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114 results for “leaf feeding”
Supplementary material 2 from: Kirichenko N, Triberti P, Lopez-Vaamonde C (2019) New species of leaf-mining Phyllonorycter (Lepidoptera Gracillariidae) from Siberia feeding on Caragana (Fabaceae). ZooKeys 835: 17-41. https://doi.org/10.3897/zookeys.835.33166
: Explanation note: Fabaceae-feeding Phyllonorycter species involved in the study. Where relevent, genitalia preparation number is given in square brackets in the Life stage column. Both the Process ID and Sample ID codes link the record in the BOLD database and the voucher specimen from which the sequence is derived.
FIGURE 6 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 6. External morphology of Caloptilia aesculi, sp. nov. pupa. A: Dorsal view. B: Ventral view, male. C: Ventral view of A7–10, female. D: Lateral view.
FIGURE 5 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 5. External morphology of Caloptilia aesculi, sp. nov. larva. Early sap-feeding (A-E) and final tissue-feeding(F-M) instar larvae. A: Dorsal view of head. B: Antenna. C: Apical part of labiomaxillary complex, ventrally. D: Labrum. E: Mandible. F: Larval chaetotaxy of final instar larva. G: Dorsal view of head. H: Ventral view. I: Dorsal view of abdominal segments 8-10. J: Antenna. K. Ventral view of labiomaxillary complex. L: Mandible. M: Labrum, dorsal and ventral.
FIGURE 4 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 4. Biology of Caloptilia aesculi, sp. nov. A: Habitat and host plant Aesculus chinensis in Huameiguan. B: Mine of first instar larvae. C: Mine of third instar larvae. D: The same mine of C with transmitted light. E-F: The lateral margin (E) or the apical part (F) of a leaflet folded downward by later instar larva inside. G. Leaf shelter (stacking two leaflets) of later instars larva indicated by white row. H: Inside of the leaflet shelter as shown in G. I: Transparent cocoon along the midrib on the underside of leaflet. J: Larva spinning cocoon. Scale bar 1 cm, except 0.5 cm in J.
FIGURE 3 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 3. Caloptilia aesculi, sp. nov. A: Female genitalia. B: Apical part. C: Signum. Scale bar 1 mm.
FIGURE 2 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 2. Caloptilia aesculi, sp. nov. A: Male genitalia and coremata on abdominal segments VII and VIII. B: Male genitalia in dorsal view, with phallus removed. C: Right valva, inner view. D: Aedeagus. E: Middle part of phallus with cornuti. Scale bar 0.25 mm.
FIGURE 1 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 1. Caloptilia aesculi, sp. nov. A: Male adult (Qinling, Shaanxi), holotype, scale bar 2 mm. B: Female adult (Badagongshan, Hunan), paratype. C: Wings venation, scale bar 1mm.
FIGURE 7 in A new leaf-mining moth, Caloptilia aesculi, sp. nov. (Lepidoptera: Gracillariidae: Gracillariinae) feeding on Aesculus chinensis Bunge (Hippocastanaceae) from China
FIGURE 7. ML tree showing the phylogenetic position of Caloptilia aesculi, sp. nov. based on the COI barcoding region sequences. The numbers on the branches indicate bootstrap values higher than 50% for each clade.
Figure 4 in Diet and feeding behaviour of the leaf-litter frog Ischnocnema henselii (Anura: Brachycephalidae) in Araucaria rain forests on the Serra Geral of Rio Grande do Sul, Brazil
Figure 4. Relationship between mouth width of hunting Ischnocnema henselii frogs and the volume of prey animals.
Figure 3 in Diet and feeding behaviour of the leaf-litter frog Ischnocnema henselii (Anura: Brachycephalidae) in Araucaria rain forests on the Serra Geral of Rio Grande do Sul, Brazil
Figure 3. Relationship between mouth width of hunting Ischnocnema henselii frogs and length of prey animals.
Figure 1 in Diet and feeding behaviour of the leaf-litter frog Ischnocnema henselii (Anura: Brachycephalidae) in Araucaria rain forests on the Serra Geral of Rio Grande do Sul, Brazil
Figure 1. Relationship between body size (snout–vent length) and weight in Ischnocnema henselii adults.
Figure 5 in Diet and feeding behaviour of the leaf-litter frog Ischnocnema henselii (Anura: Brachycephalidae) in Araucaria rain forests on the Serra Geral of Rio Grande do Sul, Brazil
Figure 5. Prey items as found in the stomachs of adult Ischnocnema henselii frogs and composition of the litter fauna in the frogs' habitat.
FIGURES 8–10 in A new leaf-feeding species of Neohydatothrips from southwestern China (Thysanoptera: Thripidae)
FIGURES 8–10. Neohydatothrips magnoliae. (8) Abdominal tergites I–VI. (9) Abdominal tergites VII–X. (10) Abdominal sternites V–VII.
FIGURES 1–7 in A new leaf-feeding species of Neohydatothrips from southwestern China (Thysanoptera: Thripidae)
FIGURES 1–7. Neohydatothrips magnoliae. (1) Dorsal view of female. (2) Dorsal view of male. (3) Dorsal view of head. (4) Mesonotum and metanotum. (5) Pronotum. (6) Metasternum. (7) Left antenna.
FIGURE 1 in A new type of feeding trace caused by a donaciine beetle (Coleoptera, Chrysomelidae) on a leaf from the Paleocene of Menat (France)
FIGURE 1. Trace of feeding activities, MNT Nel-donacia. Photograph of mid part of leaf. Arrow heads: donaciine feeding traces. Scale bar = 5 mm.
FIGURE 2 in A new type of feeding trace caused by a donaciine beetle (Coleoptera, Chrysomelidae) on a leaf from the Paleocene of Menat (France)
FIGURE 2. Trace of feeding activities, MNT Nel-donacia. Photograph of donaciine feeding traces. Scale bar = 1 mm.
Leaf litter quality drives the feeding by invertebrate shredders in tropical streams
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Top-down cascading effects of seed-feeding beetles and their parasitoids on plants and leaf herbivores
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Data from: Root feeding larvae increase their performance by inducing leaf volatiles that attract aboveground conspecific adults
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Data from: Feeding-induced rearrangement of green leaf volatiles reduces moth oviposition
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