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77 results for “Scirtothrips”
Figs. 17-20.- Scirtothrips bounites. 17 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs. 17-20.- Scirtothrips bounites. 17.- Habitus, dorsal view (paratype). 18.- Head and pterothorax (paratype). 19.- Head and pronotum, dorsal view (paratype). 20.- Antennae, dorsal view (paratype).
Figs 13-14 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs 13-14.- Scirtothrips menai sp. n. 13.- SEM dorsal view of abdominal tergum VIII. 14.- SEM dorsal view of the lateral area of microtrichias in abdominal tergum IV.
Figs 11-12 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs 11-12.- Scirtothrips menai sp. n. 11.- SEM dorsal view of abdomen. 12.- SEM dorsal view of abdominal terga IV-V.
Figs 7-8 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs 7-8.- Scirtothrips menai sp. n. 7.- SEM dorsal view of ocellar triangle. 8.- SEM dorsal view of head.
Figs. 3-6 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs. 3-6.- Scirtothrips menai sp. n. 3.- Dorsal view of head and pronotum (holotype). 4.- Dorsal view of head and pronotum (paratype). 5.- Abdomen dorsal view (holotype). 6.- Abdomen ventral view (holotype).
Figs. 1-2 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs. 1-2.- Scirtothrips menai sp. n. 1.- Dorsal view of the antennae (paratype). 2.- Dorsal view of the head and antennae (holotype).
Figs 15-16 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs 15-16.- Scirtothrips menai sp. n. 15.- SEM dorsal view of the wavy cilia in wing I. 16.- SEM dorsal view of the lateral area of microtrichia in terga IV-V showing the discal setae in this area.
Figs 9-10 in Scirtothrips menai sp. n., a new species from Costa Rica, Central America (Thysanoptera, Terebrantia, Thripidae).
Figs 9-10.- Scirtothrips menai sp. n. 9.- SEM dorsal view of head and pronotum. 10.- SEM dorsal view of metanotum.
Figs. 1–16 in Scirtothrips species (Thysanoptera: Thripidae) described from Mangifera indica (Anacardiaceae) in Mexico
Figs. 1–16. Scirtothrips pronota (1–15, copied from Johansen & Mojica-Guzman 1999). 1, citri; 2, mangonoxius; 3, danieltelizi; 4, mangoaffinis; 5, willihennigi; 6, mangofrequentis; 7, mangiferaffinis; 8, mangoinfestans; 9, apatzinganensis; 10, martingonzalezi; 11, novomangorum; 12, dieterenkerlini; 13, mangorum; 14, dieterenkerlini; 15, mangorum; 16, citri.
Figs. 17–28. Scirtothrips pronota. 17–22 in Scirtothrips species (Thysanoptera: Thripidae) described from Mangifera indica (Anacardiaceae) in Mexico
Figs. 17–28. Scirtothrips pronota. 17–22 Paratype females on loan from Johansen: 17, danieltelizi; 18, mangoaffinis; 19, willihennigi; 20, mangofrequentis; 21, mangiferaffinis; 22, mangoinfestans. 23–28 Recent slide mounts: 23, citri from citrus at Riverside, California; 24–25, citri from mango at Riverside, California; 26-28, citri from mango at Chiapas, Mexico.
Fig. 4 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 4. Flight behavior of Scirtothrips dorsalis during the day. Mean hourly captures of adults at (A) greenhouse and (B) field sites of TREC and MREC by the time sampled and cumulative degree-hours. Symbols represent means ± SD. An asterisk (*) indicates a significant difference between test locations at a given time based on a t-test at P ≤ 0.05.
Fig. 2 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 2. Population estimates and dispersal of Scirtothrips dorsalis to 2 hosts at TREC, 19 Jul to 27 Sep 2007. (A) Mean weekly numbers of nymphs and pupae found on buttonwood foliage. (B) Mean weekly numbers of adults washed from plant terminals with data from buttonwood and schefflera pooled. (C) Mean weekly captures of adults on yellow sticky-card traps behind buttonwood and schefflera plants. Symbols represent means ± SD. An asterisk (*) indicates a significant difference from the other weeks according to 1-way ANOVAs and t-test comparisons at P ≤ 0.05. Mean weekly temperatures (T °C) and relative humidity (RH %) for the 3 mo period are shown parallel to the X-axis (FAWN 2007).
Fig. 1 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 1. Experimental setups. (A) Population estimates and dispersal from rose to buttonwood and schefflera. Darkest grey represents rose, whereas the 2 lighter grey shades represent buttonwood or schefflera with the same shade of grey representing the same plant species. (B) Flight behavior during the day. Circles represent potted rose plants in 11 L containers. Small black rectangles denote locations of yellow sticky-card traps relative to each plot.
Fig. 3 in Direction and timing of dispersal of Scirtothrips dorsalis (Thysanoptera: Thripidae) on select ornamental host plant species in south Florida
Fig. 3. Population estimates and dispersal of Scirtothrips dorsalis to 2 hosts: cumulative data for the 11 wk test period. (A) Mean damage ratings on a scale of 0 to 5. (B) On-plant densities of S. dorsalis. (C) Weekly captures of adults on yellow sticky-card traps. (D) Weekly captures of adults on yellow sticky-card traps by cardinal direction of traps from plants. Symbols represent means ± SD. An asterisk (*) indicates a significant difference at P ≤ 0.05 (A–C) between host plant species according to t-tests or (D) from the other host plant pairs at other cardinal orientations based on a 1-way ANOVA followed by a Tukey–Kramer HSD test.
Fig. 2 in Evaluation of insecticides for curative, preventive, and rotational use on Scirtothrips dorsalis South Asia 1 (Thysanoptera: Thripidae)
Fig. 2. Mean numbers of Scirtothrips dorsalis adults per 10 leaf samples of Jalapeno pepper treated with different insecticides. Solid lines represent treatments where 1 insecticide was applied alone, and dashed lines show treatments of 2 insecticides applied in rotation. Same color solid and dashed lines represent same insecticide applied alone or in rotation with spinetoram.
Fig. 1 in Evaluation of insecticides for curative, preventive, and rotational use on Scirtothrips dorsalis South Asia 1 (Thysanoptera: Thripidae)
Fig. 1. Mean numbers of Scirtothrips dorsalis larvae per 10 leaf samples of Jalapeno pepper treated with different insecticides. Solid lines represent treatments where 1 insecticide was applied alone, and dashed lines show treatments of 2 insecticides applied in rotation. Same color solid and dashed lines represent same insecticide applied alone or in rotation with spinetoram.
Figuras 6-9. 6. Ala anterior. 7. Tergito abdominal III. 8 in Primer registro de Scirtothrips dorsalis Hood, 1919 (Thysanoptera: Thripidae) en Perú, y su potencial riesgo fitosanitario para la agricultura chilena
Figuras 6-9. 6. Ala anterior. 7. Tergito abdominal III. 8. Microtrichia en esternitos abdominales. 9. Tergitos abdominales del macho. Escala: 0,20 mm. /6. Forewing. 7. Abdominal tergite III. 8. Abdominal sternites with microtrichia. 9. Male abdominal tergites. Scale: 0.20 mm.
Figuras 1-9 in Primer registro de Scirtothrips dorsalis Hood, 1919 (Thysanoptera: Thripidae) en Perú, y su potencial riesgo fitosanitario para la agricultura chilena
Figuras 1-9. Adulto de Scirtothrips dorsalis. 1. Hembra macróptera. 2. Antena. 3. Seta ocellar III. 4. Pronoto. 5. Reticulaciones del metanoto. Escala: 0,20 mm. / 1. Female macroptera. 2. Antennae. 3. Ocellar setae III. 4. Pronotum. 5. Metanotal sculpture. Scale: 0,20 mm.
Figure 2 in First report of the chilli thrips, Scirtothrips dorsalis Hood, 1919 (Thysanoptera: Thripidae) in Turkey
Figure 2. Views of different body parts of the slide-mounted female of Scirtothrips dorsalis; a: dark brown antecostal ridges on tergites, b: ocellar setae pair III and four posteriomarginal setae, c: metanotum with median seta, d: forewing first vein with three setae distally, second vein with two setae.
Fig. 1 in Efficacy of a biopesticide and predatory mite to manage chilli thrips, Scirtothrips dorsalis Hood (Thysanoptera: Thripidae) in strawberry
Fig. 1. Mean (± SE) adult and larval Scirtothrips dorsalis Hood per 3 strawberry leaflets on caged strawberry plants treated with (1) Capsicum oleoresin based biopesticide, (2) predatory mite Amblyseius swirskii, and (3) conventional insecticide spinetoram, and compared with control plants for 7, 14, 21, and 28 d afer treatment. Means with the same letter are not significantly different (P <0.05; Tukey HSD).
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