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Figure 7. A, Gronovius type specimens BMNH 53.11.12.49 in Delineating the fishes of the Clinus superciliosus species complex in southern African waters (Blennioidei: Clinidae: Clinini), with the validation of Clinus arborescens Gilchrist & Thompson, 1908 and Clinus ornatus Gilchrist & Thompson, 1908, and with descriptions of two new species
Figure 7. A, Gronovius type specimens BMNH 53.11.12.49, Clinus mycterizans, identified as Clinus superciliosus; B, BMNH 53.11.12.50, Clinus mycterizans, identified as Clinus cf. ornatus; C, BMNH 53.11.12.51, Clinus mycterizans, identified as Clinus superciliosus; D, BMNH 53.11.12.52, Clinus ignobilis, identified as Clinus acuminatus (Bloch & Schneider, 1801); E, MNHN 2143, Castelnau type specimen of Clinus marmoratus photograph; F, radiograph, identified as Clinus agilis Smith, 1931; G, Clinus superciliosus Linnaeus type NRM135a, photograph; H, radiograph.
Figure 4. A in Delineating the fishes of the Clinus superciliosus species complex in southern African waters (Blennioidei: Clinidae: Clinini), with the validation of Clinus arborescens Gilchrist & Thompson, 1908 and Clinus ornatus Gilchrist & Thompson, 1908, and with descriptions of two new species
Figure 4. A, Clinus ornatus, Lectotype, SAM MB-F038012, male, 158 mm SL (drawn by Elaine Heemstra); B, orbital cirri; C, D, Clinus ornatus underwater, False Bay (C, G. Zsilavecz; D, unknown); E, Clinus spatulatus, SAIAB 93658, male, 84.6 mm SL, Klein River estuary, aquarium photograph (W. Holleman); F, orbital cirri (from Bennett 1983); G, Clinus spatulatus underwater, male; H, female, Bot River estuary; I, female, Klein River estuary (G. Zsilavecz).
Figure 5 in Delineating the fishes of the Clinus superciliosus species complex in southern African waters (Blennioidei: Clinidae: Clinini), with the validation of Clinus arborescens Gilchrist & Thompson, 1908 and Clinus ornatus Gilchrist & Thompson, 1908, and with descriptions of two new species
Figure 5. Posterior of skull with first three dorsal-fin spines and supporting pterygiophores: A, Clinus superciliosus; B, Clinus ornatus.
Figure 3. A in Delineating the fishes of the Clinus superciliosus species complex in southern African waters (Blennioidei: Clinidae: Clinini), with the validation of Clinus arborescens Gilchrist & Thompson, 1908 and Clinus ornatus Gilchrist & Thompson, 1908, and with descriptions of two new species
Figure 3. A, Clinus musaicus, holotype, SAIAB 96616, male, 108 mm SL, Windmill, False Bay (drawn by Elaine Heemstra); B, orbital cirri; C, Clinus musaicus, photograph of holotype (G. Zsilavecz); D–F, Clinus musaicus underwater, habitat and different colour forms, False Bay (G. Zsilavecz).
Figure 6. A in Delineating the fishes of the Clinus superciliosus species complex in southern African waters (Blennioidei: Clinidae: Clinini), with the validation of Clinus arborescens Gilchrist & Thompson, 1908 and Clinus ornatus Gilchrist & Thompson, 1908, and with descriptions of two new species
Figure 6. A, Clinus superciliosus, SAIAB 8260, male, 78 mm SL (drawn by David Voorveld); B, orbital cirri; C–F, Clinus superciliosus underwater, different colour forms and habitats, False Bay; C is the 'default' colour form (G. Zsilavecz).
Data from: The Parmotrema acid test: a look at species delineation in the P. perforatum group 40 y later
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Data from: Nuclear DNA based species delineations of Coccus scale insects in symbiosis with plants and ants, and the role of plant epicuticular wax in structuring associations
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Data from: Genetic species delineation among branching Caribbean Porites corals
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Figure 9 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 9 Shells of species of the genera Ampullaceana, Kamtschaticana, Myxas, Tibetoradix, Racesina, Orientogalba and Bullastra. A.Ampullaceana relicta relicta (05.1975, Macedonia, a spring near St. Naum monastery, Ohrid Lake region; NHMW). B.A. r. pinteri, a paratype (05.06.1973, Macedonia, Prespa Lake near Perovo; MHMW). C, D.Kamtschaticana kamtschatica (Russia, Kamchatka Peninsula, Valley of Geysers; RMBH). E.Myxas glutinosa (14.09.1963, Kazakhstan, floodplain of the Tobol River near Kustanay City; ZISP). F, G.Tibetoradix hookeri, two syntypes (NHMUK). H.T. kozlovi, the holotype (ZISP). I.Racesina luteola (India, Bengal, Paksay, Pabna; NHMUK). J.R. oxiana (04.07.2016, Tajikistan, a roadside ditch near Kurban-Shakhid village; LMBI). K.R. siamensis ("Thailand"; ZMB). L.Orientogalba viridis, a syntype (Guam Island; NMNH). M.O. ollula (1883, Japan, Yokohama; NHMUK). N.Limnaea bowelli, a type (after Preston 1909). O.Orientogalba cf. bowelli (30.06.1924, China, Tibet, Lingka, 14,500 feet a.s.l.; NHMUK). P.Bullastra cumingiana (Philippine, Cebu Island; NHMUK). Scale bars: 2 mm (C, D, F–H, L, M, O), 5 mm (A, B, E, J–K, N, P).
Figure 6 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 6 Shells of species of the subgenera Radix s. str. and Exsertiana. A.Radix rubiginosa (Malaysia, Kuala-Lumpur; LMBI); B.R. rubiginosa (1846, Indonesia, Java Island, "Batavia"; ZMUC); C.R. rubiginosa var. intumescens (Indonesia, Java Island, Surabaya; ZMB); D.R. natalensis (= Limnaea undussumae) (Congo, Undussuma; ZMB). E.R. natalensis (= Limnaea arabica Smith; the holotype; NHMUK); F.R. natalensis f. gravieri (10.03.1966, Ethiopia, lower Avash valley, swamp between Assaita and Dubte; NHMUK). G.R. rufescens (24.11.2016, Myanmar, Yetho River, near the dam; LMBI); H.R. rufescens var. patula (India, Ganges River; ZMB); I.R. rufescens var. chlamys (India, Moradabad; probably syntype; NHMUK). Scale bars: 2 mm (A, B, E, F), 5 mm (C, D, G, I).
Figure 3 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 3 Shells of species in the genus Radix. A.Radix auricularia (28.08.2013, Kazakhstan, Karaganda Region, Suresai River; LMBI); B.R. alticola (20.06.2012, Tajikistan, a hot spring near Djelandy village; LMBI); C.R. alticola (01.07.2016, Tajikistan, a warm brook near Dzhaushangoz village; LMBI); D.R. brevicauda (Kashmir, a syntype; NHMUK); E.R. brevicauda (05.08.1948, Tajikistan, Pamir Mts., Shaimak village, in a warm spring; ZISP); F.R. euphratica (26.06.2016, Tajikistan, Dushanbe, a fountain near the President's palace; LMBI); G.R. euphratica (04.07.2016, Tajikistan, a roadside ditch near Kurban-Shakhid village; LMBI); H.R. euphratica (without date, Iraq, Bagdad; NHMUK); I.R. makhrovi, the holotype (China, Tibet, a roadside ditch west of the Lhasa River mouth; ZISP); J.R. plicatula, a probable syntype (China, Chusan, NHMUK); K.R. plicatula (26.07.2017, China, Uyghuria, Bagrash-kol' Lake; LMBI); L.R. plicatula (26.11.2014, China, Bejing, an artificial pond in the former Emperor's summer palace; LMBI). Scale bars: 2 mm (B–C, F–L), 5 mm (A, D–E, K).
Figure 2 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 2 The scheme of measurements of the shell (A) and the parts of the copulatory apparatus (B). Abbreviations: SH – shell height; SW – shell width; SpH – spire height; BWH – body whorl height; AH – aperture height; AW – aperture width; PP – length of praeputium; PS – penis sheath length. A – after Vinarski (2016b).
Figure 1 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 1 Majority rule consensus phylogenetic tree of the Amphipepleinae recovered from maximum likelihood analysis and obtained for the complete dataset of mitochondrial and nuclear sequences (three codons of COI + 16S rRNA + 28S rRNA). Black numbers near nodes are bootstrap support values/Bayesian posterior probabilities. The genus-level clades are highlighted in colour. The other Lymnaeidae and outgroup taxa are omitted (see Aksenova et al. 2018a for the complete phylogeny, sequence dataset and methodological details).
Figure 8 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 8 Copulatory apparatuses of the species in the genera Ampullaceana, Peregriana, Kamtschaticana, Tibetoradix, Racesina, Orientogalba and Bullastra. A.Ampullaceana ampla (11.07.2017, Ukraine, Transcarpathian Region, Irshava River). B.A. balthica (Germany, Mecklenburg-Vorpommern, lake Torgelower See). C.A. dipkunensis (15.09.2016, Ukraine, Transcarpathian Region, Tisa River). D.A. fontinalis (20.08.2017, Russia, Rostov Region, Severskiy Donets River). E.A. lagotis (29.06.2016, Tajikistan, a stream in the Panj River floodplain). F.Peregriana dolgini (13.07.2015, Russia, Tyumen' Region, a floodplain of the Tol'ka oxbow). G.Peregriana peregra (01.07.2006, Russia, Omsk Region, vicinity of Chernoluchye settlement). H.Kamtschaticana kamtschatica (12.04.2014, Russia, Kamchatka Peninsula, Valley of Geysers). I.Tibetoradix hookeri (09-10.2012, China, Tibet, a brook, 250 km N of Lhasa). J.T. kozlovi (after Aksyonova et al. 2018a, modified). K.Racesina oxiana (04.07.2016, Tajikistan, a roadside ditch near Kurban-Shakhid village). L.R. siamensis (24.11.2016, Myanmar, a water reservoir on the Yetho River). M.Ampullaceana relicta relicta (2005, Ohrid Lake). N.Orientogalba ollula (08.07.2010, China, Shaanxi Province, a roadside ditch near Yandi village). O.Bullastra cumingiana (Philippines, Luzon Island, Lake Sampaloc). Scale bars: 1 mm. B – after Schniebs et al. (2011), modified.
Figure 5 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 5 Shells of the Central Asian representatives of the genus Radix. A.Radix tener, the type (after Küster 1862, slightly modified); B.R. persica, the holotype (after Sitnikova et al. 2012); C.R. euphratica (30.08.2013, Russia, Krasnodar Region, Yaseni River, scale bar 2 mm; RMBH); D.R. tenera race euphratica (Iraq, Samara, after Annandale and Prashad 1919b); E.R. gedrosiana, a syntype (Pakistan, Baluchistan, Quetta, a pond in the Residency garden; after Annandale and Prashad 1919a); F, G.R. rectilabrum (Pakistan, Northern Baluchistan, Pishin district, Kushdil Khan reservoir; after Annandale and Prashad 1919a); H.R. iranica, the holotype (from the "Persian Baluchistan"; after Annandale and Prashad 1919a).
Figure 7 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 7 Shells of species of the genera Ampullaceana and Peregriana. A.Ampullaceana ampla (Austria, Wallersee Lake; NHMW). B.A. ampla (Germany, Neckarsteinach; NHMUK). C.A. balthica (14.12.1946, Denmark, Furesø Lake; ZMUC). D.A. balthica (Sweden, Stockholm; NMG). E.A. dipkunensis (Russia, Arkhangelsk Region, Nyandomka River; LMBI). F.A. dipkunensis, the holotype (07.07.1977, Russia, Krasnoyarsk Territory, Gornoye Lake; ZISP). G.Limneus fontinalis, the lectotype (after Forcart 1957). H.A. fontinalis (18.08.2017, Russia, Rostov Region, Veselovskoye Reservoir; LMBI). I.Limneus intermedius (France, Lyon; NHMW). J.A. lagotis (Russia, Leningrad Region, Lava River near Troitskoye; ZISP). K.A. lagotis (Austria, Bürgenland, Bodersdorf; NHMW). L.Peregriana dolgini (Russia, Republic of Buryatia, Kironskiy Spring; RMBH). M.P. peregra (France, from Draparnaud's collection; NHMW). Scale bars: 2 mm (D–F, J, L, M), 5 mm (A–C, H, I, K). G – scale bar absent from the original publication.
Figure 4 from: Vinarski MV, Aksenova OV, Bolotov IN (2020) Taxonomic assessment of genetically-delineated species of radicine snails (Mollusca, Gastropoda, Lymnaeidae). Zoosystematics and Evolution 96(2): 577-608. https://doi.org/10.3897/zse.96.52860
Figure 4 Copulatory apparatuses of the species of the genus Radix. A.Radix auricularia (19.07.2007, Russia, Tyumen' Region, Vylposl channel near Labytnangi Town); B.R. alticola (01.07.2016, Tajikistan, a warm brook near Dzhaushangoz village); C.R. euphratica (04.07.2016, Tajikistan, a roadside ditch near Kurban-Shakhid village); D.R. makhrovi, a paratype (after Aksenova et al. 2018a, modified). E.R. plicatula (26.11.2014, China, Bejing, an artificial pond in the former Emperor's summer palace). F.R. rubiginosa (Malaysia, Kuala-Lumpur); G.R. rufescens (24.11.2016, Myanmar, Yetho River, near the dam). H.R. natalensis (05.08.2018, Uganda, crater lake Kyamwiga). Scale bars: 2 mm.
FIGURE 2 in Taxonomic delineation of two closely allied Rubus L. (Rosaceae) species with notes on the typification of the name R. fairholmianus
FIGURE 2. Digital image of neotype designated for R. fairholmianus Gard.
Figure 6 from: Fu Y, Fang X-L, Wang X-H, Shen M, Xiao Y-L (2022) Corynoneura Winnertz species from Hunan Province, Oriental China, delineated with morphological and 16S rDNA data (Diptera, Chironomidae). ZooKeys 1082: 87-102. https://doi.org/10.3897/zookeys.1082.73019
Figure 6 Neighbor-joining Kimura 2 parameter tree based on 16S rDNA of five Corynoneura species and Thienemanniella convexa Fu in Fang et al. (2021). Numbers on branches refer to the percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (500 replicates). Taxa names include scientific names and GenBank accession numbers of corresponding 16S rDNA.
Figure 5 from: Fu Y, Fang X-L, Wang X-H, Shen M, Xiao Y-L (2022) Corynoneura Winnertz species from Hunan Province, Oriental China, delineated with morphological and 16S rDNA data (Diptera, Chironomidae). ZooKeys 1082: 87-102. https://doi.org/10.3897/zookeys.1082.73019
Figure 5 Corynoneura longshanensis sp. nov., male imago. A wing B tentorium and cibarial pump C hind tibial apex D antenna E hypopygium, dorsal view F hypopygium, ventral view.
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