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Figure 7 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): I. Description of Nothochrysa ehrenbergi sp. nov. ZooKeys 866: 1-18. https://doi.org/10.3897/zookeys.866.35394

Figure 7 Nothochrysaehrenbergi sp. nov. (Ñuble, Chile; Male, CAS): Male genitalia, cleared, and specimen labels (Penny's identification label not included) (a) gonarcal complex, dorsal (b) gonarcal complex, frontal, tilted (c) gonarcal complex, posterior (d) gonarcal complex, lateral (e) hypandrium internum (f) labels. c comes g.a. gonarcal apodeme g.b. gonarcal bridge g.p. gonarcal process gse gonosetae on membranous gonosaccus mu mediuncus.

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Figure 6 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): II. Redescription of Leptochrysa prisca Adams & Penny. ZooKeys 866: 19-38. https://doi.org/10.3897/zookeys.866.35396

Figure 6 Leptochrysaprisca Adams & Penny (Peru, Amazonas, female, FSCA): Wings with selected features labeled (a) forewing, (b) hindwing. For comparison, the inserts depict the conditions on the L.prisca holotype for (a) the im1 cell and (b) the proximal crossvein between RP and MA; images modified from Adams and Penny (1992b: fig 10). A1, A2, A3 first, second, and third anal areas on wing margin, 1c-sc first crossvein between the costa and subcosta Cu cubitus CuA anterior cubital area on wing margin CuP posterior cubital area on wing margin icu1, icu3 first and third intracubital cells ig, og inner and outer gradate veins im1 first intramedian cell M medial area on wing margin MA, MP anterior and posterior branches of the media mcu1, mcu2, mcu3 first, second, and third medial cells Psc pseudocubitus Psm pseudomedia R radial area on wing margin RA, RP anterior and posterior branches of the radius 1rp-ma first crossvein between RP and MA.

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Figure 5 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): II. Redescription of Leptochrysa prisca Adams & Penny. ZooKeys 866: 19-38. https://doi.org/10.3897/zookeys.866.35396

Figure 5 Leptochrysaprisca Adams & Penny (Peru, Amazonas, female, FSCA): Thorax (a) thorax and most of abdomen, lateral view (b) mesothorax and metathorax, dorsal view (c) mesoscutellum, metathorax, dorsal view (d) connection between mesoscutellum, metascutum (e, f, g) metatarsus, ventrolateral, ventral, lateral views, respectively. In (d), the lower arrow indicates the flat surface of the metascutum and its anterior quadrate protrusion; the upper arrow indicates the lobate lateral expansions of the mesoscutellum.

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Figure 3 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): I. Description of Nothochrysa ehrenbergi sp. nov. ZooKeys 866: 1-18. https://doi.org/10.3897/zookeys.866.35394

Figure 3 Nothochrysaehrenbergi sp. nov. (Ñuble, Chile; Male, CAS): Head and prothorax (a) head, frontal (b) head and prothorax, dorsal (c) head and prothorax, lateral (d, e) base of antennae, dorsal, lateral (f) flagellar segments, mid antenna.

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Figure 9 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): II. Redescription of Leptochrysa prisca Adams & Penny. ZooKeys 866: 19-38. https://doi.org/10.3897/zookeys.866.35396

Figure 9 Leptochrysaprisca Adams & Penny (Peru, Amazonas, female, FSCA): Abdomen, genitalia, cleared (a) spermathecal complex (b) spermatheca and duct (c) terminalia, lateral view showing colleterial, spermathecal, and subgenitale complexes (d) subgenitale, lateroventral view (e) terminus, lateral view showing crescent-shaped gonapophysis lateralis (proximal and distal margins) encased between ventral extension of T9, spinose oviduct beneath (terminal end of duct 2 obscured) (f) gonapophyses laterales within extensions of T9, subgenitale beneath (g) subgenitale, dorsal view showing bilobed terminus. b.c. bursa copulatrix c.gl. colleterial gland (broken distally) c.res. colleterial reservoir du1 large duct leading from colleterial gland to reservoir du2 duct leading from colleterial reservoir to oviduct ect ectoproct g.l. gonapophysis lateralis nestled beneath T9 ov oviduct sg subgenitale sp spermatheca sp.d. spermathecal duct sr spiracle T8, T9 eighth and ninth tergites.

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Figure 6 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): I. Description of Nothochrysa ehrenbergi sp. nov. ZooKeys 866: 1-18. https://doi.org/10.3897/zookeys.866.35394

Figure 6 Nothochrysaehrenbergi sp. nov. (Ñuble, Chile; Male, CAS): Abdomen, cleared (a) midsection-terminus, lateral (b) T8 (distal), T9, and ectoproct, lateral (c) terminal abdominal segments, lateral (d) terminal abdominal segments, ventral. apo dorsal apodeme extending below T8 cc callus cerci ect ectoproct k distal knob extending from S8+9 sr spiracle S4, S7 fourth, seventh strenites S8, S9 partially coalesced eighth and ninth sternites T7, T8, T9 seventh, eighth, ninth tergites.

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Figure 2 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): I. Description of Nothochrysa ehrenbergi sp. nov. ZooKeys 866: 1-18. https://doi.org/10.3897/zookeys.866.35394

Figure 2 Nothochrysaehrenbergi sp. nov. (Ñuble, Chile; Male, CAS): Wings with selected features labeled (a) left forewing, (b) left hindwing. Marginal traces of major veins demarcated; arrow (hindwing) indicates alignment of RP and MA along upper margin of first intramedian cell. A1, A2, A3 first, second, third anal veins CuA, CuP anterior, posterior branches of cubitus icu1, icu3 first, third intracubital cells ig inner gradate im1, im2 first, second intramedian cells Ju jugal lobe MA media anterior MP media posterior mcua, mpcua second and third medial cells Mf furcation of media og outer gradate Psc pseudocubitus Psm pseudomedia Rf furcation of radius RP radius posterior RP1 first branch of radius posterior 1sc-r first crossvein between subcosta and radius 2m-cu second crossvein between media and cubitus.

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Figure 8 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): II. Redescription of Leptochrysa prisca Adams & Penny. ZooKeys 866: 19-38. https://doi.org/10.3897/zookeys.866.35396

Figure 8 Leptochrysaprisca Adams & Penny (Peru, Amazonas, female, FSCA): Abdomen, cleared (a) abdominal integument dissected, segments A5-A7 with dorsal, lateral, and ventral surfaces in view, A8 with dorsal and lateral surfaces in view, A9, ectoproct in lateral view (b) segments A5-terminus, lateral view (c) abdominal integument, dorsal (T6-T7) and ventral (S5-S6) (d) callus cerci (e) terminal abdominal segments, ventral view (f) terminal abdominal segments, dorsal view. cc callus cerci ect ectoproct g.l. gonapophyses laterales sg subgenitale sr spiracle S5, S6, S7 fifth, sixth, and seventh sternites T6, T7, T8, T9 sixth, seventh, eighth, and ninth tergites.

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Figure 10 from: Tauber CA (2019) South American Nothochrysinae (Neuroptera, Chrysopidae): II. Redescription of Leptochrysa prisca Adams & Penny. ZooKeys 866: 19-38. https://doi.org/10.3897/zookeys.866.35396

Figure 10 Contents of Leptochrysaprisca Adams & Penny abdomen (after clearing with KOH) (Peru, Amazonas, female, FSCA): Pollen and parasitoids. (a, b) pollen from gut (c, d) two of five robust parasitoid larvae from abdominal cavity (e, f) probably exuviae (two of five) from previous parasitoid instar. Scale on (c) applies to (c, d, e, f).

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Figure 5 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 5 - Median-joining haplotype networks of the available COI sequences of bumble bees from Novaya Zemlya and other Arctic areas. (A) Bombus hyperboreus . (B) B. pyrrhopygus . (C) B. glacialis . The circle size is proportional to the number of available sequences belonging to a certain haplotype (smallest circle = one sequence). The small black dots indicate hypothetical ancestral haplotypes. Red numbers near branches indicate the number of nucleotide substitutions between haplotypes.

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Figure 1 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 1 - Map of bumble bee collecting localities on Novaya Zemlya (YI – Yuzhny Island, NI – Severny Island). Recent samples (red circles): 1 – Malye Karmakuly (YI); 2 – Bezymyannaya Bay (YI). Historical samples (blue circles): 3 – Matochkin Shar Strait (YI); 4 – Kostin Shar Strait (YI); 5 – Matochkin Shar Strait, broadcast station (YI); 6 – Matochkin Shar Strait, Nochuev Stream (YI); 7 – Krestovaya Bay (NI); 8 - Kostin Shar Strait, Propashchaya Bay (YI); 9 – Malye Karmakuly (YI); 10 – Verkhnyaya Tyulenya Bay (NI); 11 – Chekin Bay (NI); 12 – Novosiltsev Lake (NI); 13 – Peschanka River (YI); 14 – Bychkov River (NI), 15 – Matochkin Shar Strait, Poperechniy Cape (YI); 16 – Matochkin Shar Strait, coast (YI); 17 – Matochkin Shar Strait, Blizhnyaya Mountain (YI); 18 – Matochkin Shar Strait, observatory (YI).

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Figure 8 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 8 - Phenology of bumble bees from Novaya Zemlya by ten-day periods (summary data from the historical and recent samples). (A) Bombus glacialis (N = 92 specimens). (B) B. pyrrhopygus (N = 23 specimens). (C) B. hyperboreus (N = 15 specimens).

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Figure 4 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 4 - Maximum likelihood (IQ-TREE) phylogeny of the subgenus Alpinobombus based on the COI gene haplotypes. The red asterisks indicate the putative species-level clades supported by mPTP species-delimitation model. The black numbers near nodes are ultrafast bootstrap support values. The haplotypes from Novaya Zemlya are colored red. The Bombus hyperboreus species complex with two valid species is colored light blue. Outgroup is not shown.

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Figure 6 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 6 - Morphological patterns of Bombus pyrrhopygus from Malye Karmakuly, Yuzhny Island, Novaya Zemlya: (A) Thorax (prospective topotype RMBH BMB90, queen). (B) Metasoma (same topotype queen). (C) Hind tibia (same topotype queen). (D) Surface of malar space (same topotype queen). (E) Flagellum (same topotype queen). (F) Metasoma (RMBH BMB88, worker). (G) Metasoma (RMBH BMB86, worker). Scale bars 2 mm (A-D, F-G); 1 mm (E). Photographs by Grigory S. Potapov.

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Figure 3 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 3 - Primary foraging resources of bumble bees on Novaya Zemlya (Yuzhny Island, Bezymyannaya Bay). (A) Alpine milkvetch ( Astragalus alpinus ), 26.vii.2017. (B) Arctic sweetvetch ( Hedysarum arcticum ), 27.vii.2017. (C) Tundra milkvetch ( Astragalus umbellatus ), 20.vii.2017. (D) Dwarf fireweed ( Chamaenerion latifolium ), 26.vii.2017. Photographs by Vitaly M. Spitsyn.

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Figure 7 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 7 - Morphological patterns of Bombus hyperboreus from Malye Karmakuly, Yuzhny Island, Novaya Zemlya (RMBH BMB87, queen). (A) Thorax. (B) Metasoma. (C) Hind tibia. (D) Surface of malar space. (E) Flagellum. Scale bars 2 mm (A-D); 1 mm (E). Photographs Grigory S. Potapov.

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Figure 2 from: Potapov GS, Kondakov AV, Filippov BYu, Gofarov MYu, Kolosova YS, Spitsyn VM, Tomilova AA, Zubrii NA, Bolotov IN (2019) Pollinators on the polar edge of the Ecumene: taxonomy, phylogeography, and ecology of bumble bees from Novaya Zemlya. ZooKeys 866: 85-115. https://doi.org/10.3897/zookeys.866.35084

Figure 2 - Habitats of bumble bees on Novaya Zemlya (Yuzhny Island). (A) Herb tundra patch with Alpine milkvetch ( Astragalus alpinus ), Bezymyannaya Bay, 20.vii.2017. (B) Herb tundra patch with Arctic sweetvetch ( Hedysarum arcticum ), Bezymyannaya Bay, 29.vii.2017. (C) Meadow-like association with dwarf fireweed ( Chamaenerion latifolium ) along a stream valley, Bezymyannaya Bay, 26.vii.2017. (D) Meadow-like association on a mountain terrace, Malye Karmakuly, 28.vii.2015. Photographs by Vitaly M. Spitsyn (A, C–D), Elena Y. Churakova (B).

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Figure 9 from: Moreira GRP, Gorbunov OG, Fochezato J, Gonçalves GL (2019) A peculiar new species of gall-inducing, clearwing moth (Lepidoptera, Sesiidae) associated with Cayaponia in the Atlantic Forest. ZooKeys 866: 39-63. https://doi.org/10.3897/zookeys.866.34202

Figure 9 - Natural history of Neosphecia cecidogena on Cayaponia pilosa A host plant at the type locality B young fruit, lateral C fully developed gall on axillary region, lateral D, E basal portion of median-sized gall sectioned transversally, showing yellowish nutritive tissue (pointed by closed arrows) (D) longitudinally sectioned medium-sized galls, showing larval feeding scars on nutritive tissue (some are indicated by open arrows) F longitudinally sectioned mature gall, with last instar larva (asterisk) inside (closed and open arrows indicate frass and operculum, respectively) G transversally sectioned, senescent gall showing detached operculum (indicated by seta) and internal wall covered by silk H longitudinally sectioned senescent gall showing internal silk covering (proximal limit pointed by closed arrow) I senescent, overwintering gall, lateral (seta indicates direction of adult emergence) J distal portion of senescent gall, showing pupal exuvium left partially protruded after adult emergence (marked with asterisk). Scale bars: 2 mm (G, H); 3mm (D–F); 4mm (J); 6 mm (I); 9 mm (C); 1 cm (B); 9 cm (A).

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Figure 8 from: Moreira GRP, Gorbunov OG, Fochezato J, Gonçalves GL (2019) A peculiar new species of gall-inducing, clearwing moth (Lepidoptera, Sesiidae) associated with Cayaponia in the Atlantic Forest. ZooKeys 866: 39-63. https://doi.org/10.3897/zookeys.866.34202

Figure 8 - Neosphecia cecidogena pupal morphology under scanning electron microscopy A, C head, ventral and lateral views, respectively B clipeal seta in detail D third to sixth abdominal segments, lateral E fourth abdominal spiracle, lateral F spines of fourth abdominal segment in detail, lateral G last abdominal segments, posterior H spine of last abdominal segment, mesal. Scale bars: 40 µm (H); 50 µm (B, E); 100 µm (F); 200 µm (C, G); 0.4 mm (A); 0.5 mm (D), respectively.

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Figure 6 from: Moreira GRP, Gorbunov OG, Fochezato J, Gonçalves GL (2019) A peculiar new species of gall-inducing, clearwing moth (Lepidoptera, Sesiidae) associated with Cayaponia in the Atlantic Forest. ZooKeys 866: 39-63. https://doi.org/10.3897/zookeys.866.34202

Figure 6 - Morphology of Neosphecia cecidogena last larval instar under scanning electron microscopy A head, antero-dorsal view B antenna, anterior C stemmata, lateral D maxillae and labium, ventral E spineret, lateral F prothoracic shield, dorsal G meso- and metathoracic segments, dorsal H prothoracic leg, posterior I tarsal claw in detail, posterior J prothoracic spiracle, lateral K second to fourth abdominal segments, lateral L abdominal callus in detail, ventral. Scale bars: 20 µm (E, I, J); 40 µm (B), 100 µm (C, D, H, L); 0.5 mm (A, G, K).

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