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FIGURE 2. Serranochromis alvum, Holotype SAIAB 186842, 151.8 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 2. Serranochromis alvum, Holotype SAIAB 186842, 151.8 mm SL, collected from Cuito Canavale bridge, Angola; 15º10'16.4"S 19º11'39.3"E, 18 May 2012.
FIGURE 5. Serranochromis cuanza, SAIAB 84888, 181.0 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 5. Serranochromis cuanza, SAIAB 84888, 181.0 mm SL; collected from Posto 5 09º48'23"S 15º24'30"E collected by Ernst Swartz, 31 October 2007.
FIGURE 9 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 9. First principal components (meristic data) plotted against the sheared second principal components (morphometric data) of Serranocromis alvum (+), Serranochromis swartzi (x), and Serranochromis cuanza (*).
FIGURE 1 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 1. Locations of the type locality for Serranochromis alvum (open circle), Serranochromis cacuchi (solid square), Serranochromis swartzi (solid circle), Serranochromis cuanza (solid triangle).
FIGURE 6. Serranochromis cacuchi, SAIAB 186684, 181.9 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 6. Serranochromis cacuchi, SAIAB 186684, 181.9 mm SL; collected from Bridge of 1000 mines north of Mambue 13º35'39.6"S 16º52'49.8"E. Collected by R. Bills, P. Skelton, F. de Almeida, 11 May 2012.
FIGURE 3 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 3. The main Cuito channel at the Cuito-Cuanavale main road bridge, where Serranochromis alvum was collected.
FIGURE 4. Serranochromis swartzi, SAIAB 85174, 135.8 in Four new species of Serranochromis (Teleostei: Cichlidae) from the Cuanza and Okavango river systems in Angola, including a preliminary key for the genus
FIGURE 4. Serranochromis swartzi, SAIAB 85174, 135.8 mm SL; collected from bridge between Cimanga and Capunda, Cuanza River, Angola; 10º38'26" S 17º25'6"E; collected by Ernst Swartz, 23 August 2008.
FIGURES 13–16. Oryttus infernalis from Turkey. 13. Female dorsal view. 14. Female face. 15. Male dorsal view. 16 in A new species of Oryttus Spinola, 1836 from the United Arab Emirates and Tunisia with identification key to Palaearctic species (Hymenoptera, Crabronidae)
FIGURES 13–16. Oryttus infernalis from Turkey. 13. Female dorsal view. 14. Female face. 15. Male dorsal view. 16. Male face.
FIGURES 1–4 in A new species of Oryttus Spinola, 1836 from the United Arab Emirates and Tunisia with identification key to Palaearctic species (Hymenoptera, Crabronidae)
FIGURES 1–4. Oryttus konradschmidti sp. nov., male holotype (1–3). 1. Dorsal view. 2. Face. 3. Antenna right side. 4. female paratype, wings.
FIGURES 5–8 in A new species of Oryttus Spinola, 1836 from the United Arab Emirates and Tunisia with identification key to Palaearctic species (Hymenoptera, Crabronidae)
FIGURES 5–8. Oryttus konradschmidti sp. nov., female paratype. 5. Dorsal view. 6. Scutellum, metanotum and propodeum. 7. Face. 8. Last abdominal segments.
FIGURES 9–12. 9–10. Oryttus concinnus, female from Italy. 9. Dorsal view. 10. Face. 11–12. Oryttus kazabi, male from Kasachstan. 11. Dorsal view. 12 in A new species of Oryttus Spinola, 1836 from the United Arab Emirates and Tunisia with identification key to Palaearctic species (Hymenoptera, Crabronidae)
FIGURES 9–12. 9–10. Oryttus concinnus, female from Italy. 9. Dorsal view. 10. Face. 11–12. Oryttus kazabi, male from Kasachstan. 11. Dorsal view. 12. Face.
Data from: Changes in levels of enzymes and osmotic adjustment compounds in key species and their relevance to vegetation succession in abandoned croplands of a semiarid sandy region
<p>Reclamation of cropland from grassland is regarded as a main reason for grassland degradation; understanding succession from abandoned cropland to grassland is thus crucial for vegetation restoration in arid and semiarid areas. Soil becomes dry when cropland is reverted to grassland, and enzyme and osmotic adjustment compounds may help plants to adapt to a drying environment. Croplands that were abandoned in various years on the Ordos Plateau in China, were selected for the analysis of the dynamics of enzymes and osmotic adjustment compounds in plant species during vegetation succession. With increasing number of years since abandonment, levels of superoxide dismutase<span> increased</span><span> in </span><i><span><span>Stipa</span></span></i><i><span><span> bungeana</span></span></i><span>, first decreased </span><span>and then increased in </span><i><span><span>Lespedeza</span></span></i><i><span><span> davurica</span></span></i><span> and </span><i><span><span>Artemisia f</span></span></i><i><span><span>rigida</span></span></i><span>, and fluctuated in </span><i><span><span>Heteropappus altaicus</span></span></i><span>. Levels</span> of<span> peroxidase and catalase in the four species fluctuated</span><span>;</span> levels of<span> proline, soluble sugar and soluble protein either</span><i> </i><span>decreas</span><span>ed</span><span> or</span><span> first </span><span>increase</span><span>d</span><span> and</span><span> then</span><span> generally decreased.</span> According to <span>a </span><span>drought resistance</span><span> index</span>, the <span>drought resistance of the </span><span>four </span><span>species</span><span> was </span><span>ranked in descending order as follows</span>: <i><span>S. bungeana </span></i><span>> </span><i><span>A. frigida </span></i><span>> </span><i><span>H. altaicus</span></i> <span>> </span><i><span>L. davurica</span></i>. The drought resistance ability of the different species was<span> closely linked with vegetation succession from communities dominated by annual and biennial species (with main accompanying species of </span><i><span><span>L.</span></span></i><i><span><span> davurica</span></span></i> <span>and</span><i><span><span> H. altaicus</span></span></i><span>) to communities dominated by perennial species (</span><i><span><span>S.</span></span></i><i><span><span> bungeana</span></span></i><span> and </span><i><span><span>A. f</span></span></i><i><span><span>rigida</span></span></i><span>) when soil became dry owing to increasing evapotranspiration after cropland abandonment. </span>The restoration of <i><span>S. bungeana </span></i>steppe after cropland abandonment on the Ordos Plateau<span> is recommended both as high-quality forage and for environmental sustainability</span>.</p>
FIGURE 2 in Description and bioecology of two new species of the genus Cryncus (Orthoptera Gryllidae, Gryllinae) from Cameroon with a key and distribution map of all African species
FIGURE 2. Morphology of Cryncus camerounensis sp. nov.: (A) male head and pronotum, (B) male lateral view of head and pronotum, (C) male forewing, (D) female head and pronotum, (E) female lateral view of head and pronotum, (F) female fore wing, (G) male forewing drawing, (H) male genitalia drawing in dorsal view, (I) male genitalia drawing in ventral view. Scale bars: A: 7 mm; B, C, E: 5 mm;D, 8 mm;F, 11 mm;G, 5 mm; H, I, 500 µm.
FIGURE 3 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 3. Outline of Meisterfeldia bitsevi: ventral (left) and lateral (right) views. 1–5—characters of the shell measurements. Scale bar: 15 μm.
FIGURE 2 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 2. Scanning electron microscopic image of Meisterfeldia bitsevi: a—ventral view, b—lateral view, c—dorsal view. Scale bar 10 µm. Magnification x 2,500.
FIGURE 1 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 1. Light micrographs of Meisterfeldia bitsevi: a—ventral view, b—dorsal view, c, d—lateral views. Scale bar—15 µm. Magnification x 400.
FIGURE 5 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 5. Outlines of the species from the genus Meisterfeldia: a, b—M. bitsevi, c, d—M. chibisovi, e, f—M. wegeneri, g, h—M. vanhoornei, i, j—M. polygonia, k—M. turfacea; a, d, f, h, j—ventral views; b, c, e, g, i, k—lateral views; c–f, i, j—from Bobrov, 2016; g, h—from Beyens et al., 1986; k—from Zacharias, 1903. Scale bar 15 µm.
FIGURE 3 in Description and bioecology of two new species of the genus Cryncus (Orthoptera Gryllidae, Gryllinae) from Cameroon with a key and distribution map of all African species
FIGURE 3. Morphology of Cryncus desutterae sp. nov.: (A) male head and pronotum, (B) male lateral view of head and pronotum, (C) male fore wing, (D) female head and pronotum, (E) female lateral view of head and pronotum, (F) female forewing, (G) male forewing drawing, (H) male genitalia drawing in dorsal view, (I) male genitalia drawing in ventral view. Scale bars: A, 9 mm; B, 8 mm; C, 5 mm; D, F: 7 mm; E, 6 mm; H, I, 500 µm.
FIGURE 2 in A new species of Icerya Signoret (Hemiptera: Coccomorpha: Monophlebidae) and a key to species of the genus found in India
FIGURE 2. Taxonomic illustration of an adult female of Icerya viraktamathi Joshi. A. Body derm; B. Antenna; C. Eye; D. Mesothoracic spiracle; E. Metathoracic spiracle; F. Abdominal spiracle; G. Multilocular pores in ovisac band; H. Multilocular pores around vulvar region; I. Cicatrix showing nodular surface; J. Multilocular pores around anal region; K. Hair-like setae; L. Flagellate setae; M. Multilocular pores on dorsal margin; N. Multilocular pore in dorsal thoracic region; O. Multilocular pores on dorsal medial region; P. Multilocular pores in dorsal submedial region; Q. Multilocular pores on ventral margin; R. Multilocular pores below mouthparts; S. Multilocular pores on ventral submarginal band; T. Multilocular pores in ventral medial region; U. Multilocular pores in ventral submedial region; V. Multilocular pore type found around spiracles.
FIGURE 1. A in A new species of Icerya Signoret (Hemiptera: Coccomorpha: Monophlebidae) and a key to species of the genus found in India
FIGURE 1. A. Site of observation at Bhoirymbong, Meghalaya, India; B. Three-year-old infested tree of Magnolia champaca without any visible damage symptoms; C. Crawlers, each with a long glassy anal wax rod; D. Scale insect infestation on lower leaf surface with elliptical adult females; E. Ant, Camponotus compressus (Fabricius) (Hymenoptera: Formicidae), attending the scale insects. Commonly occurring species of Icerya from India: F. Icerya purchasi Maskell infesting a branch of Cajanus cajan (L.) Millsp.; G. I. seychellarum (Westwood) on leaf of Annona reticulata L.; H. I. aegyptiaca (Douglas) infesting Artocarpus heterophyllus Lam.; I. I. pilosa Green on leaf of Saccharum officinarum L.; J. I. formicariae Newstead infesting Alstonia scholaris (L.); K. I. jaihind Rao infesting leaf underside of Tectona grandis L. f.
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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.