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Figure 1. a−g. a, b, Acryptolaria angulata. a, distal monosiphonic stem. b, hydrotheca. c–e, Cryptolarella abyssicola. c, monosiphonic branch with subalternate hydrothecae. d in Bathyal and abyssal hydroids (Hydrozoa, Leptothecata) from southeastern Australia
Figure 1. a−g. a, b, Acryptolaria angulata. a, distal monosiphonic stem. b, hydrotheca. c–e, Cryptolarella abyssicola. c, monosiphonic branch with subalternate hydrothecae. d, gonotheca with wrinkled abcauline wall and upturned margin. e, gonotheca with oblique margin. f, Hebella macroplana sp. nov., stolonal hydrotheca. g, Hebella sp., stolonal colony and pedicellate hydrotheca.
- Enchodelus (Enchodelus) microdoroides (A) Entire female. (B) Entire male, Clã! Ã Fig.2 I IÉ' B' In' (C) Head end. (D) Head end (dorsoventral), (E) Head end showing amphid. (F) Expanded part of oesophagus, (G) Posterior female sexual branch, (H & I) Female tail ends, (J) Male tail end, (K) Spicule. in A REVIEW OF THE GENUS ENCHODELUS THORNE, 1939 WITH DESCRIPTIONS -OF SPECIES FROM INDIA
- Enchodelus (Enchodelus) microdoroides (A) Entire female. (B) Entire male, Clã! Ã Fig.2 I IÉ' B' In' (C) Head end. (D) Head end (dorsoventral), (E) Head end showing amphid. (F) Expanded part of oesophagus, (G) Posterior female sexual branch, (H & I) Female tail ends, (J) Male tail end, (K) Spicule.
Ú-ÑI Ê Fig. 5 - Enchodelus (Paraenchodelus) constrictus (A) Entire female, (B) Entire male, (C) Head end, (D) Head end showing amphid. (E) Expanded part of oesophagus. (F) Posterior female sexual branch. (G & H) Female tail ends. (î) \Ãolnftail Dflfı Ü) Spicule. in A REVIEW OF THE GENUS ENCHODELUS THORNE, 1939 WITH DESCRIPTIONS -OF SPECIES FROM INDIA
Ú-ÑI Ê Fig. 5 - Enchodelus (Paraenchodelus) constrictus (A) Entire female, (B) Entire male, (C) Head end, (D) Head end showing amphid. (E) Expanded part of oesophagus. (F) Posterior female sexual branch. (G & H) Female tail ends. (î) \Ãolnftail Dflfı Ü) Spicule.
Fig. 93. Begonia speculum Moonlight & Tebbitt. A. Habit. B. Staminate flower, front view. C. Pistillate flower, side view. D. Stamen, front view. E. Stamen, side view. F. Pistil, front view. G. Pistil, back view. H in The genus Begonia (Begoniaceae) in Peru
Fig. 93. Begonia speculum Moonlight & Tebbitt. A. Habit. B. Staminate flower, front view. C. Pistillate flower, side view. D. Stamen, front view. E. Stamen, side view. F. Pistil, front view. G. Pistil, back view. H. Infructescence. Illustration by Claire Banks from P.W. Moonlight & A. Daza 158 (E). Reproduced from Moonlight & Tebbitt (2016), with the permission of Edinburgh Journal of Botany.
Fig. 89. Begonia glabra Aubl. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Staminate flower, side view. F. Staminate flower, front view. G. Androecium, side view. H. Pistillate flower, side view. I. Pistillate flower, front view. J in The genus Begonia (Begoniaceae) in Peru
Fig. 89. Begonia glabra Aubl. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Staminate flower, side view. F. Staminate flower, front view. G. Androecium, side view. H. Pistillate flower, side view. I. Pistillate flower, front view. J. Cross section of ovary. K. Pistils, side view. All photographs taken by D.A. Purvis in the living collections of the Royal Botanic Garden Edinburgh (Accession 20101699, of unknown origin).
Fig. 77. Begonia foliosa Kunth. A. Habit. B. Stipule, adaxial view. C. Leaf, abaxial view. D. Leaf, adaxial view. E. Staminate flower, side view. F. Staminate flower, front view. G in The genus Begonia (Begoniaceae) in Peru
Fig. 77. Begonia foliosa Kunth. A. Habit. B. Stipule, adaxial view. C. Leaf, abaxial view. D. Leaf, adaxial view. E. Staminate flower, side view. F. Staminate flower, front view. G. Largest tepal of the staminate flower. H. Smallest tepal of the staminate flower. I. Androecium, front view. J. Pistillate flower, side view. K. Pistillate flower, front view. L. Cross section of ovary. M. Largest tepal of the pistillate flower. N. Smallest tepal of the pistillate flower. O. Gynoecium, front view. All photographs taken by P.W. Moonlight in the living collections of the Royal Botanic Garden Edinburgh (A–I, Accession 20180920a, grown from seeds collected as part of P.W. Moonlight 1242; J–O, Accession 19480286d, of unknown origin).
Fig. 47. Begonia hirtella Link. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Inflorescence. F. Staminate flower, side view. G. Staminate flower, front view. H in The genus Begonia (Begoniaceae) in Peru
Fig. 47. Begonia hirtella Link. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Inflorescence. F. Staminate flower, side view. G. Staminate flower, front view. H. Tepal of staminate flower. I. Androecium, side view. J. Pistillate flower, side view. K. Pistillate flower, front view. L. Cross section of ovary. M. Developing fruit, side view. N. Pistils, side view. O. Smallest tepal of pistillate flower. P. Largest tepal of pistillate flower. Q. Bracteole. All photographs taken by D.A. Purvis from a glasshouse weed in the living collections of the Royal Botanic Garden Edinburgh.
Fig. 79. Begonia elachista Moonlight & Tebbitt. A. Habit. B. Staminate flower, front view. C. Infructescence. D. Pistillate flower, side view. E. Stamens, front view. F. Stamens, side view. G. Pistil, back view. H in The genus Begonia (Begoniaceae) in Peru
Fig. 79. Begonia elachista Moonlight & Tebbitt. A. Habit. B. Staminate flower, front view. C. Infructescence. D. Pistillate flower, side view. E. Stamens, front view. F. Stamens, side view. G. Pistil, back view. H. Pistil, front view. Illustration by Claire Banks from P.W. Moonlight & A. Daza 318 (E). Reproduced from Moonlight et al. (2017a), with the permission of European Journal of Botany.
Fig. 4. A, C, E, G in A new species of Liolaemus (Iguania: Liolaemidae) from the hot deserts of northern Patagonia, Argentina
Fig. 4. A, C, E, G. Coloring patterns. Adult males of Liolaemus kulinko sp. nov. in dorsal view. B, D, F, H. Adult males of L. mapuche Abdala, 2002 in dorsal view. Photographs by I. Procheret (A, C) and C.S. Abdala (B, D–H).
F I G U R E 2 in Small and in-country herbaria are vital for accurate plant threat assessments: A case study from Peru
F I G U R E 2 The effect of including data from Peruvian herbaria upon estimated International Union for Conservation of Nature (IUCN) threat assessments. The percentage of species assessed as DD (Data Deficient, grey), LC (Least Concern, green), VU (Vulnerable, yellow), EN (Endangered, orange), and CR (Critically Endangered, red) based upon data from: Top, international herbaria, and bottom, Peruvian and international herbaria.
F I G U R E 3 in Small and in-country herbaria are vital for accurate plant threat assessments: A case study from Peru
F I G U R E 3 The effect of including data from different small and large herbaria upon estimated International Union for Conservation of Nature (IUCN) threat assessments. The percentage of species assessed as DD (Data Deficient, grey), LC (Least Concern, green), VU (Vulnerable, yellow), EN (Endangered, orange), and CR (Critically Endangered, red) based upon data from: top, large herbaria only (>1,000,000 sheets); middle, large and medium herbaria (>500,000 sheets); and bottom, large, medium, and small herbaria (all herbaria).
F I G U R E 1 in Small and in-country herbaria are vital for accurate plant threat assessments: A case study from Peru
F I G U R E 1 The proportion of specimens of Peruvian Begonia and Solanum held in Peruvian institutions (blue) versus international institutions (orange) in (a) the Global Biodiversity Information Facility (GBIF); (b) the Begonia Resource Centre and Solanaceae Source (see text for doi references for all datasets).
F I G U R E 4 in Small and in-country herbaria are vital for accurate plant threat assessments: A case study from Peru
F I G U R E 4 The effect of including data from herbaria in size order upon estimated International Union for Conservation of Nature (IUCN) threat assessments. (a) Percentage of species assessed as DD (Data Deficient, grey), LC (Least Concern, green), VU (Vulnerable, yellow), EN (Endangered, orange), and CR (Critically Endangered, red); (b) the size (number of accessions) of herbaria added (orange) and number of specimen records included (blue); (c) the mean range of species considered threatened when all data are considered. Dashed, vertical lines indicate the limits of large (>1,000,000 sheets) and medium (>500,000 sheets) herbaria. Grey shading indicates Peruvian herbaria. Selected herbaria are indicated in C. Herbarium abbreviations in panels B and C follow Thiers (2001).
Fig. 6. A, C, E, G in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 6. A, C, E, G. Andrena (Melandrena) kedarnatha Wood & Gautam sp. nov., paratype, ♀ (NHMUK). A. Vertex, dorsal view. C. Scutum, dorsal view. E. T1–2, dorsal view. G. T2, lateral view detail. – B, D, F, H. Andrena (Melandrena) cussariensis Morawitz, 1886, ♀ (TJWC). B. Vertex, dorsal view. D. Scutum, dorsal view. F. T1–2, dorsal view. H. T2, lateral view detail.
Fig. 4. A, C, G, E in A critical revision of the Andrena Fabricius, 1775 of India, with the description of two new species (Hymenoptera: Andrenidae) from Uttarakhand
Fig. 4. A, C, G, E. Andrena (Euandrena) murreensis Cockerell, 1923, ♀ (TJWC). A. Habitus, lateral view. C. Face, frontal view. E. Scutum, dorsal view. G. Terga, dorsal view. – B, D, F, H. Andrena (Euandrena) aff. murreensis, ♀ (TJWC). B. Habitus, lateral view. D. Face, frontal view. F. Scutum, dorsal view. H. Terga, dorsal view.
Altering translation allows E. coli to overcome G-quadruplex stabilizers
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Figure 7. - Palaemonyuna sp. n. Figure a holotype; figures b–n paratype (CCDB 4866, male, CL 5.5 mm). a anterior part of the carapace b right eye, dorsal view c left scaphocerite, ventral view d left mandible, ventral view e left maxillula, ventral view f left maxilla, ventral view g left second maxilliped, ventral view h left first maxilliped, ventral view i left first maxilliped, dorsal view j right third maxilliped, ventro-lateral view k right second pereiopod, ventro-lateral view l right first pereiopod, ventro-lateral view m right first chela, mesial view n right second chela, mesial view. Scale bar: a, c, k equal to 1 mm; others equal to 0.5 mm.
Figure 7. - Palaemonyuna sp. n. Figure a holotype; figures b–n paratype (CCDB 4866, male, CL 5.5 mm). a anterior part of the carapace b right eye, dorsal view c left scaphocerite, ventral view d left mandible, ventral view e left maxillula, ventral view f left maxilla, ventral view g left second maxilliped, ventral view h left first maxilliped, ventral view i left first maxilliped, dorsal view j right third maxilliped, ventro-lateral view k right second pereiopod, ventro-lateral view l right first pereiopod, ventro-lateral view m right first chela, mesial view n right second chela, mesial view. Scale bar: a, c, k equal to 1 mm; others equal to 0.5 mm.
Figure 8. - Palaemonyuna sp. n. Figures i and m holotype; figures a–e, g, h, j–l paratype (CCDB 4866, male, CL 5.5 mm); figure f paratype (CCDB 4866, female, CL 5.5 mm). a left third pereiopod, lateral view b left fourth pereiopod, lateral view c distal portion of the left fifth pereiopod, lateral view d left fifth pereiopod, lateral view e left first pleopod, posterior view f left first pleopod, posterior view g left second pleopod, posterior view h left appendix masculina and appendix interna, posterior view i right posterior part of the abdomen, lateral view j pre-anal fig, ventral view k telson and uropods, dorsal view l distal part of the telson, dorsal view m left distal portion of the exopod of the uropod, dorsal view. Scale bar: a, b, d–g, i, k equal to 1 mm; c, j, m equal to 0.5 mm; h, l equal to 0.25 mm.
Figure 8. - Palaemonyuna sp. n. Figures i and m holotype; figures a–e, g, h, j–l paratype (CCDB 4866, male, CL 5.5 mm); figure f paratype (CCDB 4866, female, CL 5.5 mm). a left third pereiopod, lateral view b left fourth pereiopod, lateral view c distal portion of the left fifth pereiopod, lateral view d left fifth pereiopod, lateral view e left first pleopod, posterior view f left first pleopod, posterior view g left second pleopod, posterior view h left appendix masculina and appendix interna, posterior view i right posterior part of the abdomen, lateral view j pre-anal fig, ventral view k telson and uropods, dorsal view l distal part of the telson, dorsal view m left distal portion of the exopod of the uropod, dorsal view. Scale bar: a, b, d–g, i, k equal to 1 mm; c, j, m equal to 0.5 mm; h, l equal to 0.25 mm.
Figure 7. - Umbone (in the circle) of shoulder of Dicronocephalus. A Dicronocephalusadamsiadamsi B Dicronocephalusadamsidrumonti C Dicranocephalusyuiyui D Dicronocephalusdabryi E Dicronocephalusuenoikatoi F Dicronocephaluswallichiibowringi G Dicronocephaluswallichiiwallichii H Dicronocephaluswallichiibourgoini.
Figure 7. - Umbone (in the circle) of shoulder of Dicronocephalus. A Dicronocephalusadamsiadamsi B Dicronocephalusadamsidrumonti C Dicranocephalusyuiyui D Dicronocephalusdabryi E Dicronocephalusuenoikatoi F Dicronocephaluswallichiibowringi G Dicronocephaluswallichiiwallichii H Dicronocephaluswallichiibourgoini.
Figure 6. - Apicosutural angle of Dicronocephalus. A Dicronocephalusadamsiadamsi B Dicronocephalusadamsidrumonti C Dicranocephalusyuiyui D Dicronocephalusdabryi E Dicronocephalusuenoikatoi F Dicronocephaluswallichiibowringi G Dicronocephaluswallichiiwallichii H Dicronocephaluswallichiibourgoini.
Figure 6. - Apicosutural angle of Dicronocephalus. A Dicronocephalusadamsiadamsi B Dicronocephalusadamsidrumonti C Dicranocephalusyuiyui D Dicronocephalusdabryi E Dicronocephalusuenoikatoi F Dicronocephaluswallichiibowringi G Dicronocephaluswallichiiwallichii H Dicronocephaluswallichiibourgoini.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.