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101 results for “Southern Asia”
Figure 6 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 6 Geographic distribution of southern Asian Vincetoxicum. The colour of the symbols corresponds to the colour of the corolla.
Figure 3 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 3 Illustration of corona types observed in southern Asian Vincetoxicum. The dark coloured shapes show corona lobes AVincetoxicum arnottianum from S.A. Shah & B. Ali SAS-4 (RAW) BV. cabulicum from W. Koelz 11764 (US) CV. cardiostephanum from S.A. Shah, M. Turi et al. SAS-40 (RAW) DV. glaucum from W. Dudeeon & L. A. Kenoyer 56 (MO) EV. kenouriense from S.A. Shah & L. Ahmad SAS-37 (RAW) FV. lenifolium from S.A. Shah SAS-44 (RAW) GV. luridum from S.A. Shah & I. Ahmad SAS-23 (RAW) H A variable specimen of V. lenifolium from N. Ali 1029 (RAW) IV. sakesarense from I. Ahmad 27821 (RAW) JV. stewartianum from R.R. Stewart 16709 (RAW) KV. stocksii from J.F. Duthie 18918 (RAW) LV. subcanescens from S.A. Shah & A. Ullah SAS-8 (RAW). Drawing by M. Saleem and S.A. Shah.
Figure 2 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 2 Outlines of leaves of southern Asian Vincetoxicum. All illustrated specimens are housed at RAW. The first image in each pair corresponds to the adaxial surface and the second to the abaxial surface. All leaves have been taken from the middle of the stem A, BVincetoxicum sp. aff. arnottianum from S.A. Shah SAS-9C, DVincetoxicum sp. aff. arnottianum from S.A. Shah SAS-46E, FVincetoxicum sp. aff. arnottianum from R. Khan SAS-41G, HV. arnottianum from S.A. Shah & F. Rahman SAS-3I, JV. arnottianum from S.A. Shah & B. Ali SAS-4K, LV. cabulicum from D. Podlech 15814M, NV. cardiostephanum from S.A. Shah, M. Turi et al. SAS-40O, PV. kenouriense from S.A. Shah & L. Ahmad SAS-37Q, RV. lenifolium from S.A. Shah SAS-44S, TV. luridum from S.A. Shah & I. Ahmad SAS-23U, VV. lenifolium from N. Ali 1029W, XV. sakesarense from I. Ahmad 27821Y, ZV. stewartianum from R.R. Stewart 16709AA, ABV. stocksii from B. Gul, N. Khan et al. SAS-21AC, ADV. subcanescens from A. Sultan, Z. Saqib et al. SAS-52AE, AFV. subcanescens from S.A. Shah & A. Ullah SAS-8. Drawing by M. Saleem and S.A. Shah.
Figure 17 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 17 Vincetoxicum subcanescens illustrated by S.A. Shah & S.U. Nisa from S.A. Shah & A. Ullah SAS-8 (RAW!) A plant with flowers and fruits B flowering node and leaf C flower D corona (black).
Figure 16 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 16 Field photographs of Vincetoxicum subcanescensA habit B, C leaves and inflorescences D flowers. Photos by S.A. Shah.
Figure 15 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 15 Field and garden photographs of Vincetoxicum stocksiiA habit B flowers. Note: A potted plant was photographed at the Botanical Conservatory, NARC; Islamabad. The insect is a honey bee. We did not observe successful pollination in the botanical conservatory in three years. Photos by S.A. Shah.
Figure 13 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 13 Vincetoxicum lenifolium illustrated by S.A. Shah & S.U. Nisa from N. Ali 1035 (RAW) A plant with fruits and flowers B flower, top view.
Figure 11 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 11 Vincetoxicum kenouriense illustrated by S.A. Shah and S.U. Nisa from S.A. Shah & L. Ahmad SAS-37 (RAW!) A flowering plant B corolla lobes C corona (black) D follicle.
Figure 14 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 14 Vincetoxicum stewartianum illustrated by M. Saleem from R.R. Stewart 16709 (RAW) A plant B adaxial surface of leaf C abaxial surface of leaf D corona.
Figure 10 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 10 Field photographs of Vincetoxicum kenourienseA habit B, C flowers D follicles. Photos by Zahid Ullah and S.A. Shah.
Figure 1 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 1 Habitats of Vincetoxicum species A–DV. arnottianumE–GV. cardiostephanumH–JV. kenourienseKV. lenifoliumLV. luridumM, NV. stocksiiO, PV. subcanescens.
Figure 9 from: Golovatch SI (2015) Cave Diplopoda of southern China with reference to millipede diversity in Southeast Asia. In: Tuf IH, Tajovský K (Eds) Proceedings of the 16th International Congress of Myriapodology, Olomouc, Czech Republic. ZooKeys 510: 79-94. https://doi.org/10.3897/zookeys.510.8640
Figure 9 - Distribution of Pacidesmus species. After Golovatch and Geoffroy (2014). Map courtesy L. Deharveng & A. Bedos.
Figures 2-4 from: Golovatch SI (2015) Cave Diplopoda of southern China with reference to millipede diversity in Southeast Asia. In: Tuf IH, Tajovský K (Eds) Proceedings of the 16th International Congress of Myriapodology, Olomouc, Czech Republic. ZooKeys 510: 79-94. https://doi.org/10.3897/zookeys.510.8640
Figures 2-4 - Habitus of Nepalella grandoides Golovatch, Geoffroy & Mauriès, 2006, a completely unpigmented, blind, long-legged and long-antenned troglobiont from Sichuan, length nearly 38 mm. After Golovatch et al. (2006b). Photos courtesy L. Albenga.
Figure 1 from: Golovatch SI (2015) Cave Diplopoda of southern China with reference to millipede diversity in Southeast Asia. In: Tuf IH, Tajovský K (Eds) Proceedings of the 16th International Congress of Myriapodology, Olomouc, Czech Republic. ZooKeys 510: 79-94. https://doi.org/10.3897/zookeys.510.8640
Figure 1 - Main trends in the ecological evolution of Diplopoda. All are life forms except for arboricoles. 1 stratobionts 2 trunk and crown arboricoles, as well as subcorticolous xylobionts 3 epiphytobionts 4 troglobionts 5 geobionts. NB: The thickness of numbered arrows roughly corresponds to the share of the respective ecological grouping along a gradient of biome succession with age (uppermost arrows, the gap between them indicates the primary subtropical biome whence developed all the main extant biomes). After Kime and Golovatch (2000). Drawing courtesy S. Dashdamirov.
Figures 5-8 from: Golovatch SI (2015) Cave Diplopoda of southern China with reference to millipede diversity in Southeast Asia. In: Tuf IH, Tajovský K (Eds) Proceedings of the 16th International Congress of Myriapodology, Olomouc, Czech Republic. ZooKeys 510: 79-94. https://doi.org/10.3897/zookeys.510.8640
Figures 5-8 - Habitus photos of Pacidesmus armatus Golovatch, Geoffroy & Mauriès, 2010, Desmoxytes scolopendroides Golovatch, Geoffroy & Mauriès, 2010, Eutrichodesmus filisetiger Golovatch, Geoffroy, Mauriès & VandenSpiegel, 2009, and Eutrichodesmus aster Golovatch, Geoffroy, Mauriès & VandenSpiegel, 2009, all presumed trogloionts from Guangxi, Guangxi, Vietnam, and Vietnam, respectively. After Golovatch et al. (2009c, 2010a, 2010b). Photos courtesy L. Deharveng & A. Bedos.
Figure 10 from: Golovatch SI (2015) Cave Diplopoda of southern China with reference to millipede diversity in Southeast Asia. In: Tuf IH, Tajovský K (Eds) Proceedings of the 16th International Congress of Myriapodology, Olomouc, Czech Republic. ZooKeys 510: 79-94. https://doi.org/10.3897/zookeys.510.8640
Figure 10 - Habitus of Glyphiulus difficilis Golovatch, Geoffroy, Mauriès & VandenSpiegel, 2011, a presumed troglobiont from Guangxi. Scale bar: 1.5 mm. After Golovatch et al. (2011b). SEM micrograph courtesy D. VandenSpiegel.
Southern Europe and Western Asia Marine Heat Waves (SEWA-MHWs): a dataset based on macroevents
<p>This repository contains the SEWA-MHWs dataset, which consists of daily fields of Marine heatwaves (MHWs) macroevents, daily fields of MHWs characteristics, and daily fields of relevant atmospheric variables over Southern Europe and Western Asia region. It contains also the codes to detect MHWs macroevents and their characteristics. The SEWA-MHWs dataset is derived from the European Space Agency (ESA) Climate Change Initiative (CCI) Sea Surface Temperature (SST) v2.1 dataset and it covers the 1981-2016 period. This dataset is presented and described in detail in the "Southern Europe and Western Asia Marine Heat Waves (SEWA-MHWs): a dataset based on macroevents" manuscript by Giulia Bonino, Simona Masina, Giuliano Galimberti, and Matteo Moretti submitted to Earth System Science Data journal (Bonino et al., 2022). </p> <p>This repository contains 3 compressed (*.zip) folders:</p> <p>A) MHWs: it contains daily fields of MHWs macroevents, daily fields of MHWs characteristics</p> <ol> <li>SEWA_labels.nc: daily fields of labels. Each unique label represents a macro event. </li> <li>SEWA_IndStart.nc: daily fields of MHWs index start.</li> <li>SEWA_IndPeak.nc: daily fields of MHWs index peak.</li> <li>SEWA_IndEND.nc: daily fields of MHWs index end.</li> <li>SEWA_Category.nc: daily fields of MHWs categories.</li> <li>SEWA_IntMAx.nc: daily fields of MHWs maximum intensity [°C].</li> <li>SEWA_IntMean.nc: daily fields of MHWs mean intensity [°C].</li> </ol> <p>B) CODES: Python notebooks to detect MHWs macroevents and their characteristics.</p> <ol> <li>MHWs_stl.ipynb to detect MHWs and their characteristics</li> <li>SEWA_LABEL.ipynb: to generate the MHWs macroevents</li> <li>MHWs_filter.ipynb: to filter out the smallest macroevents</li> <li>STL_MarineHeatwaves.py: it contains the function “detect_stl” to detect MHWs using STL method used in MHW_stl.ipynb. This function is a modification of the “detect” function in the marineHeatWaves package created by Eric Oliver (<a href="https://github.com/ecjoliver/marineHeatWaves">https://github.com/ecjoliver/marineHeatWaves</a>).</li> </ol> <p>C) ATM: daily mean fields of relevant atmospheric variables taken from ERA5 (Hersbach et al., 2020, freely available at https://cds.climate.copernicus.eu/cdsapp#!/dataset/reanalysis-era5-single-levels?tab=overview). These data are subsets of the ERA5 dataset, after minimal post-processing manipulation. The area extracted for these meteorological parameters is slightly bigger than the SEWA region, allowing the investigation of remote influences and/or responses of these variables in relationship with MHWs macroevents. The covered area is from 10°N to 70°N in latitude and from 50°W to 80°E in longitude. The covered period is 1981-2016.</p> <ol> <li>SEWA_T2.nc: daily mean fields of 2 meter temperature [K]. “2m temperature” is the native variable name in ERA5 dataset. Unlike ERA5 dataset the data are provided as daily mean.</li> <li>SEWA_LAT.nc: daily mean fields of surface latent heat flux [W/m<sup>2</sup>]. “Surface latent heat flux” is the native variable name in ERA5 dataset. Unlike ERA5 the data are provided as daily mean and in W/m<sup>2</sup> instead of J/m<sup>2</sup>.</li> <li>SEWA_SENS.nc: daily mean fields of surface sensible heat flux [W/m<sup>2</sup>]. “Surface sensible heat flux” is the native variable name in ERA5 dataset. Unlike ERA5 the data are provided as daily mean and in W/m<sup>2 </sup>instead of J/m<sup>2</sup>.</li> <li>SEWA_SLP.nc: daily mean fields of mean sea level pressure [Pa]. “Surface pressure” is the native variable name in ERA5 dataset. Unlike ERA5 the data are provided as daily mean.</li> <li>SEWA_WIND.nc: daily mean fields of 10 meter wind speed [m/s]. This variable is calculated from the wind components “10m u-component of wind” and “10m v-component of wind” of the ERA5 dataset. Unlike ERA5 the data are provided as daily mean.</li> <li>SEWA_SW.nc: daily mean fields of incoming solar radiation [W/m<sup>2</sup>]. “Surface solar radiation downwards” is the native variable name in ERA5 dataset. Unlike ERA5 the data are provided as daily mean and in W/m<sup>2</sup> instead of J/m<sup>2</sup>.</li> </ol> <p>REFERENCES:</p> <p>Bonino, G., Masina, S., Galimberti, G., & Moretti, M. (2022). Southern Europe and Western Asia marine heat waves (SEWA-MHWs): a dataset based on macro events. <em>Earth System Science Data Discussions</em>, 1-19.</p> <p>Hersbach, H., Bell, B., Berrisford, P., Hirahara, S., Horányi, A., Muñoz-Sabater, J., Nicolas, J., Peubey, C., Radu, R., Schepers, D., et al.: The ERA5 global reanalysis, Quarterly Journal of the Royal Meteorological Society, 146, 1999–2049, 2020.</p>
Figure 7 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 7 Geographic distribution of Vincetoxicum cabulicum, V. glaucum and V. subcanescens.
Figure 12 from: Shah SA, Sultan A, Wen J, Ullah Z, Nisa SU, Ren Z, Alam MM, Iqbal J, Mumtaz AS (2021) Taxonomy of Vincetoxicum s.str. (Asclepiadoideae, Apocynaceae) from southern Asia including three new species and resurrected names. PhytoKeys 179: 35-73. https://doi.org/10.3897/phytokeys.179.62514
Figure 12 Geographic distribution of Vincetoxicum kenouriense.
FIGURE 14 in A survey of Phrurolithidae (Arachnida: Araneae) in southern Caucasus, Iran and Central Asia
FIGURE 14. Distribution records of Phrurolithus spp. and Bosselaerius spp. in Azerbaijan, Iran and Tajikistan: Red circles—P. festivus, Pink stars—P. azarkinae sp. n., Blue squares—P. pullatus, Yellow crosses—P. luppovae, Cyan triangles—B. hyrcanicus sp. n., Black asterisk—B. tajikistanicus sp. n.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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