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Figure 2 from: Gómez-Domínguez H, Ortiz-Rodríguez AE, Velasco-Espino D, Hernández-Burguete R (2021) Taxonomic updates in Amphitecna (Bignoniaceae): A new Mexican species and the re-establishment of the giant-leaved A. megalophylla. PhytoKeys 171: 75-90. https://doi.org/10.3897/phytokeys.171.55397
Figure 2 Vegetative features of Amphitecna fonceti sp. nov. A habit B phyllotaxy C adaxial side of leaf D abaxial side of leaf. Photographs by Hector Gómez Domínguez.
Figure 9 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 9 Hydrangea panamensisA plant growing along the stem of a CecropiaB infructescence with young and mature fruits, and enlarged marginal flowers. Hydrangea peruvianaC stolons with adventitious roots and decussate leaves. A, B field images of collection Samain & Martínez 2012-063C field image of collection Granados Mendoza et al. 2012-112.
Figure 5 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 5 Hydrangea goudotiiA branch with leaves seen abaxially, old inflorescence axes and the vegetative portion of the flowering branch B inflorescence bud with cucullate inflorescence bracts and densely pubescent inflorescence axis C inflorescence of functionally male plant, with enlarged marginal flowers and a few flowers that still show stamens A field image of collection Granados Mendoza et al. 2012-105B, C field images of collection Granados Mendoza et al. 2012-43.
Figure 16 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 16 Hydrangea weberbaueriA branch with inflorescences with enlarged marginal flowers B functionally male inflorescence with enlarged marginal flowers, and reduced flowers with large stamens C functionally female inflorescence with enlarged marginal flowers D close-up of functionally male flowers with large stamens and reduced pistils E close-up of functionally female flowers with reduced stamens and large pistils. A, B field images of collection Granados Mendoza et al. 2012-16C field image of collection Granados Mendoza et al. 2012-21D field image of collection Samain et al. 2011-068.
Figure 11 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 11 Hydrangea peruviana. Infructescence with young fruits and densely pubescent apex of the inflorescence axis. Field image of collection Granados Mendoza et al. 2012-112.
Figure 13 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 13 Hydrangea trianaeA branch with leaves seen abaxially and inflorescence buds B functionally female inflorescence with enlarged marginal flowers C basal portion of functionally male inflorescence with densely pubescent apex of the inflorescence axis, and a few open male flowers with large stamens D close-up of functionally female flowers with petals, reduced stamens and large pistils. A, C field images of collection Samain et al. 2011-064B, D field images of collection Samain et al. 2011-067.
Figure 12 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 12 Hydrangea schlimii. Branch with inflorescences with many enlarged flowers. Image of specimen Linden 1139 (BR).
Figure 1 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 1 Hydrangea caucana. Branch with infructescences with mature fruits and enlarged marginal flowers. Image of specimen A. Cogollo et al. 2669 (MO).
Figure 15 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 15 Hydrangea weberbaueriA apical portion of a branch with young leaves where the characteristic leaf venation and margin can be observed B adaxial leaf side showing the typical leaf venation of this species C glabrous apex of the inflorescence axis of a functionally female inflorescence. A field image of collection Granados Mendoza et al. 2012-23B field image of collection Samain et al. 2011-056C field image of collection Samain et al. 2011-068.
Figure 10 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 10 Hydrangea peruvianaA branch with inflorescence B branch with leaves seen abaxially and inflorescence C close up of infructescence with maturing fruits and enlarged marginal flowers. A, B field images of collection Granados Mendoza et al. 2012-111C field image of collection Granados Mendoza et al. 2012-112.
Figure 4 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 4 Hydrangea durifolia. Branch with inflorescence buds and inflorescences. Image of specimen E.P. Killip & A.C. Smith 18366 (US).
Figure 7 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 7 Hydrangea oerstediiA branch with leaves seen abaxially B flowering branch of functionally male plant with three inflorescences with enlarged marginal flowers and many flowers with large stamens C inflorescence of functionally male plant with enlarged marginal flowers, most flowers in bud with petals visible, and a few open flowers with long stamens D close-up of functionally male inflorescence E close-up of functionally male flowers with reduced pistils F close-up of functionally female flowers with reduced stamens and large pistils. A field image of collection Samain & Martínez 2012-044B field image of collection Samain & Martínez 2013-025C field image of collection Samain & Martínez 2012-044D field image of collection Samain et al. 2019-003E field image of collection Samain & Martínez 2013-025F field image of collection Samain & Martínez 2013-021.
Figure 3 from: Samain M-S, Granados Mendoza C, Martínez Salas EM (2021) On Hydrangea peruviana, an endangered species from Ecuador, and Hydrangea oerstedii, very common in Costa Rica and Panama, and seven threatened Central and South American Hydrangeas, which have been confounded with these. PhytoKeys 171: 91-153. https://doi.org/10.3897/phytokeys.171.56351
Figure 3 Hydrangea durifolia. Branch with distinct "vegetative" leaves, floral axes with leaves and inflorescence buds. Image of specimen E.P. Killip & A.C. Smith 18366 (GH).
FIGURE 171 in The Caucasus as a major hotspot of biodiversity: Evidence from the millipede family Anthroleucosomatidae (Diplopoda, Chordeumatida)
FIGURE 171. Distribution of the Caucasian Anthroleucosomatidae.
FIGURE 171 in New species of the damselfly genus Argia from Mexico, Central America and Ecuador with an emphasis on Costa Rica (Insecta: Odonata: Coenagrionidae)
FIGURE 171. Distribution of other species.
Figure 3 from: Zhang L, Wang B, He Q, Yao Z (2024) A new species of the Pholcus phungiformes species group (Araneae, Pholcidae) from Liaoning, China, with identification keys to four closely related species. ZooKeys 1193: 171-179. https://doi.org/10.3897/zookeys.1193.115640
Figure 3 Pholcus fengmeii sp. nov., holotype male (C–F) and paratype female (A, B, G, H) A epigyne, ventral view, arrow indicates lateral protrusion B vulva, dorsal view, arrow indicates lateral sclerite C bulbal apophyses, prolateral view, arrow indicates latero-median protrusion D chelicerae, frontal view E–H habitus (E, G dorsal view F lateral view H ventral view). Abbreviations: aa = anterior arch, b = bulb, da = distal apophysis, e = embolus, fa = frontal apophysis, pa = proximo-lateral apophysis, pp = pore plate, u = uncus. Scale bars: 0.20 mm (A–D); 1.00 mm (E–H).
Figure 2 from: Zhang L, Wang B, He Q, Yao Z (2024) A new species of the Pholcus phungiformes species group (Araneae, Pholcidae) from Liaoning, China, with identification keys to four closely related species. ZooKeys 1193: 171-179. https://doi.org/10.3897/zookeys.1193.115640
Figure 2 Pholcus fengmeii sp. nov., holotype male A, B palp (A prolateral view, arrow indicates prolatero-ventral protrusion B retrolateral view, arrow 1 indicates retrolaterally strongly bulged part, arrow 2 indicates retrolatero-proximal protrusion) C, D distal part of procursus (C prolateral view, arrow 1 indicates wide prolatero-subdistal sclerite, arrow 2 indicates curved proximal apophysis, arrow 3 indicates curved distal apophysis D dorsal view, arrow indicates dorsal spines). Abbreviations: b = bulb, e = embolus, pr = procursus, u = uncus. Scale bars: 0.20 mm (A, B); 0.10 mm (C, D).
Figure 4 from: Zhang L, Wang B, He Q, Yao Z (2024) A new species of the Pholcus phungiformes species group (Araneae, Pholcidae) from Liaoning, China, with identification keys to four closely related species. ZooKeys 1193: 171-179. https://doi.org/10.3897/zookeys.1193.115640
Figure 4 Pholcus jiguanshan (A–C), P. phoenixus (D–F), P. yaoshan (G–I) A, D, G distal parts of procursus, prolateral views, arrows 1 indicate prolatero-subdistal sclerite, arrows 2 indicate ventro-subdistal apophysis, arrow 3 indicates angular proximal apophysis B, E, H bulbal apophyses, prolateral views, arrows 1 indicate median part, arrows 2 indicate strongly/slightly curved distal part C, F, I vulvae, dorsal views. Abbreviations: aa = anterior arch, e = embolus, pp = pore plate, u = uncus. Scale bars: 0.10 mm (A, B, D, E, G, H); 0.20 mm (C, F, I).
Figure 171 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 171 Generic relationships in the Stryphnodendron clade (tribe Mimoseae). The most likely position of unsampled genus Microlobius is indicated with a dashed line [following Simon et al. (2016) and Lima et al. (2022)]. For description of phylogeny and support values, see Fig. 6 caption (page 63).
Supplementary material 1 from: Fišer C, Bračko G, Delić T, Fišer Ž, Jugovic J, Moškrič A, Prevorčnik S, Verovnik R, Zagmajster M, Zakšek V, Trontelj P (2024) Professor Boris Sket (1936–2023): the SpeleoBiologist and much more. Subterranean Biology 48: 171-201. https://doi.org/10.3897/subtbiol.48.122645
Bibliography of Boris Sket
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