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Supplementary material 1 from: Baasanmunkh S, Urgamal M, Oyuntsetseg B, Sukhorukov AP, Tsegmed Z, Son DC, Erst A, Oyundelger K, Kechaykin AA, Norris J, Kosachev P, Ma J-S, Chang KS, Choi HJ (2022) Flora of Mongolia: annotated checklist of native vascular plants. PhytoKeys 192: 63-169. https://doi.org/10.3897/phytokeys.192.79702
Appendix 1
FIGURES 188–190. Cassida lacrymosa. 191–192. Cassida fuscosignata. 188–191 in A monograph of the Afrotropical Cassidinae (Coleoptera: Chrysomelidae). Part 6. Revision of the tribe Cassidini 3, the genus Cassida L.
FIGURES 188–190. Cassida lacrymosa. 191–192. Cassida fuscosignata. 188–191. Dorsal; 192. Lateral.
FIGURE 192 in New records and description of fifty-four new species of aquatic beetles in the genus Hydraena Kugelann from South America (Coleoptera: Hydraenidae)
FIGURE 192. All known collecting localities for South American Hydraena.
Figure 192 from: Fisher JR, Fisher DM, Skvarla MJ, Nelson WA, Dowling APG (2017) Revision of torrent mites (Parasitengona, Torrenticolidae, Torrenticola) of the United States and Canada: 90 descriptions, molecular phylogenetics, and a key to species. ZooKeys 701: 1-496. https://doi.org/10.3897/zookeys.701.13261
Figure 192 - Torrenticola pinocchio sp. n. male: A dorsal plates B venter (legs removed) C subcapitulum D pedipalp (setae not accurately depicted). Scale = 100 µm.
FIGURES 192–195 in A Revision of the Wasp Genus Pison Jurine, 1808 of Australia and New Zealand, New Guinea, and the Pacific Islands (Hymenoptera: Crabronidae)
FIGURES 192–195. Pison bicellulare Pulawski, sp. nov., female. (192) Clypeus; (193) Head in dorsal view; (194) Thorax in lateral view (arrow shows depressed area of mesopleuron); (195) Distal part of forewing. FIGURE 196. Collecting localities of Pison bicellulare Pulawski, sp. nov.
Figure 192 from: Carolina Arias-Penna D, Whitfield JB, Janzen DH, Hallwachs W, Dyer LA, Smith MA, Hebert PD.N, Fernández-Triana JL (2019) A species-level taxonomic review and host associations of Glyptapanteles (Hymenoptera, Braconidae, Microgastrinae) with an emphasis on 136 new reared species from Costa Rica and Ecuador. ZooKeys 890: 1-685. https://doi.org/10.3897/zookeys.890.35786
Figure 192 Glyptapanteles robbinthorpi sp. nov. male 07-SRNP-4145 DHJPAR0020730 A Habitus B–D Head B Frontal view C Lateral view D Dorsal view E Mesonotum, dorsal view F Scutellum, metanotum, propodeum, dorsal view GT1–3, dorsal view H, J Metasoma H Dorsal view J Lateral view I Mesosoma, lateral view.
FIGURES 192–193 in New species (130) of the hyperdiverse aquatic beetle genus Hydraena Kugelann from Papua New Guinea, and a preliminary analysis of areas of endemism (Coleoptera: Hydraenidae) 2944
FIGURES 192–193. Aedeagi of holotypes. 192. H. exhalista. 193. H. apertista.
Figures 187–197. Figures 187–192 in Phylogenetic analysis of Eurytominae (Chalcidoidea: Eurytomidae) based on morphological characters
Figures 187–197. Figures 187–192: petiole and base of gaster in lateral view; 187, Rileya pulchra; 188, Eurytominae Ecuador; 189, Tetramesa fulvicollis; 190, Eurytoma cressoni; 191, Phylloxeroxenus San Alberto; 192, Axima brevicornis. Figure 193: petiole in ventral view – Eurytoma nodularis. Figure 194: base of gaster in frontal view – Bruchophagus squamea. Figure 195: petiole and median part of first gastral tergite in frontal view – Eurytoma volkovi. Figure 196: petiole and gaster – Axima brevicornis. Figure 197: syntergum in lateral view – Eurytoma amygdali.
Figures 192-194 from: van Achterberg K (2010) Revision of the Agathidinae (Hymenoptera, Braconidae) of Vietnam, with the description of forty-two new species and three new genera. ZooKeys 54: 1-184. https://doi.org/10.3897/zookeys.54.475
Figures 192-194 - Euagathis ophippium (Cameron), female, Cuc Phuong National Park. 192 habitus lateral 193 mesosoma dorsal 194 first-third metasomal tergites dorsal.
Figures 192-197 from: Talamas E, Masner L, Johnson N (2011) Revision of the Malagasy genus Trichoteleia Kieffer (Hymenoptera, Platygastroidea, Platygastridae). ZooKeys 80: 1-126. https://doi.org/10.3897/zookeys.80.907
Figures 192-197 - 99Trichoteleia parvipennis sp. n. 192 Lateral habitus, female holotype (OSUC 181021) 193 Head and mesosoma, lateral view, female holotype (OSUC 181021) 194 Dorsal habitus, female (OSUC 181022) 195 Head and mesosoma, dorsal view, female holotype (OSUC 181021) 196 Head, anterior view, female (OSUC 181023) 197 Metasoma, dorsal view, female holotype (OSUC 181021). Scale bars in millimeters.
Figure 6 from: Dunlop J, Penney D (2012) Summary statistics for fossil spider species taxonomy. ZooKeys 192: 1-13. https://doi.org/10.3897/zookeys.192.3093
Figure 6 - Number of fossil spider species described from each geological period. The Paleogene Period has been broken down into its various Epochs (Paleocene, Eocene and Oligocene) in order to show the spread of data; the Neogene Period is represented only by the Miocene Epoch because Pleistocene sub-fossils have not been included.
Figure 5 from: Dunlop J, Penney D (2012) Summary statistics for fossil spider species taxonomy. ZooKeys 192: 1-13. https://doi.org/10.3897/zookeys.192.3093
Figure 5 - Number of fossil spider species described by different arachnologists. Only first authorship data are considered, so in reality some authors will have described more species than the value indicated.
Figure 2 from: Dunlop J, Penney D (2012) Summary statistics for fossil spider species taxonomy. ZooKeys 192: 1-13. https://doi.org/10.3897/zookeys.192.3093
Figure 2 - The numbers of described fossil spider species by year. Note that data for the 126 years where no fossil spider species were described are not included. Hence, the actual lull periods between peaks of activity are artificially shortened in this graph. For example, the period between the first described fossil spider in 1822 and the next data plot is actually 32 years. Squares = newly described fossil spider species, triangles = cumulative number of described fossil spider species. Data derived from Dunlop et al. (2012).
Figure 3 from: Dunlop J, Penney D (2012) Summary statistics for fossil spider species taxonomy. ZooKeys 192: 1-13. https://doi.org/10.3897/zookeys.192.3093
Figure 3 - The cumulative number of newly described extant spider species this century. Data from Platnick (2001–2012). Total number of described extant species = 42,751 (Platnick 2012).
Figure 1 from: Dunlop J, Penney D (2012) Summary statistics for fossil spider species taxonomy. ZooKeys 192: 1-13. https://doi.org/10.3897/zookeys.192.3093
Figure 1 - The evolutionary tree of spiders (updated from Penney and Selden 2011: data table 4) showing known ranges of spider families based on described fossils and predicted ranges of sister taxa based on their phylogenetic relationships (strictly fossil families inserted in approximate positions as per hypothesized relationships proposed in the literature, but not based on any cladistic analysis). Note that this is a highly dynamic figure, with known ranges and predicted ranges changing frequently as a result of new fossil discoveries, changes in phylogenetic hypotheses, revised dating of various deposits and even potentially through revised dating of geological periods and epochs. Researchers should check Dunlop et al. (currently 2012 and updated every six months) for the most recent data on the oldest fossils of each family and genus.
Figure 3 from: Wu D, Sun X (2012) Review of Chinese Oligaphorurini (Collembola, Onychiuridae) with descriptions of two new Palaearctic species. ZooKeys 192: 15-26. https://doi.org/10.3897/zookeys.192.2959
Figure 3 - Oligaphorura pseudomontana sp. n. A dorsal side of body B organ of Ant. III C antenna D labium E ventral side of Abd. II–VI. Scales: 0.1 mm (A, C & E), 0.01 (B & D)
Figure 1 from: Yang D, Wang J, Zhu Y (2012) Two new species of Amblypsilopus Bigot with a key to species from Taiwan (Diptera, Dolichopodidae). ZooKeys 192: 27-33. https://doi.org/10.3897/zookeys.192.3265
Figure 1 - Amblypsilopus flavellus sp. n. Male genitalia, lateral view. Scale bar 0.25 mm. Abbreviations: cer cercus epn epandrium epnl epandrial lobe hyp hypandrium hypl hypandrial lateral arm ph phallus sur surstyllus.
Figure 2 from: Wu D, Sun X (2012) Review of Chinese Oligaphorurini (Collembola, Onychiuridae) with descriptions of two new Palaearctic species. ZooKeys 192: 15-26. https://doi.org/10.3897/zookeys.192.2959
Figure 2 - Micraphorura changbaiensis sp. n. A dorsal side of Abd. IV–VI B ventral side of head C ventral side of Abd. II–VI D leg III E anal valves. Scales: 0.1 mm (A–D), 0.01 (E)
Figures 11-14 from: Ivinskis P, Rimsaite J, Saldaitis A (2012) Description of two new species of Cossidae (Lepidoptera) from China. ZooKeys 192: 35-49. https://doi.org/10.3897/zookeys.192.2611
Figures 11-14 - Patoptoformis rimsaitae Saldaitis & Yakovlev sp. n. 11 Patoptoformis rimsaitae Saldaitis & Yakovlev, holotype, Sichuan province 12 Patoptoformis rimsaitae, holotype, male genitalia, capsule, prep. Nr. UFO2 13 Patoptoformis rimsaitae, holotype, male genitalia, aedeagus, prep. Nr. UFO2 14 Type locality Patoptoformis rimsaitae, China, Sichuan.
Figures 15-19 from: Ivinskis P, Rimsaite J, Saldaitis A (2012) Description of two new species of Cossidae (Lepidoptera) from China. ZooKeys 192: 35-49. https://doi.org/10.3897/zookeys.192.2611
Figures 15-19 - Patoptoformis spp. adults and genitalia. 15 Patoptoformis ganesha (Yakovlev,2004, holotypus 16 Patoptoformis ganesha, holotypus male genitalia 17 Patoptoformis hanuman Yakovlev,2006 holotypus, male 18 Patoptoformis hanuman, holotypus, male genitalia 19 Patoptoformis hanuman, paratypus, female.
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