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341 results for “oviposition”
Figure 1 in Oviposition performance of tephritid polyphagous Anastrepha fraterculus and Ceratitis capitata during three periods of exposure to fruit
Figure 1. Oviposition behaviour of A. fraterculus and C. capitata during three infestation periods of fruit.
Fig. 1 in Oviposition of Anastrepha fraterculus and Ceratitis capitata (Diptera: Tephritidae) in citrus fruits, and development in relation to maturity of orange fruits
Fig. 1. Frequency of oviposition by females of Anastrepha fraterculus (A) and Ceratitis capitata (B) when provided with oranges as an oviposition substrate.
Fig. 6 in Chemical constituents and toxic, repellent, and oviposition-deterrent effects of ethanol-extracted Myristica fragrans (Myristicaceae) oil on Bemisia tabaci (Hemiptera: Aleyrodidae)
Fig. 6. Greenhouse experiments testing repellency and oviposition deterrence of nutmeg essential oil against whiteflies. A. Repellency at 24 h, B. repellency at 48 h, C. oviposition at 24 h, D. oviposition at 48 h of exposure. Values are means of 8 replications. The mean numbers of adults or eggs were compared by paired t-tests at a significance level of P ≤ 0.05. Asterisk indicates a significant difference between control and treatment.
Fig. 3 in Chemical constituents and toxic, repellent, and oviposition-deterrent effects of ethanol-extracted Myristica fragrans (Myristicaceae) oil on Bemisia tabaci (Hemiptera: Aleyrodidae)
Fig. 3. Repellency of nutmeg essential oil to whitefly adults in laboratory experiments at 24, 48, and 72 h of exposure to concentrations of 10, 5, and 2.5 mg/mL. Values are the means of 8 replications. The mean numbers of adults were analyzed by 1-way ANOVA,with a Tukey HSD post-hoc test at a significance level of P <0.05; means topped by the same letter are not significantly different.
Fig. 1 in Effect of soil moisture on Plectris aliena (Coleoptera: Scarabaeidae) oviposition
Fig. 1. Mean numbers of eggs laid by Plectris aliena in laboratory cages with soil moisture levels of 2%, 11%, and 20%. Means with the same letter are not significantly different from one another (Tukey's multiple comparison test, 5% level). Vertical bars are standard errors of the means.
Fig. 1 in Feeding and oviposition of Diaphorina citri (Hemiptera: Liviidae) on Helietta apiculata (Sapindales: Rutaceae): a potential host?
Fig. 1. Survivorship of adults of Diaphorina citri on 2 rutaceous species. Means followed by the same letter did not differ in the glm test by quasi-binomial distribution (F = 5.126; df = 1,19; P = 0.036).
Fig. 2 in Feeding and oviposition of Diaphorina citri (Hemiptera: Liviidae) on Helietta apiculata (Sapindales: Rutaceae): a potential host?
Fig. 2. Mean number of eggs laid on 2 rutaceous species by Diaphorina citri during 72 h. Means followed by the same letter did not differ in the glm test by quasi-Poisson distribution (F = 14.723, df = 1,19; P = 0.012).
Figure 3 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 3. Mean abundance of mosquitoes collected in oviposition traps in three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil Means followed by the same letter do not differ by the Tukey test at <0.05. Vertical bars denote 1±SD. / Abundancia media de mosquitos recolectados en trampas de oviposición en tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil. Las medias seguidas por la misma letra no difieren por la prueba de Tukey en <0,05. Las barras verticales denotan 1 ± SD.
Figure 1 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 1. Location of three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil. URB: forest fragment located in the urban area of the city of Panambi-RS. RUR: forest fragment located in the rural area close to the urban area of Panambi-RS. NAT: forest fragment located in the rural area far from urban area of the city of Pejuçara-RS. / Ubicación de tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil. URB: fragmento de bosque ubicado en el casco urbano de la ciudad de Panambi-RS. RUR: fragmento de bosque ubicado en el área rural cercana al área urbana de Panambi-RS. NAT: fragmento de bosque ubicado en el área rural alejada del área urbana de la ciudad de Pejuçara-RS.
Figure 2 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 2. Cluster analysis (Morisita–Horn index) of the mosquitoes collected in oviposition traps in three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil. / Análisis de conglomerados (Índice Morisita-Horn) de los mosquitos recolectados en trampas de oviposición en tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil.
Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D in A note on the defence by Eurema blanda Boisduval (Lepidoptera: Pieridae) pupae in response to oviposition behaviour of the chalcid wasp Brachymeria sp. (Hymenoptera: Chalcididae)
Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D. Left and right ways movement of pupa in response to Brachymeria sp. E. Female Brachymeria sp. F. Newly emerged Eurema blanda from collected pupae.
Figure 2 in Effect of using forced and free oviposition methods to obtain eggs and larvae of Mansonia (Diptera: Culicidae) females from Rondonia, Brazil (western Amazon)
Figure 2 Number of wild females of different Mansonia species collected in Vila Teotônio, a rural region of Porto Velho, Rondonia, Brazil that laid eggs using free and forced oviposition methods in the laboratory. *Significant difference (P <0.05) in the expected frequency of females that oviposited.
Figure 3 in Effect of using forced and free oviposition methods to obtain eggs and larvae of Mansonia (Diptera: Culicidae) females from Rondonia, Brazil (western Amazon)
Figure 3 Number of eggs (A) and larvae (B) obtained in the laboratory from wild females of diferente Mansonia species collected in Vila Teotônio, a rural region of Porto Velho, Rondonia, Brazil. Different letters indicate significant differences (P <0.05) between species. Red lines indicate the mean.
Figure 3 in Diceraeus melacanthus (Dallas) (Hemiptera: Pentatomidae) development, preference for feeding and oviposition related to different food sources
Figure 3 Number of stink bugs (means ± SE) per food source associated with the feeding preference (trial 2) of Diceraeus melacanthus adults. Bars represent the average of evaluations performed during 24 and 48 hours. Means followed by the same letter do not differ according to the Tukey test (p ≥ 0.05). Food: soybean seedlings (SS), Commelina benghalensis branches (CbB), maize seedlings (MS), moistened soybean grains (MSG), no food preference (NONE). Analysis performed on data transformed to x + 0.5. nsAnova not significant.
Figure 1 in Diceraeus melacanthus (Dallas) (Hemiptera: Pentatomidae) development, preference for feeding and oviposition related to different food sources
Figure 1 Scheme (not drawn to scale) of the cages used for the oviposition preference experiment (trial 3), depicting the circles inside each cage in which different plants were randomly offered to the stink bugs.
Figure 2 in Diceraeus melacanthus (Dallas) (Hemiptera: Pentatomidae) development, preference for feeding and oviposition related to different food sources
Figure 2 Arena (not drawn to scale) used for the feeding preference experiment (trial 2) of Diceraeus melacanthus between different food sources.
Fig. 2 in Oviposition of Aedes aegypti Linnaeus, 1762 and Aedes albopictus Skuse, 1894 (Diptera: Culicidae) under laboratory and field conditions using ovitraps associated to different control agents, Manaus, Amazonas, Brazil
Fig. 2. Total Aedes aegypti and Aedes albopictus adults obtained through egg collection in ovitraps containing grass infusion (control) and associated with different control agents. Legend: *(gI + Bti) – grass infusion + Bacillus thuringiensis israelensis; *(gI + Ss) – grass infusion + Saccharopolyspora spinosa; *(dW + Th) – distilled water + Toxorhynchites haemorrhoidalis; *(gI + P) – grass infusion + Pyriproxyfen;* (gI) – grass infusion (control).
Fig. 1 in Oviposition of Aedes aegypti Linnaeus, 1762 and Aedes albopictus Skuse, 1894 (Diptera: Culicidae) under laboratory and field conditions using ovitraps associated to different control agents, Manaus, Amazonas, Brazil
Fig. 1. Ovitraps Positivity Index (OPI) and Egg Density Index (EDI) with association of grass infusion with different control agents using ovitraps in the period ranging from June to July 2015, Manaus – Amazonas – Brazil. Legend: *(gI + Bti) – grass infusion + Bacillus thuringiensis israelensis; * (gI + Ss) – grass infusion + Saccharopolyspora spinosa; * (dW + Th) – distilled water + Toxorhynchites haemorrhoidalis; *(gI + P) – grass infusion + Pyriproxyfen; * (gI) – grass infusion (control).
Fig. 3 in Do container size and predator presence affect Culex (Diptera: Culicidae) oviposition preferences?
Fig. 3. Predator abundance per liter as a function of sampling day and container size. The 100 and 200-L barrels are represented by the closed triangles and closed circles, respectively. The open circles represent the 15-L buckets, and asterisks represent the 1-L cups. The bars represent standard error. Different letters indicate different means among the treatments.
Fig. 2 in Do container size and predator presence affect Culex (Diptera: Culicidae) oviposition preferences?
Fig. 2. Numbers of Culex sp. 1 (left) and C. eduardoi (right) egg rafts as a function of sampling day and container size. The 100 and 200-L barrels are represented by closed triangles and closed circles, respectively. The open circles represent the 15-L buckets, and asterisks represent the 1-L cups. The bars represent standard error. Different letters indicate different means among the treatments.
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International Brain Laboratory public data
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OpenNeuro
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