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233 results for “gall midges”
Figure 1 from: Matsuo K, Ganaha-Kikumura T, Ohno S, Yukawa J (2016) Description of a new species of Aphanogmus Thomson (Hymenoptera, Ceraphronidae) that parasitizes acarivorous gall midges of Feltiella (Diptera, Cecidomyiidae) in Japan. ZooKeys 596: 77-85. https://doi.org/10.3897/zookeys.596.8472
Figure 1 - A female of Aphanogmus flavigastris. Scale bar: 100 μm.
Figures 8-11 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 8-11. Lopesia pleromatis, sp. nov. Maia, female: (8) Head (ventral view); (9) 5th flagellomere; (10) 1st and 2nd flagellomeres; (11) Last flagellomere.
FIGURES 8–15. Pekinomyia syringae. 8–11 in A new genus and species of gall midge (Diptera: Cecidomyiidae) inducing leaf galls on Peking lilac, Syringa reticulata subsp. pekinensis (Oleaceae), in China
FIGURES 8–15. Pekinomyia syringae. 8–11: female, 12–14: larva, 15: pupa. (8) 3rd flagellomere, ventral, (9) 3rd flagellomere, dorsal, (10) postabdomen from 8th segment, dorsal, (11) postabdomen from 7th segment, lateral, (12) head, dorsal, (13) sternal spatula with adjacent papillae, (14) last two abdominal segments, dorsal, (15) head, ventral. Scale bars 0.1 mm.
Figs. 14–15. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 14–15. M. pterandrae Maia & Flor, sp. nov., male. 14. Abdomen (from sixth segment to end) (lateral view). 15. Terminalia (dorsal view). Scale bars in mm.
Figs. 16–17. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 16–17. M. pterandrae Maia & Flor, sp. nov., female. 16. Abdomen (from sixth segment to end) (lateral view). 17. Ovipositor (lateral view). Scale bars in mm.
Figs. 9–13. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 9–13. M. pterandrae Maia & Flor, sp. nov., adults. 9. Male head (frontal view). 10. Fifth male flagellomere. 11. Fifth female flagellomere. 12. Foreleg, tarsal claw and empodium (lateral view). 13. Hindleg, tarsal claws and empodium (lateral view). Scale bars in mm.
Figs. 4–6. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 4–6. M. pterandrae Maia & Flor, sp. nov., immature stages. 4–5. Larva. 4. Spatula and lateral papillae (ventral view). 5. Terminal segment with terminal papillae (dorsal view).6.Pupal headand prothoracicspiracle (ventralview).Scalebarsinmm.
Figs 1–3. Host plant, P. pyroidea A in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs 1–3. Host plant, P. pyroidea A. Juss. (Malpighiaceae). 1. General aspect. 2. Galled leaf (galls induced by M. pterandrae Maia & Flor, sp. nov.). 3. Plant reaction against the gall induction.
FIGURES 3a–o in A review of the gall midges (Diptera: Cecidomyiidae) of Indonesia: taxonomy, biology and adult key to genera
FIGURES 3a–o. Asphondylia callicarpae: a, gall on Callicarpa erioclona from the Philippines (Fig. X-2 of Uichanco (1919)); b, gall on Callicarpa longifolia from Java (Fig. 927 of DvLR & DvL (1926)); c, gall on Callicarpa longifolia from Java (Fig. 8 of DvL 1921); d, male palpi; e, male first tarsal segment; f, male last tarsal segment with claw, empodium and pulvillus; g, male antenna; h, gonostylus in posterodorsal view; i, female palpi; j, female wing; k, female antenna (within pupal exuviae); l, end of ovipositor in ventral view; m–o, anterior part of pupa: m, o, ventral; n, lateral. Insect drawings d–m are based on types reared from C. erioclona in the Philippines, n–o from C. longifolia in Java.
Differential expression for rice-gall midge interaction
GEO Series GSE22538. Oryza sativa. 9 samples. Type: Expression profiling by array.
Expression data from plant tissues during incompatible interaction between the rice host and its major pest, the Asian rice gall midge
GEO Series GSE70526. Oryza sativa. 6 samples. Type: Expression profiling by array.
Dataset First steps towards biological control of the pear gall midge (Contarinia pyrivora) with the insect pathogenic fungus Metarhizium brunneum
<p>The dataset relates to "First steps towards biological control of the pear gall midge (<em>Contarinia pyrivora</em>) with the insect pathogenic fungus <em>Metarhizium brunneum</em>". ( Bernhardt M. Steinwender, Lene Sigsgaard , Stine K. Jacobsen, Jørgen Eilenberg</p> <p>Gall midges are important pests in many crops. In fruit, they are difficult to control due to their life cycle which takes place partially within the fruit. Here, we provide the first successful laboratory experiment to infect pear gall midge (<em>Contarinia pyrivora</em>) with the insect pathogenic fungus <em>Metarhizium brunneum.</em> We developed a bioassay procedure that demonstrates dipping larvae in a fungus suspension or adding a fungus suspension to the soil results in significant fungus induced mortality of the pear gall midge. An immune response in treated larvae was recorded.</p> <p> Cryptic is typically a specific camouflage phenomena</p>
Transcriptional profiling of rice gene expression changes upon co-infection with insect Orseola oryza and pathogen Xanthomonas oryzae pv. oryzae that causes gall midge and bacterial blight respectivel
GEO Series GSE110068. Oryza sativa. 6 samples. Type: Expression profiling by array.
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International Brain Laboratory public data
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OpenNeuro
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