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223 results for “leafminers”
Figures 69-79 from: van Nieukerken EJ, Eiseman CS (2020) Splitting the leafmining shield-bearer moth genus Antispila Hübner (Lepidoptera, Heliozelidae): North American species with reduced venation placed in Aspilanta new genus, with a review of heliozelid morphology. ZooKeys 957: 105-161. https://doi.org/10.3897/zookeys.957.53908
Figures 69-79 Aspilanta ampelopsifoliella, leafmines, larvae and shields, on Parthenocissus quinquefolia. 69, 74 VT, Williston, 28.viii.2016, CSE3764 (same mine) 70, 76–78 MA, Pelham, 30.viii, 4.ix.2013, CSE1102, 1108 71 MA, Nantucket, Squam Swamp, 7.ix.2011, CSE-C4 72 MA, Northfield, 16.ix.2016, CSE 73 MA, Nantucket, Stump Pond, 5.ix.2019, CSE 75 VT, Button Bay SP, 16.ix.2011, EvN2011254 79 MA, Bridgewater, 16.viii.2013, CSE983.
Figures 51-58 from: van Nieukerken EJ, Eiseman CS (2020) Splitting the leafmining shield-bearer moth genus Antispila Hübner (Lepidoptera, Heliozelidae): North American species with reduced venation placed in Aspilanta new genus, with a review of heliozelid morphology. ZooKeys 957: 105-161. https://doi.org/10.3897/zookeys.957.53908
Figures 51-58 Aspilanta oinophylla, leafmines, larvae and shields. 51, 52 GA, Chattahoochee NF, 14.x.2010, type locality, Vitis aestivalis, EvN2010266 53, 56 MA, Northfield, 13.ix.2016, V. riparia, CSE 54, 58 TN, Great Smoky Mts NP, 2.x.2010, V. vulpina, EvN2010119 55, 57 VT, Button Bay SP, 16.ix.2011, V. riparia, EvN2011253.
Figures 45-50 from: van Nieukerken EJ, Eiseman CS (2020) Splitting the leafmining shield-bearer moth genus Antispila Hübner (Lepidoptera, Heliozelidae): North American species with reduced venation placed in Aspilanta new genus, with a review of heliozelid morphology. ZooKeys 957: 105-161. https://doi.org/10.3897/zookeys.957.53908
Figures 45-50 Aspilanta species, live adult moths. 45A. oinophylla, male, Italy, Südtirol, Eisacktal, Klausen, 650 m, e.l. 1.viii.2019, photograph Dieter Robrecht 46A. hydrangaeella, female, dorsal view, NC, photograph EJvN 47A. ampelopsifoliella, female, Pelham MA, photograph CSE 48A. ampelopsifoliella, male, dorsal view, VT, photograph EJvN 49A. argentifera, female, Stockbridge MA, photograph CSE 50A. viticordifoliella, female, Pelham MA, photograph CSE.
Figures 1-8 from: van Nieukerken EJ, Eiseman CS (2020) Splitting the leafmining shield-bearer moth genus Antispila Hübner (Lepidoptera, Heliozelidae): North American species with reduced venation placed in Aspilanta new genus, with a review of heliozelid morphology. ZooKeys 957: 105-161. https://doi.org/10.3897/zookeys.957.53908
Figures 1-8 Aspilanta species, mounted adult moths. 1A. oinophylla, male, USA, VT, RMNH.INS.24378 2A. hydrangaeella, female, USA, NC, RMNH.INS.25191 3A. ampelopsifoliella, male, USA, CT, RMNH.INS.24377 4A argentifera, female, USA, MA, RMNH.INS.25019 5A. voraginella, male, USA, AZ, RMNH.INS.23918 6A. argentifera, female holotype 7 Undescribed species in unnamed genus14 ("Neospila"), male, Chile, Osorno, 20 km W of Entre Lagos, 17.x.1981, leg. Nielsen & Karsholt, genitalia slide EJvN 4632, ZMUC8A. viticordifoliella, female, Canada, Ottawa, from Parthenocissus, CNCLEP00122404. Scale bars: 1mm.
Data from: Host tracking or cryptic adaptation? Phylogeography of Pediobius saulius (Hymenoptera, Eulophidae), a parasitoid of the highly invasive horse-chestnut leafminer
Classical biological control is often advocated as a tool for managing invasive species. However, accurate evaluations of parasitoid species complexes and assessment of host-specificity are impeded by the lack of morphological variation. Here we study the possibility of host races/species within the eulophid wasp Pediobius saulius, a pupal generalist parasitoid that parasitize the highly invasive horse-chestnut leaf-mining moth Cameraria ohridella. We analysed the population genetic structure, host associations and phylogeographic patterns of P. saulius in Europe using the COI mitochondrial gene. This marker strongly supports a division into at least five highly differentiated parasitoid complexes, within two of which, clades with differing degrees of host specialization were found: a Balkan clade that mainly (but not only) attacks C. ohridella, and a more generalist European group which attacks many hosts, including C. ohridella. The divergence in COI (up to 7.6%) suggests the existence of cryptic species, although this is neither confirmed by nuclear divergence nor morphology. We do not find evidence of host tracking. The higher parasitism rates observed in the Balkans and the scarcity of the Balkan-Cameraria haplotypes out of the Balkans, open the possibility of using these Balkan haplotypes as biological control agents of C. ohridella elsewhere in Europe.
FIGURES 3–6. Neochrysocharis beasleyi, female. 3. Head. 4. Antenna. 5. Mesosoma. 6 in A new species of Neochrysocharis Kurdjumov (Hymenoptera: Eulophidae), a parasitoid of serpentine leafminers (Diptera: Agromyzidae) in Southeast Asia
FIGURES 3–6. Neochrysocharis beasleyi, female. 3. Head. 4. Antenna. 5. Mesosoma. 6. Gaster.
FIGURES 1–2. Neochrysocharis beasleyi, female. 1. Habitus. 2 in A new species of Neochrysocharis Kurdjumov (Hymenoptera: Eulophidae), a parasitoid of serpentine leafminers (Diptera: Agromyzidae) in Southeast Asia
FIGURES 1–2. Neochrysocharis beasleyi, female. 1. Habitus. 2. Forewing.
FIGURE 1 in Review of the Palearctic Atemelia Herrich-Schäffer (Lepidoptera, Yponomeutoidea, Praydidae), with description of a new leafmining species
FIGURE 1. Venation of Atemelia fusca sp. nov., female, slide no. LIU16008W.
Figure 2 from: Du S-J, Yefremova Z, Ye F-Y, Zhu C-D, Guo J-Y, Liu W-X (2021) Morphological and molecular identification of arrhenotokous strain of Diglyphus wani (Hymenoptera, Eulophidae) found in China as a control agent against agromyzid leafminers. ZooKeys 1071: 109-126. https://doi.org/10.3897/zookeys.1071.72433
Figure 2 A Arrhenotokous female, body, dorsal view B Thelytokous female, body, dorsal view C Arrhenotokous female, right forewing D Arrhenotokous female, right fore and hind-wings E Thelytokous female, right forewing F Thelytokous female, right fore and hind-wings.
Figure 1 from: Du S-J, Yefremova Z, Ye F-Y, Zhu C-D, Guo J-Y, Liu W-X (2021) Morphological and molecular identification of arrhenotokous strain of Diglyphus wani (Hymenoptera, Eulophidae) found in China as a control agent against agromyzid leafminers. ZooKeys 1071: 109-126. https://doi.org/10.3897/zookeys.1071.72433
Figure 1 Diglyphus wani, arrhenotokous male A Body, dorsal view B Body, lateral view C Head and mesosoma, lateral view D Right fore and hind wing E Head, tergum and gaster, dorsal view F Head, front view G Metasoma, ventral view H Genitalia, ventral view.
Figure 5 from: Du S-J, Yefremova Z, Ye F-Y, Zhu C-D, Guo J-Y, Liu W-X (2021) Morphological and molecular identification of arrhenotokous strain of Diglyphus wani (Hymenoptera, Eulophidae) found in China as a control agent against agromyzid leafminers. ZooKeys 1071: 109-126. https://doi.org/10.3897/zookeys.1071.72433
Figure 5 Phylogenetic tree of Diglyphus wani and related Diglyphus species, based on ITS2 gene of the primers ITS2F/ITS2R amplification. ITS2–1 ~ ITS2–5 were indicated as the ITS2 gene haplotypes of D. wani.
Figure 4 from: Du S-J, Yefremova Z, Ye F-Y, Zhu C-D, Guo J-Y, Liu W-X (2021) Morphological and molecular identification of arrhenotokous strain of Diglyphus wani (Hymenoptera, Eulophidae) found in China as a control agent against agromyzid leafminers. ZooKeys 1071: 109-126. https://doi.org/10.3897/zookeys.1071.72433
Figure 4 Phylogenetic tree of Diglyphus wani and related Diglyphus species, based on ITS1 gene of the primers 18sf1/5p8sB1d amplification. ITS1–1 ~ ITS1–6 were indicated as the ITS1 gene haplotypes of D. wani.
Figure 3 from: Du S-J, Yefremova Z, Ye F-Y, Zhu C-D, Guo J-Y, Liu W-X (2021) Morphological and molecular identification of arrhenotokous strain of Diglyphus wani (Hymenoptera, Eulophidae) found in China as a control agent against agromyzid leafminers. ZooKeys 1071: 109-126. https://doi.org/10.3897/zookeys.1071.72433
Figure 3 Phylogenetic tree of Diglyphus wani and related Diglyphus species, based on COI gene of the primers COΙSF/COΙ2613 amplification. COI-1 ~ COI-15 were indicated as the COI gene haplotypes of D. wani.
Figure 6 from: Du S-J, Yefremova Z, Ye F-Y, Zhu C-D, Guo J-Y, Liu W-X (2021) Morphological and molecular identification of arrhenotokous strain of Diglyphus wani (Hymenoptera, Eulophidae) found in China as a control agent against agromyzid leafminers. ZooKeys 1071: 109-126. https://doi.org/10.3897/zookeys.1071.72433
Figure 6 Phylogenetic tree of Diglyphus wani and related Diglyphus species, based on 28S gene of the primers D2F/D2R amplification. 28S-1 and 28S-2 were indicated as the 28S gene haplotypes of D. wani.
Figure 8 from: Krache F, Boualem M, Fernandez-Triana JL, Bass A, Arnó J, Benourad F (2021) First record in Africa of the parasitoid Dolichogenidea gelechiidivoris (Hymenoptera: Braconidae) on tomato leafminer Tuta absoluta (Lepidoptera: Gelechiidae) from tomato fields in Algeria. Journal of Hymenoptera Research 88: 115-131. https://doi.org/10.3897/jhr.88.75279
Figure 8 Neighbour joining (NJ) tree with all available sequences of Dolichogenidea gelechiidivoris over 600 base pairs. For every specimen details of the voucher code, country of origin and total of base pairs is shown in the corresponding branch.
Figure 1 from: Krache F, Boualem M, Fernandez-Triana JL, Bass A, Arnó J, Benourad F (2021) First record in Africa of the parasitoid Dolichogenidea gelechiidivoris (Hymenoptera: Braconidae) on tomato leafminer Tuta absoluta (Lepidoptera: Gelechiidae) from tomato fields in Algeria. Journal of Hymenoptera Research 88: 115-131. https://doi.org/10.3897/jhr.88.75279
Figure 1 Map of the municipality of Stidia, along the Bay of Arzew and 15 km SW from Mostaganem, Algeria.
Fig. 2 in Disruption of the leafminer Phyllocnistis citrella (Lepidoptera: Gracillariidae) in citrus: effect of blend and placement height, longevity of disruption and emission profile of a new dispenser
Fig. 2. Mean ± SEM (n = 14) number of male Phyllocnistis citrella captured in pheromone-baited traps in untreated control plots (filled circles) and in pheromonetreated plots (open circles) of grapefruit at VPI-5 grove, St. Lucie County, Florida, USA (n = 8). Triangles represent mean ± SEM (n = 8) percentage trap catch disruption (right y axis).
Fig. 3 in Disruption of the leafminer Phyllocnistis citrella (Lepidoptera: Gracillariidae) in citrus: effect of blend and placement height, longevity of disruption and emission profile of a new dispenser
Fig. 3. Mean ± SEM (n = 14) number of male Phyllocnistis citrella captured in pheromone-baited traps in untreated control plots (filled circles, n = 12) and in pheromone-treated plots (open circles) of grapefruit at TRB grove, Charlotte County, Florida, USA (n = 6). Triangles represent mean ± SEM (n = 6) percentage trap catch disruption (right y axis).
Supplementary material 1 from: van Nieukerken EJ, Lees DC, Doorenweerd C, Koster S(JC), Bryner R, Schreurs A, Timmermans MJTN, Sattler K (2018) Two European Cornus L. feeding leafmining moths, Antispila petryi Martini, 1899, sp. rev. and A. treitschkiella (Fischer von Röslerstamm, 1843) (Lepidoptera, Heliozelidae): an unjustified synonymy and overlooked range expansion. Nota Lepidopterologica 41(1): 39-86. https://doi.org/10.3897/nl.41.22264
Specimen and Locality Data Antispila. : Explanation note: Specimen data.
Figures 5-7 from: Liu T, Wang E, Wang S (2018) Taxonomic study of the leafmining genus Liocrobyla Meyrick, 1916 from China (Lepidoptera, Gracillariidae, Ornixolinae) with a description of one new species. Zoosystematics and Evolution 94(2): 305-314. https://doi.org/10.3897/zse.94.25460
Figures 5-7 Male genitalia of Liocrobyla spp. 5. L. desmodiella, slide no. LTT12611 (NKU); 6. L. lobata, slide no. LIU0028; 7. L. indigofera sp. n., slide no. LIU0030, holotype. Scale bars: 0.2 mm.
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