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23 results for “Mansonia”
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 4 in Diet composition affects the rearing of Mansonia humeralis (Diptera: Culicidae) immatures under laboratory conditions
Figure 4 Emergence rate (A) and male to female ratio (B) of Mansonia humeralis reared with different diets. Legend: DF: diluted fish food; DSF: diluted and sprinkled fish food, and DSYF: diluted fish food, sprinkled fish food and yeast. NS= No significant statistical differences (P>0.05).
Figure 2 in Diet composition affects the rearing of Mansonia humeralis (Diptera: Culicidae) immatures under laboratory conditions
Figure 2 Larval development of Mansonia humeralis reared with different diets. Legend: DF: diluted fish food; DSF: diluted and sprinkled fish food, and DSYF: diluted fish food, sprinkled fish food and yeast. Different letters indicate significant differences (P<0.05) between diets.
Figure 5 in Diet composition affects the rearing of Mansonia humeralis (Diptera: Culicidae) immatures under laboratory conditions
Figure 5 Number of females that laid eggs (A) and number of eggs laid (B) by Mansonia humeralis emerged from larvae reared with different diets. Legend: DF: diluted fish food; DSF: diluted and sprinkled fish food, and DSYF: diluted fish food, sprinkled fish food and yeast. * Indicate significant differences between diets. NS= no significant statistical differences (P<0.05) between diets
Figure 1 in Diet composition affects the rearing of Mansonia humeralis (Diptera: Culicidae) immatures under laboratory conditions
Figure 1 Larval mortality rate ofMansonia humeralis reared with different diets. Legend: DF: diluted fish food; DSF: diluted and sprinkled fish food, and DSYF:diluted fish food, sprinkled fish food and yeast. Different letters indicate significant differences (P<0.05) between the observation intervals regardless of the treatment. Different numbers indicate significant differences (P<0.05) between diets.
Figure 3 in Diet composition affects the rearing of Mansonia humeralis (Diptera: Culicidae) immatures under laboratory conditions
Figure 3 Pupation rate of Mansonia humeralis reared with different diets. Legend: DF: diluted fish food; DSF: diluted and sprinkled fish food, and DSYF: diluted fish food, sprinkled fish food and yeast. Different letters indicate significant differences (P<0.05) between diets.
FIGURE 3 in Mansonia uniformis (Diptera: Culicidae), a genus and species new to southwestern Asia, with a review of its medical and veterinary importance
FIGURE 3. Females of Mansonia uniformis, collected in Ghasreghand (Qasr-e Qand) County, Sistan and Baluchistan Province, southeastern Iran, June and July 1999. (a) General view, (b) postspiracular setae, (c) proboscis, (d) wings, (e) thorax (dorsal view), (f) hindleg, (g) ungues (claws) of foreleg, (h) abdomen (dorsal view) and (i) abdomen (lateral view).
FIGURE 1 in Description and revalidation of Mansonia (Mansonia) fonsecai (Pinto) (Diptera: Culicidae)
FIGURE 1. Mansonia fonsecai. (A) Pupal metanotum and abdomen (dorsal and ventral views), (B) Pupal cephalothorax, (C) Pupal respiratory trumpet, (D) Male genitalia (dorsal and ventral views), (E) Male tergum VIII (ventral view), (F) Male gonostyle (lateral view), (G) Paramere and gonocoxal apodema (dorsal view), (H) Male aedeagus (dorsal view). Scale bars in mm.
FIGURE 2 in Description and revalidation of Mansonia (Mansonia) fonsecai (Pinto) (Diptera: Culicidae)
FIGURE 2. Mansonia fonsecai. (A) Larval head (dorsal and ventral views), (B) Larval thorax and abdomen (dorsal and ventral views), (C) Larval mental plate (dorsal view), (D) Female tergum VII, (E) Female tergum VIII, (F) Larval terga VII, VIII, X, and siphon (lateral view), (G) Larval comb scales of tergum VIII. Scale bars in mm.
FIGURE 2 in Mansonia (Mansonia) iguassuensis sp. nov. (Diptera: Culicidae) from Brasil
FIGURE 2. Mansonia iguassuensis sp. nov. (A) Larval head (dorsal and ventral views), (B) Larval thorax and abdomen (dorsal and ventral views), (C) Larval mental plate (dorsal view), (D) Female tergum VII, (E) Female tergum VIII, (F) Larval terga VII, VIII, X and siphon (lateral view). Scale bars in mm.
FIGURE 1 in Mansonia (Mansonia) iguassuensis sp. nov. (Diptera: Culicidae) from Brasil
FIGURE 1. Mansonia iguassuensis sp. nov. (A) Pupal metanotum and abdomen (dorsal and ventral views), (B) Pupal cephalothorax, (C) Pupal respiratory trumpet, (D) Male genitalia (dorsal and ventral views), (E) Male tergum VIII (ventral view), (F) Male gonostyle (lateral view), (G) Paramere and gonocoxal apodeme (dorsal view), (H) Male aedeagus (dorsal view). Scale bars in mm.
FIGURE 3 in Influence of seasonality on wing morphological variability in populations of Mansonia amazonensis (Theobald) (Diptera: Culicidae)
FIGURE 3. Diagrams of conformation variation between landmarks for Principal Component 1 (PC1) and 2 (PC2). Light blue lines represent consensus conformations and dark blue lines correspond to the conformation trends.
FIGURE 2 in Influence of seasonality on wing morphological variability in populations of Mansonia amazonensis (Theobald) (Diptera: Culicidae)
FIGURE 2. Dorsal view of the right wing of a female of Mansonia amazonensis captured in the area of the Amazon Hydroelectric Development Unit of Jirau (UHE-Jirau), Rondônia State, Brazil. The numbers represent the position of the landmarks. Scale = 1 mm.
FIGURE 1 in Influence of seasonality on wing morphological variability in populations of Mansonia amazonensis (Theobald) (Diptera: Culicidae)
FIGURE 1. Sampling point for populations of Mansonia amazonensis in the area of the Amazon Hydroelectric Development Unit of Jirau (UHE-Jirau), Rondônia State, Brazil, during the dry, rainy and transition periods of 2018 and 2019.
FIGURE 4 in Influence of seasonality on wing morphological variability in populations of Mansonia amazonensis (Theobald) (Diptera: Culicidae)
FIGURE 4. Canonical analysis of shape variables of 181 specimens of Mansonia amazonensis according to dry, rainy and transition periods of 2018 and 2019 in the area of the Amazon Hydroelectric Development Unit of Jirau (UHE-Jirau), Rondônia State, Brazil. Each point indicates an individual, and the ellipses indicate the confidence interval (90%). Numbers identify groups of specimens collected during different periods: (2) July/18, dry season; (3) October/18, rainy season; (4) December/18, rainy season; (5) April/19, rainy season; (6) July/19, dry season; (7) September/19, transition period; (8) December/19, rainy season.
Fig. 4 in Gagones A-F: Six prenylated chalcones from the heartwood of Mansonia gagei
Fig. 4. Experimental and calculated ECD spectra of 1 in MeOH.
Fig. 5 in Gagones A-F: Six prenylated chalcones from the heartwood of Mansonia gagei
Fig. 5. The proposed biosynthetic pathway of 1–6.
Fig. 2. Key HMBC and 1H–1H in Gagones A-F: Six prenylated chalcones from the heartwood of Mansonia gagei
Fig. 2. Key HMBC and 1H–1H COSY correlations of compounds 1 and 2.
Fig. 1 in Gagones A-F: Six prenylated chalcones from the heartwood of Mansonia gagei
Fig. 1. Structures of compounds 1–6.
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