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91 results for “Tropical Asia”
Megafruit and megafauna diversity are positively associated, while megafruit traits are related to abiotic factors, in Tropical Asia
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Data for "Cold surge pathways in East Asia and their tropical impacts"
<p>This repository archives codes for analysis and plot presented in a manuscript submitted to Journal of Climate: "Cold surge pathways in East Asia and their tropical impacts". The codes are written in GrADS and Octave format. </p> <p>The repository also includes a Fortran package for isentropic polar cold air mass diagnosis as in Iwasaki et al. (2014). The package was specifically created by Dr. Y. Kanno.</p>
Figure 5 from: Zhu A-H, Liu Z-B, Li Y, Liu H-G, Yuan Y, He S-H (2024) Molecular and morphological data reveal two new species of Tropicoporus (Hymenochaetaceae, Basidiomycota) from Australia and tropical Asia. MycoKeys 103: 57-70. https://doi.org/10.3897/mycokeys.103.119027
Figure 5 Microscopic structures of Tropicoporus zuzaneae (drawn from the holotype Dai 22171) a basidiospores b basidia and basidioles c cystidioles d hyphae from subiculum e hyphae from trama. Scale bars: 5 µm (a); 10 µm (b–e).
Figure 1 from: Zhu A-H, Liu Z-B, Li Y, Liu H-G, Yuan Y, He S-H (2024) Molecular and morphological data reveal two new species of Tropicoporus (Hymenochaetaceae, Basidiomycota) from Australia and tropical Asia. MycoKeys 103: 57-70. https://doi.org/10.3897/mycokeys.103.119027
Figure 1 Phylogeny of Tropicoporus generated by ML analyses based on combined ITS+nLSU sequences. Branches are labelled with maximum likelihood bootstrap higher than 75% and Bayesian posterior probabilities higher than 0.90. New species are indicated in bold.
Figure 3 from: Zhu A-H, Liu Z-B, Li Y, Liu H-G, Yuan Y, He S-H (2024) Molecular and morphological data reveal two new species of Tropicoporus (Hymenochaetaceae, Basidiomycota) from Australia and tropical Asia. MycoKeys 103: 57-70. https://doi.org/10.3897/mycokeys.103.119027
Figure 3 Microscopic structures of Tropicoporus oceanianus (drawn from the holotype Dai 18859) a basidiospores b basidia and basidioles c cystidioles d hymenial setae e hyphae from context f hyphae from trama. Scale bars: 5 µm (a); 10 µm (b–f).
Southeast Asia Tropical cyclone landfall database
<p>This database includes four Tropical cyclone (TC) landfall datasets produced using the Regional Specialized Meteorological Center of Tokyo (TOKYO), China Meteorological Administration (CMA), Hong Kong Observatory (HKO), and Joint Typhoon Warning Center (JTWC) best track datasets. The database was used to investigate a 50-yr TC landfalling climatology in Southeast Asia (1970-2019). These datasets are at 30-min temporal and 0.25-degree spatial resolutions and stored in the Matlab ".m" file format.</p> <p>The column variable description of each dataset is as below.</p> <p>1) id: Tropical cyclone identifier</p> <p>2) name: Tropical cyclone name</p> <p>3) syear: Forming year</p> <p>4) obs: Time provided in Universal Time Coordinates (UTC). Format is YYYY-MM-DD_HH:mm:ss</p> <p>5) lat: Latitude</p> <p>6) lon: Longitude</p> <p>7) v: Maximum wind speed (converted to 1-min wind speed in case the dataset is CMA, HKO, TOKYO)</p> <p>8) hit_lat: Latitude of landfall</p> <p>9) hit_lon: Longitude of landfall</p> <p>10) hit_v: Intensity at landfall (defined by maximum wind speed converted to 1-min in case the dataset is CMA, HKO, TOKYO)</p> <p>11) v_orig: Maximum wind speed provided by an agency</p> <p>12) hit_v_orig: Intensity at landfall defined by maximum wind speed provided by an agency</p> <p>13) hit_obs: Time of landfall</p> <p>14) hit_times: Number of landfalls</p>
• Old World tropics throughout Asia and Africa, also Middle East and southern Europe. in Herpestidae
• Old World tropics throughout Asia and Africa, also Middle East and southern Europe.
• Old World tropics throughout Asia and Africa, also southern Europe. in Viverridae
• Old World tropics throughout Asia and Africa, also southern Europe.
Research data supporting the publication "Seed Size Variation of Trees and Lianas in a Tropical Forest of Southeast Asia: Allometry, Phylogeny, and Seed Trait - Plant Functional Trait Relationships"
<p><em>Research data supporting the publication:</em></p> <p><br> <strong>Seed size variation of trees and lianas in a tropical forest of Southeast Asia: allometry, phylogeny, and seed trait - plant functional trait relationships</strong></p> <p><strong>Original Research, Front. Plant Sci. - Functional Plant Ecology</strong></p> <p>Here, we compiled a unique dataset of seed size (seed mass and geometrical size metrics) based on collections of more than 5,200 seeds of 196 woody plant species, covering >98 and 70% of tree and liana stems, respectively, located on a 30-ha plot in a tropical evergreen forest in central Thailand. Seeds, are stored in the BBH herbarium at BIOTEC of the National Science and Technology Development Agency, Thailand. Many seeds (38.3%) have been collected from gibbons’ feces during gibbon monitoring. Most seeds of species dispersed by gibbons (through defecation) have hard seed coats and do not change in their morphology during gut passage. However, most seeds (46.4%) were collected while monitoring plant phenology. Rarely, when seeds were not available in the herbarium, mostly from rare or non-fruiting species (15.3%), we used information from field-recorded and unpublished data of Mo Singto plot. Seed mass refers to the dry weight of endosperm and embryo including the seed coat but excluding any morphological structures, such as wings, that aid dispersal. Before measuring and weighing, seeds were oven-dried at 60°C for at least 3 days. After drying, we immediately measured each seed in three dimensions: length (L), the longest linear dimension; width (W), the widest orthogonal direction to L; and thickness (T), the largest orthogonal side to both the L and W, using a Vernier caliper<br> with 2-digit micrometer precision. We weighed the same seed on a microgram balance (PB303, Mettler, Toledo). </p>
Survival and growth data for tree species planted to reforest degraded tropical peat swamp forests and functional trait data for peat swamp forest species across Southeast Asia
<p>Degraded tropical peat swamp forests are harsh environments so difficult to restore. Evidence from past restoration projects can inform selection of species for planting. As part of a systematic review, we collated and synthesised survival and growth monitoring data on trees planted in degraded tropical peat swamp forests across Southeast Asia. A key aim of the systematic review and meta-analysis was to determine which tree species survive best when planted to restore tropical peat swamp forests. We also investigated the impact of seedling and site treatments and climatic conditions (El Niño-Southern Oscillation) on tree seedling survival and growth and the potential to use plant functional traits to predict survival and growth. </p> <p>Full methodological details of the systematic review, including: search strategy, article screening and inclusion criteria, critical appraisal of screened articles, data processing and data analysis can be found in the published article and supporting information stated below.</p> <p>Smith SW, Rahman NEB, Harrison ME, Shiodera S, Giesen W, Lampela M, Wardle DA, Chong KY, Randi A, Wijedasa LS, Teo PY, Fatimah, YA, Teng NT, Joanne YKQ, Alam MJ, Brugues Sintes P, Darusman T, Graham LLB, Katoppo DR, Kojima K, Kusin K, Lestari DP, Metali F, Morrogh-Bernard HC, Nahor MB, Napitupulu RRP, Nasir D, Nath TK, Nilus R, Norisada M, Rachmanadi D, Rachmat HH, Ripoll Capilla B, Salahuddin, Santosa PB, Sukri RS, Tay B, Tuah W, Wedeux, BMM, Yamanoshita T, Yokoyama EY, Yuwati TW, Lee JSH. Tree species that ‘live slow, die older’ enhance tropical peat swamp restoration: evidence from a systematic review. <em>Journal of Applied Ecology. </em>DOI:<a href="https://doi.org/10.1111/1365-2664.14232">10.1111/1365-2664.14232</a></p> <p>In this data repository, we have uploaded the following data used in the meta-analysis to generate the findings presented in the systematic review, specifically:</p> <ul> <li>Screening sheets of eligible articles across languages (English, Indonesian, Japanese and German) read in detailed by multiple authors on the review</li> <li>Survival monitoring data, including predicted half-life (duration until 50% mortality) derived from functional line-fitting</li> <li>Height monitoring data, including standardized relative growth rates (cm × cm<sup>-1 </sup>month<sup>-1</sup>) derived from functional line-fitting</li> <li>Plant functional traits, selected leaf nutrient contents and wood densities for those species used in the functional trait analyses</li> </ul> <p>Each data file has an associated meta-data file explaining the column headers and variables. Please note, data contributors from some studies wished to retain control over access to their monitoring data, but are willing to share this data on request. The relevant study-site code those studies used in the analyses in our systematic review can be found in the meta-data sheets. Details given include study-site code (used in the systematic review), site name and location, author name(s), author contact email(s). All these details have been provided with permission from relevant data contributor co-author(s). </p>
Supplementary material 1 from: Aubriot X, Knapp S (2022) A revision of the "spiny solanums" of Tropical Asia (Solanum, the Leptostemonum Clade, Solanaceae). PhytoKeys 198: 1-270. https://doi.org/10.3897/phytokeys.198.79514
Index to all numbered collections
Supplementary material 3 from: Aubriot X, Knapp S (2022) A revision of the "spiny solanums" of Tropical Asia (Solanum, the Leptostemonum Clade, Solanaceae). PhytoKeys 198: 1-270. https://doi.org/10.3897/phytokeys.198.79514
All specimens examined
Supplementary material 2 from: Aubriot X, Knapp S (2022) A revision of the "spiny solanums" of Tropical Asia (Solanum, the Leptostemonum Clade, Solanaceae). PhytoKeys 198: 1-270. https://doi.org/10.3897/phytokeys.198.79514
Tropical Asian specimens examined
FIGURE 1. Male Stenoheriades bifida Griswold. 1 in First record of Stenoheriades Cockerell in tropical Asia: Stenoheriades bifida, new species (Hymenoptera: Megachilidae)
FIGURE 1. Male Stenoheriades bifida Griswold. 1, Lateral habitus. Scale bar = 1.0 mm
Fig. 7. Kelleria latipes n in Copepods of the family Kelleriidae (Crustacea, Copepoda, Cyclopoida) from tropical waters of the Asia-Pacific
Fig. 7. Kelleria latipes n. sp., female. A, habitus, dorsal; B, urosome, dorsal C, caudal rami, dorsal; D, rostrum; E, antennule; F, antenna; G, labrum; H, mandible; I, maxillule; J, maxilla. Scale bars: A, 0.2 mm; B, E, F, 0.05 mm; C, D, G-J, 0.02 mm.
Fig. 5. Kelleria andamanensis Sewell, 1949, female. A in Copepods of the family Kelleriidae (Crustacea, Copepoda, Cyclopoida) from tropical waters of the Asia-Pacific
Fig. 5. Kelleria andamanensis Sewell, 1949, female. A, maxilliped; B, leg 1; C, leg 2; D, third endopodal segment of leg 3; E, leg 4; F, leg 5; G, right side of genital double-somite, dorsal. Scale bars: 0.05 mm.
Fig. 3. Kelleria regalis Gurney, male. A in Copepods of the family Kelleriidae (Crustacea, Copepoda, Cyclopoida) from tropical waters of the Asia-Pacific
Fig. 3. Kelleria regalis Gurney, male. A, habitus, dorsal; B, urosome, ventral; C, maxilla; D, maxilliped; E, proximal seta on basis of maxilliped; F, leg 1; G, third endopodal segment of leg 2; H, exopod of leg 5; I, leg 6. Scale bars: A, 0.2 mm; B, 0.1 mm; C, G-I, 0.02 mm; D, F, 0.05 mm; E, 0.01 mm.
Fig. 2. Kelleria regalis Gurney, female. A in Copepods of the family Kelleriidae (Crustacea, Copepoda, Cyclopoida) from tropical waters of the Asia-Pacific
Fig. 2. Kelleria regalis Gurney, female. A, maxilliped; B, leg 1; C, leg 2; D, third endopodal segment of leg 3; E, leg 4; F, exopod of leg 5; G, left genital aperture, dorsal. Scale bars: A, C-F, 0.05 mm; B, 0.02 mm.
Fig. 1. Kelleria regalis Gurney, female. A in Copepods of the family Kelleriidae (Crustacea, Copepoda, Cyclopoida) from tropical waters of the Asia-Pacific
Fig. 1. Kelleria regalis Gurney, female. A, habitus, dorsal; B, urosome, dorsal; C, left caudal ramus, dorsal; D, rostrum; E, antennule; F, antenna; G, labrum; H, mandible; I, paragnath; J, maxillule; K, maxilla. Scale bars: A, 0.2 mm; B, 0.1 mm; C-G, K, 0.05 mm; H-J, 0.02 mm.
Figure 7 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 7 Radulae of "Thiara" aspera (Lesson, 1831) from Thailand. A, B.SUT 0312070, Nakhon Pathom province, pond at Silpakorn University campus; A. Central and lateral teeth; B. Marginal teeth; C, D.SUT 0311020, Samut Sakhon province, Klong Don Ko; C. Central and lateral teeth; D. Marginal teeth. E, F: SUT 0311053, Samut Sakhon Province, Klong Don Ko; E. Central and lateral teeth; F. Marginal teeth. Scale bars: 35 µm (A, E); 5 µm (B, F); 25 µm (C); 10 µm (D).
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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)
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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.