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Figure 157 from: Wood JR.I, Muñoz-Rodríguez P, Williams BR.M, Scotland RW (2020) A foundation monograph of Ipomoea (Convolvulaceae) in the New World. PhytoKeys 143: 1-823. https://doi.org/10.3897/phytokeys.143.32821
Figure 157 Ipomoea costellataA habit B outer sepal C inner sepal D corolla opened out to show stamens E ovary and style F fruiting inflorescence G capsule H seeds. Drawn by Rosemary Wise A from Wooton 625; B–E from Kearney & Peebles 10143; F–H from Palmer 649.
Figures 1-8 from: Erwin TL, Kavanaugh DH, Maddison DR (2020) After 157 years, a second specimen and species of the phylogenetically enigmatic and previously monobasic genus Nototylus Gemminger & Harold, 1868 (Coleoptera, Carabidae, Nototylini). ZooKeys 927: 65-74. https://doi.org/10.3897/zookeys.927.49584
Figures 1-8 Nototylus1Nototylus fryi (Schaum), habitus, dorsal aspect, apparent body length (ABL) = 8.2 mm 2–6Nototylus balli sp. nov.: 2 habitus, dorsal aspect, ABL = 9.1 mm 3 habitus, left lateral aspect 4 head, dorsal aspect 5 head, left lateral aspect; arrow indicates location of sulcus beneath eye 6 left foreleg, lateral aspect; femur with antennal cleaner present subapicoventrally 7 left mesotibia, ventral aspect 8 closeup of a middle leg spatulate seta. Scale bars: 0.5 mm (1–8).
Figure 9 from: Erwin TL, Kavanaugh DH, Maddison DR (2020) After 157 years, a second specimen and species of the phylogenetically enigmatic and previously monobasic genus Nototylus Gemminger & Harold, 1868 (Coleoptera, Carabidae, Nototylini). ZooKeys 927: 65-74. https://doi.org/10.3897/zookeys.927.49584
Figure 9 Map illustrating known distributions of species of Nototylus. Key: ■ = precise locality for N. balli sp. nov. (see text); ● = generalized locality for N. fryi (Schaum) in Brazil.
IO Islamic 157. Ta'rîkh-i-Jahânkushâi, The History of Nâdirshâh
<p>IO Islamic 157. Ta’rîkh-i-Jahânkushâi, The History of Nâdirshâh</p>
Figs 157–165. Depressaria libanotidella group. 157–162 in Depressariidae (Lepidoptera) of the Russian Altai Mountains: new species, new records and updated checklist
Figs 157–165. Depressaria libanotidella group. 157–162 – Depressaria libanotidella Schläger, 1848: 157–158 – habitus, Russia, Altai Mts. (details in the text): 157 – Chulyshman; 158 – Dzhangyskol; 159–162 – female genitalia: 159 – data as fig. 157; 160 – data as fig. 158; 161 – Switzerland, Jura, Soulce, 1.ix.2008, e.l. Seseli libanotis, P. Sonderegger leg. (NMBE); 162 – Italy, Ortler, Passo di Stelvio, 18.–19.vi.2004, J. Skyva leg. (NMPC). 163–164 – D. bantiella (Rocci, 1934): 163 – Montenegro, Humsko Blato, 15.vii.–5.viii.2014, e.l. Apiaceae sp., F. Graf leg. (RCFG); 164 – Greece, Troodos Mts., Olympus, 23.–28.vi.1997, D. Nilsson, A. Madsen, M. Fibiger & P. Svendsen leg. (ZMUC). 165 – D. velox Staudinger, 1859, Bulgaria, Slavyanka Mts. Livade, 15.vi.2010, B. Zlatkov & O. Sivilov leg. (RCBZ).
Supplementary material 1 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
List of distributional data of Osmia uncinata
Figure 15 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figure 15 Nest parameters of Osmia uncinata. a) Trunk diameter at breast height of Pinus sylvestris trees selected as nesting site. b) Height of nest entrance above the ground. c) Exposure of nest. d) Length of nesting burrow. e) Number of brood cells. Grey = abandoned nests; blue = nests occupied upon discovery.
Figure 37 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figure 37 Swiss records of Osmia uncinata (n = 198) mapped onto the distribution of Pinus sylvestris in Switzerland. Grey = sample plots of the Swiss National Forest Inventory (NFI) without occurrence of P. sylvestris; red = sample plots of the NFI with occurrence of P. sylvestris; green = records of O. uncinata with pine presence; blue = records of O. uncinata without pine presence; black = records of O. uncinata not assignable to a square kilometre. Data made available by the Centre Suisse de Cartographie de la Faune (CSCF) for O. uncinata and the Swiss Federal Institute for Forest, Snow and Landscape Research (WSL) for P. sylvestris (WSL 2019).
Figures 16-25 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figures 16-25 Nest architecture of Osmia uncinata. 16) Several years old nest after uppermost bark layer has flaked off. 17) Entrance to old nest seen from below. 18–25) Dissected nests consisting of a single burrow (18–22) or of one to three side burrows branching off the main burrow (23–25).
Figures 5-14 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figures 5-14 Nesting site of Osmia uncinata. 5–10) Position of nests in the bark of Pinus sylvestris trunks. 11–14) Nest entrances below prominences of longitudinal bark ribs.
Figures 1-4 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figures 1-4 Osmia uncinata. 1) Female on Lotus corniculatus (Fabaceae). 2) Female on Rubus spec. (Rosaceae; photo A. Jacobs). 3) Male. 4) Female at the entrance of her nest.
Figure 36 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figure 36 Distribution of Osmia uncinata. See Suppl. material 1 for a complete list of all distributional data. Made with Natural Earth (www.naturalearthdata.com).
Figure 35 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figure 35 Phenology of Osmia uncinata in Central Europe. For each period of five days, the number of female and male records per elevation is given. For a given locality and date, only one record per sex was considered.
Figures 26-30 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figures 26-30 Nests of Osmia uncinata. 26–27) Nest entrances sealed with leaf pulp. 28) Dissected nest with three brood cells each containing a cocoon. 29) Dissected unfinished nest with cocoon in uppermost cell and dead larva on food provision in two cells. 30) X-rayed nest with six cells containing four overwintering females, one overwintering male (outermost cell) and a dead larva on food provision.
Figures 31-34 from: Müller A, Prosi R, Taylor S, Richter H, Herrmann M, Weibel U (2020) Unique nesting biology of Osmia ( Melanosmia) uncinata, a Palaearctic osmiine bee specialized on thick-barked conifers (Hymenoptera, Megachilidae). Alpine Entomology 4: 157-171. https://doi.org/10.3897/alpento.4.53489
Figures 31-34 Scottish nests of Osmia uncinata. 31) Stump of a burnt Pinus sylvestris tree containing two nests. 32) Female of O. uncinata on bark with three large exit holes of Rhagium inquisitor, of which the upper two served as entrance to one nest each: nest 1 (left) is sealed, nest 2 (upper right) is being provisioned; note the bark particles that have accumulated below nest 2, indicating the former digging activity of the female. 33, 34) X-rayed bark (left) and dissected nests (right) with nest 1 excavated at the roof and nest 2 excavated at the upper lateral corner of the Rhagium boring; the large dark spots on 33) are the three Rhagium exit holes, the numerous small spots are exit holes of anobiid beetles. The red arrows indicate the entrance to the excavated nesting burrows and the red frames the enlarged section on the opposite image.
Figure 1 from: Chen W-H, Wen F, Ren M-X, Yang L, Hong X, Qiu Z-J, Shui Y-M (2020) Gesneriaceae in China and Vietnam: Perfection of taxonomy based on comprehensive morphological and molecular evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 1-5. https://doi.org/10.3897/phytokeys.157.56842
Figure 1 Flowers of some species of Gesneriaceae in China and Vietnam ABournea sinensis Oliv. (photographed by Yu-Min Shui) BOreocharis guileana (B.L. Burtt) Li H. Yang & F. Wen, comb. nov. (by Li-Hua Yang) COreocharis baolianis (Q.W. Lin) Li H. Yang & M. Kang, comb. nov. (by Li-Hua Yang) DOreocharis jasminina S.J.Ling, F.Wen & M.X. Ren, sp. nov. (by Shao-Jun Ling) EOreocharis flavovirens Xin Hong (by Xin Hong) FOreocharis wumengensis Lei Cai & Z.L.Dao, sp. nov. (by Lei Cai) GOreocharis fulva W.H.Chen & Y.M.Shui, sp. nov. (by Yu-Min Shui) HAllocheilos rubroglandulosus W.H. Chen & Y.M. Shui, sp. nov. (by Yu-Min Shui) IPetrocodon rubiginosus Y.G.Wei & R.L.Zhang, sp. nov. (by Fang Wen) JPetrocodon luteoflorus Lei Cai & F. Wen, sp. nov. (by Fang Wen) KDeinostigma fasciculatum W.H.Chen & Y.M.Shui, sp. nov. (by Yu-Min Shui) LPrimulina xuansonensis W.H.Chen & Y.M.Shui, sp. nov. (by Yu-Min Shui) MDidymocarpus lobulatus F. Wen, Xin Hong &W.Y. Xie, sp. nov. (by Jia-Jun Zhou) NParaboea myriantha Y.M. Shui & W.H. Chen, sp. nov. (by Yu-Min Shui) OParaboea sinensis var. glabrissima W.H.Chen & Y.M.Shui, var. nov. (by Yu-Min Shui) PPetrocosmea nanchuanensis Z.Y. Liu, Z.Y. Li & Z.J. Qiu, sp. nov. (by Zhi-Jing Qiu).
Supplementary material 4 from: Chen W-H, Zhang Y-M, Guo S-W, Zhang Z-R, Chen L, Shui Y-M (2020) Reassessment of Bournea Oliver (Gesneriaceae) based on molecular and palynological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 27-41. https://doi.org/10.3897/phytokeys.157.55254
Supporting materials
Supplementary material 2 from: Chen W-H, Zhang Y-M, Guo S-W, Zhang Z-R, Chen L, Shui Y-M (2020) Reassessment of Bournea Oliver (Gesneriaceae) based on molecular and palynological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 27-41. https://doi.org/10.3897/phytokeys.157.55254
Figure S1
Figure 4 from: Chen W-H, Zhang Y-M, Guo S-W, Zhang Z-R, Chen L, Shui Y-M (2020) Reassessment of Bournea Oliver (Gesneriaceae) based on molecular and palynological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 27-41. https://doi.org/10.3897/phytokeys.157.55254
Figure 4 The morphology of pollen grains of Bournea sinensis Oliv. (A–D) and B. leiophylla (W. T. Wang) W. T. Wang (E–H) by SEM. A polar view showing pollen grain with three equatorial, colporus apertures B equatorial view showing single free, prolate pollen grain C equatorial view show apertures and granular aperture membrane D detail showing verrucate tectum with granular E polar view showing pollen grain with three equatorial, colporus apertures F equatorial view showing single free, oblate pollen grain G equatorial view show apertures and granular aperture membrane H detail showing verrucate tectum with granular.
Figure 3 from: Chen W-H, Zhang Y-M, Guo S-W, Zhang Z-R, Chen L, Shui Y-M (2020) Reassessment of Bournea Oliver (Gesneriaceae) based on molecular and palynological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 27-41. https://doi.org/10.3897/phytokeys.157.55254
Figure 3 The Bayes inference (BI) and Maximum likelihood (ML) tree inferred from six cp DNA markers (atpB-rbcL, ndhH-rps15-ycf1, rpl132, trnC-trnD, trnL-F, trnT-trnL) and ITS of the expanded genus Oreocharis s.l. in Gesneriaceae. Note 1) the red clade indicates the position of Bournea in phylogenetic trees; 2) the number of the node respectively indicates posterior probability values in BI and bootstrap values in ML, ※ indicates < 50%.
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