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173 results for “Sinoe”
FIGURE 15 in Morphological description and DNA barcoding of Ceratophysella gracilimucronata sp. nov. (Collembola: Hypogastruridae) from China, with a key to species of the C. armata group of the Sino-Japanese Region
FIGURE 15. Furca of C. gracilimucronata sp. nov.
FIGURE 12 in Morphological description and DNA barcoding of Ceratophysella gracilimucronata sp. nov. (Collembola: Hypogastruridae) from China, with a key to species of the C. armata group of the Sino-Japanese Region
FIGURE 12. Chaetotaxy of head of C. gracilimucronata sp. nov.
FIGURE 14 in Morphological description and DNA barcoding of Ceratophysella gracilimucronata sp. nov. (Collembola: Hypogastruridae) from China, with a key to species of the C. armata group of the Sino-Japanese Region
FIGURE 14. Chaetotaxy of Abd. I–V of C. gracilimucronata sp. nov.
FIGURE 13 in Morphological description and DNA barcoding of Ceratophysella gracilimucronata sp. nov. (Collembola: Hypogastruridae) from China, with a key to species of the C. armata group of the Sino-Japanese Region
FIGURE 13. Chaetotaxy of Th. I–III of C. gracilimucronata sp. nov.
Nuclear and plastid phylogenomic analyses provide insights into the reticulate evolution, species delimitation and biogeography of the Sino-Japanese disjunctive Diabelia (Caprifoliaceae)
<p>Understanding biological diversity and the mechanisms of the Sino-Japanese disjunctions are major challenge<span>s in</span><span> </span><span>eastern Asia biogeography</span><span>. </span><span>The Sino-Japanese flora has been broadly studied as an ideal model</span><span> for plant phylogeography</span><span>. </span><span>Diabelia</span><span> (Caprifoliaceae) is an</span><span> East Asian genus, </span><span>with a disjunctive distribution across </span><span>the </span><span>Sino-</span><span>J</span><span>apanese region.</span><span> However, </span><span>relationships within </span><span>Diabelia</span><span> remain elusive. In this study, </span><span>we reconstructed</span><span> the </span><span>phylogeny of </span><span>Diabelia</span><span> </span><span>and </span><span>inferred historical biogeography and evolutionary patterns</span><span> based on nuclear and </span><span>plastid</span><span> sequence</span><span>s</span><span> from </span><span>target enrichment</span><span> and genome skimming approaches, respectively</span><span>.</span><span> We found that the </span><span>main </span><span>clades</span><span> within </span><span>Diabelia</span><span> were</span><span> </span><span>discordant between nuclear and plastid trees</span><span>. </span><span>Both </span><span>nuclear and plastid </span><span>phylogenetic analys</span><span>e</span><span>s </span><span>supported</span><span> five main clades: </span><span>D. serrata</span><span>, </span><span>D. </span><span>tetrasepala</span><span>, </span><span>D. </span><span>sanguinea</span><span>, </span><span>D. </span><span>spathulata</span><span> </span><span>var. </span><span>stenophylla</span><span> and </span><span>D. </span><span>spathulata</span><span> </span><span>var. </span><span>spathulata</span><span>. Species network analyses revealed that </span><span>Diabelia</span><span> </span><span>tetrasepala</span><span> </span><span>is likely the </span><span>result </span><span>of a</span><span> hybridization event</span><span>. Divergence time estimation</span><span> and </span><span>ancestral area reconstructions</span><span> showed that </span><span>Diabelia</span><span> originated in</span><span> </span><span>Japan during </span><span>the </span><span>early Miocene, with subsequent vicariance </span><span>and dispersal </span><span>events between Japan and Korea, and between Japan and China</span><span>.</span><span> </span><span>Overall</span><span>, </span><span>our results support the division of</span><span> </span><span>Diabelia</span><span> into five main clades and </span><span>the recognition of five species in the genus.</span><span> </span><span>T</span><span>his research </span><span>provides new insights in the species delimitation and</span><span> </span><span>speciation processes of</span><span> </span><span>taxonomically complex lineages such as </span><span>Diabelia</span><span>.</span></p>
Figs 21–24 in The Survey Of The Himalayan-Sino-Tibetan Species Of The Genus Dicerogastra Fletcher, 1961 (Lepidoptera: Noctuidae, Hadeninae), With The Description Of Two New Species From China
Figs 21–24. Male genitalia of Dicerogastra and Feliniopsis sPecies. 21–22 = D. euxoides sP. n., ParatyPe, RL11274m, 21 = clasPingaPParatus; 22 = aedeagus; 23–24 = Feliniopsisalbiflexura
Supplementary material 1 from: Dai J-H, Nong S-Y, Guo X-B, Van Do T, Liu Y, Zhou R-C, Liu Y (2022) Three new species of Bredia (Sonerileae, Melastomataceae) from the Sino-Vietnamese border area. PhytoKeys 195: 107-125. https://doi.org/10.3897/phytokeys.195.83934
Table S1
Supplementary material 2 from: Dai J-H, Nong S-Y, Guo X-B, Van Do T, Liu Y, Zhou R-C, Liu Y (2022) Three new species of Bredia (Sonerileae, Melastomataceae) from the Sino-Vietnamese border area. PhytoKeys 195: 107-125. https://doi.org/10.3897/phytokeys.195.83934
Table S2
FIGURE 3 in Reinstatement of the Sino-Himalayan species Senecio pentanthus (Asteraceae, Senecioneae)
FIGURE 3. An isotype sheet of Senecio acuminatus f. breviligulatus.
Figure 3 from: Jeng M, Engel M (2014) Description of Oculogryphus shuensis sp. n. (Coleoptera, Lampyridae), the first species of the genus in the Sino-Japanese realm, with a modified key to the subfamily Ototretinae. ZooKeys 378: 41-47. https://doi.org/10.3897/zookeys.378.6435
Figure 3 - Sketch of right hind wing of Oculogryphus shuensis sp. n., male, modified from that of Oculogryphus bicolor to show venation.
Figures 4-5 from: Jeng M, Engel M (2014) Description of Oculogryphus shuensis sp. n. (Coleoptera, Lampyridae), the first species of the genus in the Sino-Japanese realm, with a modified key to the subfamily Ototretinae. ZooKeys 378: 41-47. https://doi.org/10.3897/zookeys.378.6435
Figures 4-5 - Oculogryphus shuensis sp. n., male. 4 aedeagal sheath, dorsal aspect 5 male genitalia, dorsal (A), ventral (B), and lateral (C) aspects.
FIGURE 2 in Taxonomic studies on the genus Delphinium (Ranunculaceae) from China (XXIV): D. latilimbum, recently described from southern Xizang (Tibet), is another new synonym of D. kamaonense, a Sino-Himalayan species
FIGURE 2. Type specimens of Delphinium hirticaule.
FIGURE 3 in Some superfluous names recently proposed involving the Sino-Himalayan Anemone rupestris (Ranunculaceae)
FIGURE 3. Holotype (A) and isotype (B) sheets of Anemone rupestris subsp. rupestris var. latifolia.
Nuclear and plastid phylogenomic analyses provide insights into the reticulate evolution, species delimitation and biogeography of the Sino-Japanese disjunctive Diabelia (Caprifoliaceae)
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Sino-Tibetan Etymological Dictionary and Thesaurus Database Software
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RNA expression in the chick embryonic heart and sino-atrial node
GEO Series GSE112894. Gallus gallus. 8 samples. Type: Expression profiling by high throughput sequencing.
Figure 3 from: Chen Y-P, Paton AJ, Xiang C-L (2020) Hanceola suffruticosa (Lamiaceae, Nepetoideae), a new species from the Sino-Vietnamese border. PhytoKeys 145: 131-138. https://doi.org/10.3897/phytokeys.145.49995
Figure 3 Distribution of Hanceola suffruticosa (stars).
Supplement to Inferring the evolutionary history of the Sino-Himalayan biodiversity hotspot using a Bayesian birth-death skyline model
<p>This repository contains the supplementary files for:</p> <p>Allen BJ, Vaughan TG, du Plessis L, Schouten TLA, Yuan Z, Willett SD, Stadler T. 2024. Inferring the evolutionary history of the Sino-Himalayan biodiversity hotspot using a Bayesian birth-death skyline model. Geological Society of London Special Publications, 549.</p> <p><strong>Description of files</strong></p> <p>This repository contains the cleaned tree file, raw log files, simulated trees, XML files for running the analyses in BEAST2, and R code to process the datasets.</p> <p>Liu_et_al_SinoHimalayan.nex - the phylogeny inferred by Liu et al. (2021), trimmed to only include the 8864 tips associated with genetic data</p> <p>Skyline_logs.zip - skyline logs produced by BEAST2 analyses (see below for naming convention)</p> <p>Regression_results.zip - results of the linear modelling between global palaeotemperature and diversification estimates</p> <p>Sim_trees.trees - the phylogenies simulated by ReMASTER</p> <p>Adequacy_logs.zip - skyline logs produced from the analyses using the simulated phylogenies</p> <p> </p> <p><strong>Description of BEAST2 XMLs</strong></p> <p>The XML files contain the BEAST2 configurations for:</p> <p>Liu_et_al_bd.xml, Liu_et_al_bd_high.xml, Liu_et_al_bd_mid.xml, Liu_et_al_bd_low.xml - skyline analyses using equal length time bins, with beta sampling prior, high fixed sampling, mid fixed sampling, and low fixed sampling respectively</p> <p>Liu_et_al_bd_geol.xml, Liu_et_al_bd_geol_high.xml, Liu_et_al_bd_geol_mid.xml, Liu_et_al_bd_geol_low.xml - skyline analyses using geological time bins, with beta sampling prior, high fixed sampling, mid fixed sampling, and low fixed sampling respectively</p> <p>Remaster_simulation.xml - simulating new phylogenies based on the inferred skylines using ReMASTER</p> <p>Sim_trees.xml - skyline analyses conducted on the simulated phylogenies</p> <p> </p> <p><strong>Description of R code</strong></p> <p>The R code is subdivided into the following files:</p> <p>BDSKY_skylines.R - code for processing and plotting skyline data from the BEAST2 log files</p> <p>BDSKY_adjacent_bins.R - code for the analyses examining the increase or decrease in evolutionary rates between adjacent skyline bins</p> <p>Plot_palaeotemp_comparison.R - code for plotting the diversification estimates against global palaeotemperature, as taken from Scotese et al. (2021)</p> <p>Palaeotemperature_regressions.R - code for linear modelling between global palaeotemperature and diversification estimates</p> <p>Remaster_processing.R - code for processing and plotting inferred skylines from the simulated datasets</p>
IBN SINO TA'LIMOTIDA AXLOQ VA AXLOQIYLIK TO'G'RISIDA
<p><span>Buyuk mutafakkir Abu Ali ibn Sinoning bizgacha yetib kelgan asarlarining orasida “Tadbir al-manozil” (“Turar joylarni boshqarish choralari”), “Risola fi ilmi axloq” (“Axloq ilmiga oid risola”), “Risola fi-l-ahd” (“Burch haqida risola”), Risola fi tazkiyat an –nafs” (“Nafsni pokiza tutish haqida risola”), “Risola siyosat al-badan” (“Badanni boshqarish risolasi”), “Kitob al –ansof” (Adolat haqida kitob)larda axloqiy qarashlarining turli xil yo‘nalishlarini ifoda etgan.</span></p>
Figures 1-2 from: Jeng M, Engel M (2014) Description of Oculogryphus shuensis sp. n. (Coleoptera, Lampyridae), the first species of the genus in the Sino-Japanese realm, with a modified key to the subfamily Ototretinae. ZooKeys 378: 41-47. https://doi.org/10.3897/zookeys.378.6435
Figures 1-2 - Habitus of holotype of Oculogryphus shuensis sp. n. 1 dorsal aspect 2 ventral aspect.
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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.