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116 results for “Plutellidae”
Fig. 8 in The effects of exogenous 20-hydroxyecdysone on the feeding, development, and reproduction of Plutella xylostella (Lepidoptera: Plutellidae)
Fig. 8. The longevity of adults fed on diet with exogenous dietary 20-hydroxy- ecdysone. The different lowercase letters above bars indicate statistically significant differences between mean longevity of adults fed on diet with different concentrations of 20-hydroxyecdysone (Tukey test, α = 0.05).
Fig. 4 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 4. The occurrence of 3 different antennal trichoid sensilla in relation to their widths (A, B and C) in male and female diamondback moth, Plutella xylostella. D shows the widths of the sensilla plotted against their lengths for the 3 trichoid sensilla types (Tr I, Tr II and Tr III). Data obtained from 3 females and 5 males.
Fig. 3 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 3. The number of each of 4 types of sensilla along various antennal segments (1–10 = proximal end, 11–20 = middle, 21–30 = distal end) of female (A, C) and male (B, D) diamondback moths, Plutella xylostella. The estimated number of sensilla (C, D) was calculated based on the surface area of each segment section, and by assuming that sensilla were present on 2/3 of the surface (mean ± S.E., n = 5–15 in females and 9–18 in males).
Fig. 7 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 7. Sensilla styloconica identified on the antennae of female (A, C and D) and male (B, E and F) Plutela xylostella. One sensillum styloconicum is located near the anterio-ventral end in each flagella subsegment (A, B). Usually 1 terminal sensory cone is present at the distal end in each sensillum styloconicum (C, D, E, F).
Fig. 2 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 2. Gross antennal morphology of female (A, B) and male (C) Plutella xylostella, and a part of a male antenna showing the presence of different morphological types of sensilla (D). Ac (sensilla auricillica); Cc (sensilla coeloconica); Ch (sensilla chaetica); Tr I (sensilla trichodea Type I); Tr II (sensilla trichodea Type II); Tr III (sensilla trichodea Type III).
Fig. 6 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 6. Detailed surface morphology of sensilla coeloconica (A, B and C) and sensilla auricillica (D, E and F) of the antennae of Plutela xylostella.
Fig. 8 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 8. Traces of the response spikes of the olfactory receptor neurons (ORNs) in class A trichoid sensilla of female Plutella xylostella in response to various green leaf volatiles. Each trace shows the extracellular signals for a period of 5 s. The scale bar indicates the stimulation for 0.1 s with corresponding test stimulus.
Fig. 9 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 9. Traces of the response spikes of the olfactory receptor neurons (ORNs) in class D trichoid sensilla of female Plutella xylostella in response to geraniol and (±)-linalool. Each trace shows the extracellular signals for a period of 5 s. The scale bar indicates the stimulation for 0.1 s with corresponding test stimulus.
Fig. 1 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 1. The length (triangles) and diam (squares) of each flagellar subsegment of the antennae of female (A) and male (B) diamondback moth, Plutella xylostella. Data obtained from 3 females and 5 males.
Fig. 5 in Antennal sensillum morphology and electrophysiological responses of olfactory receptor neurons in trichoid sensilla of the diamondback moth (Lepidoptera: Plutellidae)
Fig. 5. Detailed surface morphology of the sensilla trichodea (A, B, C and D) and sensilla chaetica (A, B and E) of the antennae of Plutela xylostella.
Figure 3 in The life history of Euborellia annulipes (Lucas) (Dermaptera: Anisolabididae) fed on larvae and pupae of Plutella xylostella (L.) Lepidoptera: Plutellidae
Figure 3. Weight (mean ± SE) of the nymphs in (a) first, (b) second, (c) third, (d) fourth, and (e) fifth instars and of (f) adults of Euborellia annulipes fed on an artificial diet, fourth instar larvae, and pupae of Plutella xylostella with different ages (days of development). Different letters on bars indicate significant differences among treatments in each treatment (as analyzed by the Student-Newman-Keuls test, p <0.05); ns = no significant differences among treatments.
Figure 2 in The life history of Euborellia annulipes (Lucas) (Dermaptera: Anisolabididae) fed on larvae and pupae of Plutella xylostella (L.) Lepidoptera: Plutellidae
Figure 2. Survival of Euborellia annulipes adult females fed on an artificial diet, fourth instar larvae, and pupae of Plutella xylostella at different ages (days of development). Different letters indicate significant differences among treatments according to the log-rank test (p <0.05).
Figure 1 in The life history of Euborellia annulipes (Lucas) (Dermaptera: Anisolabididae) fed on larvae and pupae of Plutella xylostella (L.) Lepidoptera: Plutellidae
Figure 1. Developmental time (mean ± SE) of the nymph stages of Euborellia annulipes fed on an artificial diet, fourth instar larvae, and pupae with different ages (days of development) of Plutella xylostella. Means followed by the same letter in the bars are not significantly different among treatments by the Student-Newmann-Keuls test (p <0.05).
Fig. 2 in Tyrosine hydroxylase, a potential target for the RNAi-mediated management of diamondback moth (Lepidoptera: Plutellidae)
Fig. 2. Larval feeding rate in treatments with various concentrations of dsRNA. Here, T1, T2, and T3 are 3 concentrations of TH dsRNA. The initial leaf disc area was 19.16 cm2.
Fig. 1 in Tyrosine hydroxylase, a potential target for the RNAi-mediated management of diamondback moth (Lepidoptera: Plutellidae)
Fig. 1. Extent of TH silencing in the larvae treated with various concentrations of dsRNA. The expression levels of TH were analyzed on the 3rd day of feeding on various concentrations of cognate TH dsRNA and 3.12 μg/cm2 non-target DREB1A (control) dsRNA. Error bars indicate the standard error of the mean of 3 replicates.
Fig. 1 in Parasitism of Plutella xylostella (Lepidoptera: Plutellidae) in southern Pakistan
Fig. 1. Frequency distribution of number of Oomyzus sokolowskii adults emerging from a single Plutella xylostella pupa.
Fig. 3 in Parasitism of Plutella xylostella (Lepidoptera: Plutellidae) in southern Pakistan
Fig. 3. Relationship between average Plutella xylostella pupal weight and average number of Oomyzus sokolowskii adults emerged per pupa.
Linked collectors and determiners for: Rhigognostis senilella (Zetterstedt, 1839) and R. marmorosella (Wocke, 1849): two valid species distinguishable in genitalia (Lepidoptera, Plutellidae).
Natural history specimen data linked to collectors and determiners held within, "Rhigognostis senilella (Zetterstedt, 1839) and R. marmorosella (Wocke, 1849): two valid species distinguishable in genitalia (Lepidoptera, Plutellidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7f7f36b4-db90-4f32-a034-4ff4502d24c3">https://bionomia.net/dataset/7f7f36b4-db90-4f32-a034-4ff4502d24c3</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7f7f36b4-db90-4f32-a034-4ff4502d24c3">https://gbif.org/dataset/7f7f36b4-db90-4f32-a034-4ff4502d24c3</a>. Formatted as a Frictionless Data package.
Resolution, validation and divergence of heterozygous haplotypes from pooled long read sequencing of the diamondback moth (Lepidoptera: Plutellidae)
<p>This data sets includes the full set of intermediate genome assemblies produced during our analyses. We make these available for researchers who may be interested in the variation between assembly results and variation within the study organism (<em>Plutella xylostella</em>) prior to removal during subsequent genome processing.</p>
Fig. 6 in New Records Of Yponomeutoid Moths (Lepidoptera, Yponomeutidae, Argyresthiidae, Ypsolophidae, Plutellidae) From The Palaearctic Region
Fig. 6. Ypsolopha albiramella: 1 — moth (habitus, dorsal); 2 — male genitalia (lateral view).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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