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Figure 5 from: (2013) A preliminary study on the distribution patterns of endemic species of Fulgoromorpha (Hemiptera, Auchenorrhyncha) in Iran. ZooKeys 319: 231-248. https://doi.org/10.3897/zookeys.319.4159

Figure 5 - Venn diagram for the number of endemic species in Khorasan Mts and common species with other areas.

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Figure 4 from: (2013) A preliminary study on the distribution patterns of endemic species of Fulgoromorpha (Hemiptera, Auchenorrhyncha) in Iran. ZooKeys 319: 231-248. https://doi.org/10.3897/zookeys.319.4159

Figure 4 - Venn diagram for the number of endemic species in Zagros Mts. (Humid Zagros, Dry Zagros and Karkas Mt.) and other areas with common species.

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Figure 11 from: (2013) A preliminary study on the distribution patterns of endemic species of Fulgoromorpha (Hemiptera, Auchenorrhyncha) in Iran. ZooKeys 319: 231-248. https://doi.org/10.3897/zookeys.319.4159

Figure 11 - A similarity map of endemic zones of Fulgoromorpha of Iran resulted from Aslcal analysis.

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Figure 1 from: Rakauskas R, Havelka J, Zaremba A (2013) Mitochondrial COI and morphological specificity of the mealy aphids (Hyalopterus ssp.) collected from different hosts in Europe (Hemiptera, Aphididae). ZooKeys 319: 255-267. https://doi.org/10.3897/zookeys.319.4251

Figure 1 - Maximum likelihood (ML) tree showing phylogenetic relationships among three Hyalopterus species based on partial sequences of mitochondrial COI (564 positions in final set). Numbers above branches indicate support of NJ (left) and MP (right) bootstrap test with 1000 replicates, and numbers below branches indicate support of ML (left) bootstrap test with 1000 replicates and posterior probabilities of BI analysis (right). Samples used for the discriminant analysis with a priori specified group membership followed by the construction of identification key are asterisked (*). The remaining samples were used for the post hoc classification. Sample numbers are the same as given in Table 1, together with the abbreviated symbol of respective country: BG Bulgaria, HU Hungary, LT Lithuania, RO Romania, SK Slovakia.

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Figure 3 from: Rakauskas R, Havelka J, Zaremba A (2013) Mitochondrial COI and morphological specificity of the mealy aphids (Hyalopterus ssp.) collected from different hosts in Europe (Hemiptera, Aphididae). ZooKeys 319: 255-267. https://doi.org/10.3897/zookeys.319.4251

Figure 3 - Dendrogram of hierarchical cluster analysis based on 17 morphological characters (squared Mahalanobis distances) using unweighted pair-group average linkage among 29 samples of Hyalopterus. Sample numbers the same as in Table 1. ar samples from Prunus armeniaca, d Prunus domestica, du Prunus dulcis, p Prunus persica, ph Phragmites communis.

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Figure 2 from: Rakauskas R, Havelka J, Zaremba A (2013) Mitochondrial COI and morphological specificity of the mealy aphids (Hyalopterus ssp.) collected from different hosts in Europe (Hemiptera, Aphididae). ZooKeys 319: 255-267. https://doi.org/10.3897/zookeys.319.4251

Figure 2 - Scatter-plot of the individual canonical scores of the first two canonical variates discriminating 21 samples of Hyalopterus collected from different host plants in five European countries (Bulgaria, Hungary, Lithuania, Romania, Slovakia).

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Figures 14-19 from: Simon E (2013) Preliminary study of wing interference patterns (WIPs) in some species of soft scale (Hemiptera, Sternorrhyncha, Coccoidea, Coccidae). ZooKeys 319: 269-281. https://doi.org/10.3897/zookeys.319.4219

Figures 14-19 - Males with "eliptical" patterns of WIPs, subfamily Eriopeltinae: 14, 15 WIP of Luzulaspis frontalis Green 16–17 WIP of Luzulaspis nemorosa Koteja. 18–19 WIP of Eriopeltis lichtensteini Signoret.

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Figure 1-8 from: Suman V, Kaur H (2013) First report on C-banding, fluorochrome staining and NOR location in holocentric chromosomes of Elasmolomus (Aphanus) sordidus Fabricius, 1787 (Heteroptera, Rhyparochromidae). ZooKeys 319: 283-291. https://doi.org/10.3897/zookeys.319.4265

Figure 1-8 - C-banding (1, 2) 1, 2 Diplotene stages showing distribution of C-bands. Arrows showing heterochromatic chromosomes while arrowhead showing single euchromatic chromosome. Sequence-specific banding (3–6) 3 Diplotene stage with DAPI 4 Diplotene stage with localized CMA3 signals on one autosomal bivalent (shown by arrows) 5 Late diplotene stage with DAPI 6 Late diplotene stage with CMA3. Silver banding (7, 8) 7, 8 Diplotene stages showing location of NORs (shown by arrows) and nucleolar bodies (N). Bar=0.01 mm.

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Figures 1-5 from: Simon E (2013) Preliminary study of wing interference patterns (WIPs) in some species of soft scale (Hemiptera, Sternorrhyncha, Coccoidea, Coccidae). ZooKeys 319: 269-281. https://doi.org/10.3897/zookeys.319.4219

Figures 1-5 - 1 General scheme of the fore wing (after Koteja 2008) acp-alar cupolae, afx-anterior flexing patch, alf-alar fold, alp-alar lobe, asfd-anterior subcostal field, ast-alar setae, clfd-claval (anal) field, cofd-costal field or thickening, cufd-cubital field, cur-cubital ridge, mat-macrotrichia, mit-microtrichia, pfx-posterior flexing patch, psfd-posterior subcostal field, ptst-pterostigma, rs-"radial sector", scr-subcostal ridge 2, 3 Pulvinaria vitis (Linnaeus): scanning electron microphotographs of the wing, showing its microsculpture 4, 5 Male of Pulvinaria vitis (Linnaeus) on white background, with invisible WIPs, and 2 on a black background, showing WIPs.

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Figures 6-13 from: Simon E (2013) Preliminary study of wing interference patterns (WIPs) in some species of soft scale (Hemiptera, Sternorrhyncha, Coccoidea, Coccidae). ZooKeys 319: 269-281. https://doi.org/10.3897/zookeys.319.4219

Figures 6-13 - Males with "horizontally striped patterns" of WIPs, subfamilies Eulacaninae and Coccinae: 6–7 WIP of Sphaerolecanium prunastri (Boyer de Fonscolombe) 8–9 WIP of Eulecanium tiliae (Linnaeus) 10, 11 WIP of Pulvinaria vitis 12–13 WIP of Parthenolecanium corni (Bouché).

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Figure 37-42 from: Takiya D, Dietrich C, Viraktamath C (2013) The unusual Afrotropical and Oriental leafhopper subfamily Signoretiinae (Hemiptera, Cicadellidae): taxonomic notes, new distributional records, and description of two new Signoretia species. ZooKeys 319: 303-323. https://doi.org/10.3897/zookeys.319.4326

Figure 37-42 - Male genitalia of Signoretia. 37–39 Signoretia malaya. 37 genital capsule, lateral view 38 connective, styles, and aedeagus, dorsal view 39 connective, styles, and aedeagus, lateral view 40–42 Signoretia yangli 40 connective and styles, dorsal view 41 style, lateral view 42 aedeagus, lateral view.

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Figures 31-36 from: Takiya D, Dietrich C, Viraktamath C (2013) The unusual Afrotropical and Oriental leafhopper subfamily Signoretiinae (Hemiptera, Cicadellidae): taxonomic notes, new distributional records, and description of two new Signoretia species. ZooKeys 319: 303-323. https://doi.org/10.3897/zookeys.319.4326

Figures 31-36 - Male genitalia of new species of Signoretia. 31–33 Signoretia delicata sp. n. 31 genital capsule, lateral view 32 connective, styles, and aedeagus, dorsal view 33 connective, styles, and aedeagus, lateral view 34–36 Signoretia kintendela sp. n. 34 genital capsule, lateral view 35 connective, style, and aedeagus, dorsal view 36 aedeagus, ventrolateral view.

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Figures 15-20 from: Takiya D, Dietrich C, Viraktamath C (2013) The unusual Afrotropical and Oriental leafhopper subfamily Signoretiinae (Hemiptera, Cicadellidae): taxonomic notes, new distributional records, and description of two new Signoretia species. ZooKeys 319: 303-323. https://doi.org/10.3897/zookeys.319.4326

Figures 15-20 - Fore- and hindwing. 15, 16 Phlogis sp. from Thailand. 17, 18 Preta gratiosa. 19, 20 Signoretia aureola.

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Figures 2-14 from: Takiya D, Dietrich C, Viraktamath C (2013) The unusual Afrotropical and Oriental leafhopper subfamily Signoretiinae (Hemiptera, Cicadellidae): taxonomic notes, new distributional records, and description of two new Signoretia species. ZooKeys 319: 303-323. https://doi.org/10.3897/zookeys.319.4326

Figures 2-14 - Habitus photographs. 2, 3 Chouious tianzeus, dorsal and lateral 4–6 Phlogis sp. from Malaysia, dorsal and details of head lateral and face 7 Phlogis sp. from Thailand, lateral 8, 9 Preta gratiosa, dorsal and lateral 10–12 Signoretia delicata sp. n., detail of head, dorsal, lateral, and frontal 13, 14 Signoretia kintendela sp. n., dorsal and lateral.

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Figure 4 from: Petrović-Obradović O (2013) Monitoring of aphid flight activities in seed potato crops in Serbia. ZooKeys 319: 333-346. https://doi.org/10.3897/zookeys.319.4315

Figure 4 - Dendrogram shows similarity between the sites, constructed on the basis of Morisita–Horn similarity index.

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Figures 21-30 from: Takiya D, Dietrich C, Viraktamath C (2013) The unusual Afrotropical and Oriental leafhopper subfamily Signoretiinae (Hemiptera, Cicadellidae): taxonomic notes, new distributional records, and description of two new Signoretia species. ZooKeys 319: 303-323. https://doi.org/10.3897/zookeys.319.4326

Figures 21-30 - Terminalia of Chouious, Phlogis and Preta. 21–24 Chouious tianzeus, male genitalia 21 genital capsule (without anal tube), lateral view 22 dorsal connective, caudal view 23 connective, styles, aedeagus, dorsal connective, and anal tube, lateral view 24 aedeagus caudal view. 25–27 female terminalia of Phlogis sp. from Malaysia 25 sternite VII, ventral view 26 first valvula of ovipositor, lateral view 27 second valvifers, second valvulae and gonoplacs of ovipositor, lateral view 28 Phlogis sp. from Thailand, sternite VII, ventral view 29, 30 Preta gratiosa 29 pygofer and segment X of anal tube, lateral view 30 subgenital plates, connective, styles, and aedeagus, lateral view.

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Figure 1 from: Takiya D, Dietrich C, Viraktamath C (2013) The unusual Afrotropical and Oriental leafhopper subfamily Signoretiinae (Hemiptera, Cicadellidae): taxonomic notes, new distributional records, and description of two new Signoretia species. ZooKeys 319: 303-323. https://doi.org/10.3897/zookeys.319.4326

Figure 1 - Current distribution of signoretiine genera, Chouious, Phlogis, Preta, and Signoretia. Countries marked with a lighter shade are new records given herein.

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Figure 1 from: Petrović-Obradović O (2013) Monitoring of aphid flight activities in seed potato crops in Serbia. ZooKeys 319: 333-346. https://doi.org/10.3897/zookeys.319.4315

Figure 1 - Map of Serbia with monitored aphid flight activities sites. Coordinates of localities: Begeč 2007 (45°13'26"N, 19°36'53"E), Begeč 2008 (45°13'34"N, 19°37'23"E), Glumač 2008 (43°52'27"N, 20°1'1"E), Golija 1 2007 (43°27'45"N, 20°20'58"E), Golija 2 2007 (43°21'58"N, 20°32'12"E), Golija 1 2008 (43°26'25"N, 20°14'56"E), Golija 2 2008 (43°23'36"N, 20°24'53"E), Golija 1 2009 (43°24'6"N, 20°29'38"E), Golija 2 2009 (43°23'48"N, 20°18'31"E), Kotraža 2007 (43°42'7"N, 20°13'49"E), Kotraža 2008 (43°42'17"N, 20°13'34"E), Kotraža 2010 (43°41'49"N, 20°13'9"E), Kupusina 2008 (45°44'24"N, 19°0'6"E), Kupusina 2009 (45°43'49"N, 18°59'58"E), Stanišić 2008 (45°56'48"N, 19°10'51"E), Stanišić 2009 (45°57'7"N, 19°9'10"E), Stanišić 2010 (45°57'46"N, 19°11'6"E), Prijevor (43°54'49"N, 20°16'2"E), Zablaće 2 2009 (43°50'51"N, 20°26'51"E), Zablaće 1 2010 (43°50'27"N, 20°27'25"E).

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Figure 2 from: Petrović-Obradović O (2013) Monitoring of aphid flight activities in seed potato crops in Serbia. ZooKeys 319: 333-346. https://doi.org/10.3897/zookeys.319.4315

Figure 2 - Maximum of Shannon–Weaver index per locality (number in brackets - number of weeks of monitoring aphid flight activities, number without brackets - week with maximum value of Shannon–Weaver index).

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Figure 3 from: Xie Q, Yu S, Wang Y, Rédei D, Bu W (2013) Secondary structure models of 18S and 28S rRNAs of the true bugs based on complete rDNA sequences of Eurydema maracandica Oshanin, 1871 (Heteroptera, Pentatomidae). ZooKeys 319: 363-377. https://doi.org/10.3897/zookeys.319.4178

Figure 3 - The 3'-half part of secondary structure model of 28S rRNA of Eurydema maracandica. The numbers D8 to D11 represent four LVRs.

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