally distributed (Bartlett’s test: v2 = 4.13, df = 4, P = 0.389; Shapiro–Wilk test: W = 0.975, P = 0.377).</p>
Nutritional Value Formation of Silkworm Pupa at Different Growth Stages: Analysis from Multi-omics Perspective
<p>Silkworm pupa (Bombyx mori) is affinal drug and diet in China, which is rich in protein and human essential amino acids. However, it is unclear how the internal nutritional composition changes and the antioxidant situation throughout the transformation of a silkworm pupa into a silkworm moth. In this study, we investigated the samples from four growth stages during silkworm pupal emergence by integrating proteomics and metabolomics. The results of the systematic bioinformatics study revealed that the growth of silkworm pupae considerably altered the ribosome-related genetic expression, cuticle development, and folate metabolism. The partial redox-active amino acid levels and the level of peroxiredoxin 1 expression were consistent with the fact that the total antioxidant capacity was higher in 7- and 10-day-old silkworm pupae. As compared to silkworm pupae, the amounts of fatty acids rose while those of amino acids, peptides, and organic acids dropped. This research also discovered that the altered protein profiles of silkworm pupae were controlled by the differential expression of mTOR signaling proteins (V-ATPase, S6, eIF4E) and ubiquitin mediate proteins (RP-L40e, UBE2L3, UBE2N, SKP1, ELOC). This study provided a new scientific foundation for the development and utilization of edible insect silkworm pupa functional food products.</p>
Foraging is prioritized over nestmate rescue in desert ants and pupae are rescued more than adults
<p><span>Social animals, and ants, in particular, exhibit a range of cooperative behaviors. One such behavior is the rescue of group members, which cannot return to the nest by themselves. However, if several group members need to be rescued, how do ants prioritize whom to save first? Furthermore, when food is offered in parallel, do ants prioritize feeding over rescuing? We studied the rescue behavior of the desert ant <em>Cataglyphis</em> <em>niger</em>. Workers invest more time in rescuing pupae than adult workers, perhaps because the value of brood is higher than that of older workers serving as foragers. Specific rescue behaviors, pulling the trapped individual or digging around it, differed when directed towards adults or pupae: rescuing workers more often pulled pupae whereas they dug more around trapped adults. Rescuing workers did not prioritize living individuals over dead ones or intact workers over injured ones indicating that trapped individuals </span><span>we</span><span>re recognized chemically rather than by their morphology or behavior. Finally, workers prioritized foraging over rescuing, perhaps because fewer workers specialize in rescue behavior than in foraging. Our analysis indeed revealed that fewer workers both foraged and rescued trapped workers than expected by chance. In conclusion, ants that rescue others exhibit a complex set of behaviors, with varying attention and specific behaviors targeted at different individuals, perhaps according to the colony's needs. Our study is important for emphasizing a relatively neglected aspect of sociality (rescue of group members) and demonstrates that the attentions of rescues differ based on the trapped nestmate's life stage.</span></p>
Data from: The glue produced by Drosophila melanogaster for pupa adhesion is universal
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Cuticular hydrocarbons of pupae in the ant Formica exsecta
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Foraging is prioritized over nestmate rescue in desert ants and pupae are rescued more than adults
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Developmental timing of Drosophila pachea pupae is robust to temperature changes
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Impact of irradiated Drosophila melanogaster pupae on the quality and population parameters of Trichopria drosophilae
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Assessment of <em>Drosophila melanogaster</em> pupae killed by heat as hosts for rearing <em>Trichopria drosophilae</em>
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Host suitability and fitness-related parameters in Coptera haywardi ([Hymenoptera]: [Diapriidae]) reared on irradiated Ceratitis capitata ([Diptera]: [Tehritidae]) pupae stemming from the genetic sexing Vienna-8 strain with a temperature-sensitive lethal mutation
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FIGURE 4 in Description of larva and pupa of Phylloicus cressae Prather 2003 (Trichoptera Calamoceratidae) from a montane forest stream in the peri-urban area of Caracas Venezuela
FIGURE 4: Phylloicus cressae, larva; right thoracic legs I, II, III, posterior. 4A, foreleg; 4B, midleg; 4C, hind leg. Legs chaetotaxy: Coxa: 1 = posterior, dorsal, 3 = anterior, dorsal, proximal, 4 = anterior, dorsal, distal, 5 = anterior, median, 6 = anterior, median. Trochanter: 1 = posterior, median, 2 = posterior, ventral, distal. Femur: 1 = dorsal, median, 2 = dorsal, distal, 3 = posterior, distal, 4 = posterior, ventral, 5 = anterior, ventral, proximal, 6 = anterior, distal. Tibia: 2 = posterior, median, distal, 3 = posterior, dorsal, distal. Tarsus: 1 = posterior, ventral, distal, 2 = dorsal, distal, 3 = dorsal, distal.
FIGURE 3 in Description of larva and pupa of Phylloicus cressae Prather 2003 (Trichoptera Calamoceratidae) from a montane forest stream in the peri-urban area of Caracas Venezuela
FIGURE 3: Phylloicus cressae, larva; thorax, dorsal. 3A, pronotum; 3B, mesonotum; 3C, metanotum. Chaetotaxy of mesonotum and metanotum: DSa1 = tactile seta in dorsal Sa1, DSa2 = tactile setae (2 or 3) in dorsal Sa2, DSa3 = group of long and short tactile setae in dorsal Sa3.
FIGURE 5 in Redescription of the female, male, larva and pupa of Sabethes (Sabethoides) glaucodaemon (Dyar & Shannon) (Diptera: Culicidae) and description of the female genitalia
FIGURE 5. Pupa of Sabethes glaucodaemon. (A) Cephalothorax; (B) metanotum and abdomen. Abbreviations: CT, cephalothorax; GL, genital lobe; Mtn, metanotum; P, paddle; I–VIII, abdominal segments (terga on left; sterna on right); 1–14, setal numbers.
FIGURE 4 in Redescription of the female, male, larva and pupa of Sabethes (Sabethoides) glaucodaemon (Dyar & Shannon) (Diptera: Culicidae) and description of the female genitalia
FIGURE 4. Male genitalia of Sabethes glaucodaemon. (A) Paraprocts; (B) tergum VIII; (C) sternum VIII; (D) tergum and sternum IX. Abbreviations: Ppr, paraproct; S-VIII, sternum VIII; S-IX, sternum IX; Te-VIII, tergum VIII; Te-IX, tergum IX.
FIGURE 3 in Redescription of the female, male, larva and pupa of Sabethes (Sabethoides) glaucodaemon (Dyar & Shannon) (Diptera: Culicidae) and description of the female genitalia
FIGURE 3. Male of Sabethes glaucodaemon. (A) Habitus; (B) gonocoxite and gonostylus, mesal view; (C) gonocoxite and gonostylus, mesal view, insert: higher magnification showing cockscomb-like membranous process; (D) aedeagus, parameres and basal pieces, insert: higher magnification showing submedian and apical tergal arms. Abbreviations: A–E, C and M, lobes of gonostylus; BML, basal mesal lobe; Gc, gonocoxite; Gs, gonostylus; fp, fimbriated process of lobe C; tms, tergomesal setae of gonocoxite.
Screening and microsatellite data for Varroa infesting resistant honey bee pupae
<p>We investigated how the evolution of host resistance could affect the infesting population of Varroa mites. We screened a Varroa-resistant honey bee population near Toulouse, France, for a Varroa resistance trait: the inhibition of Varroa's reproduction in drone pupae. We then genotyped Varroa which had co-infested a cell using microsatellites. Across all resistant honey bee colonies, Varroa's reproductive success was significantly higher in co-infested cells but the distribution of Varroa between singly and multiply infested cells was not different from random. While there was a trend for increased reproductive success when Varroa of differing haplotypes co-infested a cell, this was not significant. This dataset may be useful to anybody interested in the evolution of host-resistance on the parasitic mite Varroa destructor. There were no legal or ethical considerations associated with this study.</p>
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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.