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Figs 2-13 in Classification, Natural History, and Evolution of the Subfamily Peloniinae O (Coleoptera: Cleroidea: Cleridae). Part IX. Taxonomic revision of the New World genus Muisca S
Figs 2-13: Various structures of Muisca testacea. (2) Head, frontal view. (3) Head, ventral view. (4) Head, dorsal view. (5) Prothorax, ventral view. (6) Antenna, male. (7) Spicular fork. (8) Maxilla. (9) Labrum. (10) Metendosternite. (11) Mandible. (12) Labium. (13) Metathoracic wing.
Рис. 1. ВоЗмоЖный синтип Mactra sulcataria Deshayes in Reeve, 1854 иЗ коллекции МуЗеЯ естественной истории, Лондон (коллекциЯ Х. Каминга), регистрационный номер № NHMUK 20130005. Рисунок Этого ЭкЗемплЯра опубликован Л. Ривом [Reeve, 1854, pl. 2, fig. 5]; воспроиЗведен в настоЯЩей статье (рис. 2А). in Notes on type material of Mactra sulcataria Deshayes in Reeve, 1854 (Bivalvia: Mactridae) and taxonomic history of the species
Рис. 1. ВоЗмоЖный синтип Mactra sulcataria Deshayes in Reeve, 1854 иЗ коллекции МуЗеЯ естественной истории, Лондон (коллекциЯ Х. Каминга), регистрационный номер № NHMUK 20130005. Рисунок Этого ЭкЗемплЯра опубликован Л. Ривом [Reeve, 1854, pl. 2, fig. 5]; воспроиЗведен в настоЯЩей статье (рис. 2А).
Fig. 2 in Notes on type material of Mactra sulcataria Deshayes in Reeve, 1854 (Bivalvia: Mactridae) and taxonomic history of the species
Fig. 2. Illustrations of Mactra sulcataria Deshayes in Reeve, 1854 in monographs of the 19th century: A – Reeve [1854, pl. 2, fig. 5]; B – Weinkauff [1881, Taf. 18, Fig. 3]; in references as: Küster, Weinkauff [1841–1884].
Рис. 3. ОписаниЯ Mactra sulcataria Deshayes in Reeve, 1854 в статье Ж.П. ДехЭ [Deshayes, 1854, p. 15] (вверху) и монографии Л. Рива [Reeve, 1854, species 5] (вниЗу). in Notes on type material of Mactra sulcataria Deshayes in Reeve, 1854 (Bivalvia: Mactridae) and taxonomic history of the species
Рис. 3. ОписаниЯ Mactra sulcataria Deshayes in Reeve, 1854 в статье Ж.П. ДехЭ [Deshayes, 1854, p. 15] (вверху) и монографии Л. Рива [Reeve, 1854, species 5] (вниЗу).
Рис. 2. ИЗобраЖениЯ Mactra sulcataria Deshayes in Reeve, 1854 в работах 19 в.: A – Reeve [1854, pl. 2, fig. 5]; B – Weinkauff [1881, Taf. 18, Fig. 3]; в списке литературы как: Küster, Weinkauff [1841–1884]. in Notes on type material of Mactra sulcataria Deshayes in Reeve, 1854 (Bivalvia: Mactridae) and taxonomic history of the species
Рис. 2. ИЗобраЖениЯ Mactra sulcataria Deshayes in Reeve, 1854 в работах 19 в.: A – Reeve [1854, pl. 2, fig. 5]; B – Weinkauff [1881, Taf. 18, Fig. 3]; в списке литературы как: Küster, Weinkauff [1841–1884].
Fig. 3 in The first female specimen of the poorly known Arfak Stout-tailed Snake, Calamophis sharonbrooksae Murphy, 2012 (Serpentes: Colubroidea: Homalopsidae), from the Vogelkop Peninsula of Indonesian West New Guinea, with comments on the taxonomic history of primitive homalopsids
Fig. 3. Detailed views of the head and tail of the first known female Calamophis sharonbrooksae (NRM 17803), presented as both photographic and line-drawn illustrations for improved clarity. (A, A′) Dorsal view of the head, illustrating rostral (R), single internasal (IN), fused prefrontal-preocular (PF-PR), frontal (F), paired supraocular (SO), and parietals (P). (B, B′) Ventral view of the head, showing a single pair of chin shields (CS), seven infralabials (IL1-IL7), mental (M), and the first ventral scute (V1). (C, C′) Left lateral view of the head, additionally illustrating the undivided nasal (N), single postocular (PO), single anterior temporal (AT), two posterior temporals (PT), and six supralabials (SL1-SL6). (D, D′) Right lateral view of the head, illustrating differences in scalation compared to left side, three posterior temporals (PT), and small scale separating the postocular and anterior temporal (*). (E, E′) Ventral view of the tail, showing the final ventral (V158), divided cloacal plate (CP), first paired subcaudal (SC1), and rounded terminal scute (TS). Scale = 10 mm for Fig. 3A-D and 10 mm for Fig. 3E.
Figures 12–19 in Descriptions of three new Sonitha Zolotuhin & Prozorov, 2010 (Lepidoptera: Lasiocampidae: Lasiocampinae: Gastropachini) from West Africa in the collections of the African Natural History Research Trust, with taxonomic notes on the genus
Figures 12–19. Sonitha species (♂). 12. S. bryoniae sp. n., holotype. 13. S. bernardii Zolotuhin & Prozorov, 2010, Republic of Congo, Nouabalé-Ndoki NP [ANHRTUK 00329746]. 14. S. laszloi sp. n., holotype. 15. S. alucard Zolotuhin & Prozorov, 2010, Republic of Congo, Nouabalé-Ndoki NP [ANHRTUK 00315096]. 16. S. bryoniae sp. n., holotype, genitalia [HT 003]. 17. S. bernardii, genitalia [HT 002]. 18. S. laszloi sp. n., holotype, genitalia [HT 009]. 19. S. alucard, genitalia [HT 005].
Figures 8–11 in Descriptions of three new Sonitha Zolotuhin & Prozorov, 2010 (Lepidoptera: Lasiocampidae: Lasiocampinae: Gastropachini) from West Africa in the collections of the African Natural History Research Trust, with taxonomic notes on the genus
Figures 8–11. Sonitha species (♂). 8. S. smithi sp. n., holotype. 9. S. lila Zolotuhin & Prozorov, 2010, Zambia, Hillwood [ANHRTUK 00340024]. 10. S. smithi sp. n., holotype, genitalia [HT 004]. 11. S. lila, genitalia [HT 007].
Figures 1–7. Sonitha species. 1. S in Descriptions of three new Sonitha Zolotuhin & Prozorov, 2010 (Lepidoptera: Lasiocampidae: Lasiocampinae: Gastropachini) from West Africa in the collections of the African Natural History Research Trust, with taxonomic notes on the genus
Figures 1–7. Sonitha species. 1. S. libera (Aurivillius, 1915), ♂, Liberia, Nimba Mts. [ANHRTUK 00261556]. 2. Id., holotype ♂ of Stenophatna libera Aurivillius, 1915 [NHMUK 014200366]. 3. Id., ♀, Liberia, Nimba Mts. [ANHRTUK 00056329]. 4. S. chocolatina Zolotuhin & Prozorov, 2010, ♂, Gabon, Mts. de Cristal [ANHRTUK 00204687]. 5. Id., ♂, id. [ANHRTUK 00129611]. 6. Male genitalia of S. libera, Liberia [HT 008]. 7. Male genitalia of S. chocolatina, Gabon [HT 006].
Figures 1–2 in Taxonomic Catalog of the Brazilian Fauna: Superorder Cladocera (Crustacea: Branchiopoda), taxonomic history, diversity and distribution
Figures 1–2. Number of primary types: (1) Types deposited in collections from the different world regions; (2) Types deposited only in Brazilian collections. (BR) Brazil, (AS) Asia, (EU) Europe, (LA) Latin America except Brazil, (NA) North America, (LD) Lost or not designated, (MNRJ) Museu Nacional do Rio de Janeiro, (INPA) Instituto Nacional de Pesquisas da Amazônia, (MZUSP) Museu de Zoologia da Universidade de São Paulo, (MZUFBA) Museu de Zoologia da Universidade Federal da Bahia, (UFMG) Instituto de Biologia, Universidade Federal de Minas Gerais.
Figures 5–7 in Taxonomic Catalog of the Brazilian Fauna: Superorder Cladocera (Crustacea: Branchiopoda), taxonomic history, diversity and distribution
Figures 5–7. Number of species described or reported to Brazil: (5) Federative Units; (6) Hydrographic Regions; (7) Biomes. (AC) Acre, (AL) Alagoas, (AP) Amapá, (AM) Amazonas, (BA) Bahia, (CE) Ceará, (DF) Federal District, (ES) Espírito Santo, (GO) Goiás, (MA) Maranhão, (MT) Mato Grosso, (MS) Mato Grosso do Sul, (MG) Minas Gerais, (PA) Pará, (PB) Paraíba, (PR) Paraná, (PI) Piauí, (RJ) Rio de Janeiro, (RN) Rio Grande do Norte, (RS) Rio Grande do Sul, (RO) Rondônia, (RR) Roraima, (SC) Santa Catarina, (SP) São Paulo, (SE) Sergipe, (TO) Tocantins.
Figures 3–4 in Taxonomic Catalog of the Brazilian Fauna: Superorder Cladocera (Crustacea: Branchiopoda), taxonomic history, diversity and distribution
Figures 3–4. Species described or reported in Brazil: (3) Species by year of description; (4) Cumulative number of species.
FIGURE 1 in Taxonomic and functional turnover of Amazonian stream fish assemblages is determined by deforestation history and environmental variables at multiple scales
FIGURE 1 | Sampled sites and forest fragments in the Machado River basin, Brazil. The inset map of Brazil depicts the relative location of the study area (black) within the Madeira River basin (dark gray), inside the Amazon biome (light gray).
FIGURE 4 in Taxonomic and functional turnover of Amazonian stream fish assemblages is determined by deforestation history and environmental variables at multiple scales
FIGURE 4 | Explained variation of environmental contribution in turnover metrics partitioned by MRM and associated commonality analysis into pure local, shared and pure catchment components. RC = Raup-Crick; MPD = mean pairwise distance; MNTD = mean nearest taxon distance; all = all sampled streams; ref = streams with forested watersheds; new = streams with recently deforested watersheds; old = streams with historically deforested watersheds.
FIGURE 2 in Taxonomic and functional turnover of Amazonian stream fish assemblages is determined by deforestation history and environmental variables at multiple scales
FIGURE 2 | Distribution of sampling sites with (A) forest patches ranked according to the forest quality multimetric index and (B) effective forest cover. Non-forested area is white and is not included in the multimetric index calculation (or legend).
FIGURE 3 in Taxonomic and functional turnover of Amazonian stream fish assemblages is determined by deforestation history and environmental variables at multiple scales
FIGURE 3 | Standardized effect sizes for each taxonomic and functional turnover metric (mean and 95% confidence intervals). RC = Raup-Crick; MPD = mean pairwise distance; MNTD = mean nearest taxon distance; ref = streams with forested watersheds; new = streams with recently deforested watersheds; old = streams with historically deforested watersheds.
Figure 7 in The taxonomic history of Black-shouldered Peafowl; with Darwin's help downgraded from species to variation
Figure 7. Pl. 7 in Mutationsstudien XXIV (Stresemann 1926, in Journal für Ornithologie), showing differences in plumage colour between Black-shouldered Peafowl (mutation) and Indian Peafowl Pavo cristatus (Hein van Grouw)
Figure 3 in The taxonomic history of Black-shouldered Peafowl; with Darwin's help downgraded from species to variation
Figure 3. Black-shouldered Peafowl specimen from Temminck's collection, which was used as a model by Jean-Gabriel Prêtre (1768–1849) for his illustration (see Fig. 4), and is held at the Naturalis Biodiversity Center, RMNH.AVES.225015 (© Naturalis Biodiversity Center, Leiden)
Figure 1 in The taxonomic history of Black-shouldered Peafowl; with Darwin's help downgraded from species to variation
Figure 1. Normal-coloured Indian Peafowl Pavo cristatus, male (A) and female (B), Whipsnade Zoo, England, 18 June 2010 (Hein van Grouw)
Figure 6 in The taxonomic history of Black-shouldered Peafowl; with Darwin's help downgraded from species to variation
Figure 6. 'Black-winged Peafowl', pl. 89 in A monograph of the pheasants (Beebe 1922); the first depiction of the chicks of this mutation. Juvenile plumage in both sexes is like that of the adult female and therefore nearly white (Hein van Grouw, © Natural History Museum, London)
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