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FIGURE 2 in Phylogenetic relationships among the Iranian Triticum diploid gene pool as inferred from the loci Acc1 and Pgk1
FIGURE 2. Comparison of partial sequences of Acc1 gene from the Iranian wild diploid Triticum (haplotypes 1−3) and its affinitive species. Indels 1 and 2 occurred at positions 210–211 and 581−628, respectively. The positions of 4 nucleotide substitutions are indicated.
FIGURE 1 in Phylogenetic relationships among the Iranian Triticum diploid gene pool as inferred from the loci Acc1 and Pgk1
FIGURE 1. Geographic distribution of the 3 haplotypes seen among the wild gene pool of diploid Triticum in Iran.
FIGURE 5 in Phylogenetic relationships among the Iranian Triticum diploid gene pool as inferred from the loci Acc1 and Pgk1
FIGURE 5. Phylogenetic relationships based on Pgk1 sequences among three Iranian haplotypes (1, 2 and 3) of wild diploid Triticum and related genera. This tree topology was obtained in both MP and BI analyses. Branch lengths are proportional to the mean number of substitutions per site as measured by the scale bar. Bayesian posterior probabilities and bootstrap values over 50% are shown above and below the branches, respectively. Sequences obtained from the NCBI are marked with the sequence accession numbers. Secale cereale and Hordeum vulgare sequences were defined as outgroups.
FIGURE 4 in Phylogenetic relationships among the Iranian Triticum diploid gene pool as inferred from the loci Acc1 and Pgk1
FIGURE 4. Phylogenetic relationships based on Acc1 sequences among three Iranian haplotypes (1, 2 and 3) of wild diploid Triticum and related genera. This tree topology was obtained in both MP and BI analyses. Branch lengths are proportional to the mean number of substitutions per site as measured by the scale bar. Bayesian posterior probabilities and bootstrap values over 50% are shown above and below the branches, respectively. Sequences obtained from the NCBI are marked with the sequence accession numbers. Secale cereale and Hordeum vulgare sequences were defined as outgroups.
FIGURE 2 in Desertifilum salkalinema sp. nov. (Oscillatoriales, Cyanobacteria) from an alkaline pool in China
FIGURE 2. Cross-sectional views of transmission electron micrographs (TEM) for studied strain of Desertifilum salkalinema. T = thylakoid.
FIGURE 6 in Desertifilum salkalinema sp. nov. (Oscillatoriales, Cyanobacteria) from an alkaline pool in China
FIGURE 6. Growth rates of the studied stains at different salinity and alkalinity concentration. (Same alphabets indicate no significant change between different salinity and alkalinity concentration.)
FIGURE 1 in Desertifilum salkalinema sp. nov. (Oscillatoriales, Cyanobacteria) from an alkaline pool in China
FIGURE 1. Micrographs of Desertifilum salkalinema under the light microscopy (LM). (A, B) straight and wavy filamentous. Scale bars=10 μm.
FIGURE 3-4 in Desertifilum salkalinema sp. nov. (Oscillatoriales, Cyanobacteria) from an alkaline pool in China
FIGURE 3-4. Longitudinal section views of transmission electron micrographs (TEM) of studied strain of Desertifilum salkalinema. T = thylakoid.
FIGURE 5 in Desertifilum salkalinema sp. nov. (Oscillatoriales, Cyanobacteria) from an alkaline pool in China
FIGURE 5. Maximum likelihood (ML) phylogenetic tree of 16S rRNA sequences. Bootstrap values greater than 50% with NJ/ML/ Mrbayes methods are indicated on the tree. The novel species is in bold font.
FIGURES 33–36 in Ninastrelnikovia lateritica sp. nov., a new and rare freshwater diatom species from the rocky pools of the Western Ghats, India with a note on the genus Ninastrelnikovia Lange-Bertalot & A.Fuhrmann (Bacillariophyta)
FIGURES 33–36. Close up of internal valves of Ninastrelnikovia lateritica sp. nov. (SEM). 33. Proximal raphe ends strongly deflected onto the same side and internally open areolae. 34 & 35. Distal raphe end ending in helictoglossae. 36. Straight or rudimentarily developed proximal raphe end found in a intermediate valve which attached with another valve by interdigitating, long spatulate spines (arrows). (All scale bars represent 1 μm).
FIGURES 20–28 in Ninastrelnikovia lateritica sp. nov., a new and rare freshwater diatom species from the rocky pools of the Western Ghats, India with a note on the genus Ninastrelnikovia Lange-Bertalot & A.Fuhrmann (Bacillariophyta)
FIGURES 20–28. Detail of the external views of Ninastrelnikovia lateritica sp. nov. frustules (SEM). 20 & 21. Apices showing distal raphe ends of terminal and intermediate valves respectively. 22. Girdle view of the apex of a frustule showing pseudospines (arrows), spatulate spines (arrowheads) with distal raphe end curving towards the mantle. 23. Middle part of the terminal valve showing fully developed raphe system. 24. Middle part of the intermediate valve showing rudimentary raphe. 25. Girdle view of the middle part of a frustule showing pseudospines (arrow), linking spines (arrowhead) and silica granules (round pointer). 26 & 27. Apices showing distal raphe ends of terminal and intermediate valves respectively. 28. Another broken frustule apex showing raphe slit (arrow). (All scale bars represent 1 μm).
FIGURES 15–19 in Ninastrelnikovia lateritica sp. nov., a new and rare freshwater diatom species from the rocky pools of the Western Ghats, India with a note on the genus Ninastrelnikovia Lange-Bertalot & A.Fuhrmann (Bacillariophyta)
FIGURES 15–19. External views of Ninastrelnikovia lateritica sp. nov. frustules (SEM). 15 & 16. Face views of cell colony terminating valves bearing longitudinally oriented siliceous slat system. 17 & 18. Face views of intermediate valves of cell colony showing linking spatulate spines and wedge shaped pluriseriate areolae. 19. Girdle view of cell colony terminating frustule. (All scale bars represent 2 μm).
FIGURES 1–14 in Ninastrelnikovia lateritica sp. nov., a new and rare freshwater diatom species from the rocky pools of the Western Ghats, India with a note on the genus Ninastrelnikovia Lange-Bertalot & A.Fuhrmann (Bacillariophyta)
FIGURES 1–14. LM-micrographs of Ninastrelnikovia lateritica sp. nov., from the type population; valve views showing the size diminution series. Holotype depicted in Fig. 11. 3 & 4. Frustules in valve view with high and low focusing showing distinct raphe and central nodule. 8 & 9. Showing reduced raphes with wider spaced central endings (Scale bar represents 10 μm).
FIGURES 29–32 in Ninastrelnikovia lateritica sp. nov., a new and rare freshwater diatom species from the rocky pools of the Western Ghats, India with a note on the genus Ninastrelnikovia Lange-Bertalot & A.Fuhrmann (Bacillariophyta)
FIGURES 29–32. Internal views of Ninastrelnikovia lateritica sp. nov. frustules (SEM). 29–31. Whole valve showing striae pattern, central area, proximal raphe ends and narrowly elliptical valve shape with gradually swollen centre. 32. One terminal cell (arrows) connected with another intermediate valve that showing proximal raphe end. (All scale bars represent 3 μm).
FIGURES 37–40 in Ninastrelnikovia lateritica sp. nov., a new and rare freshwater diatom species from the rocky pools of the Western Ghats, India with a note on the genus Ninastrelnikovia Lange-Bertalot & A.Fuhrmann (Bacillariophyta)
FIGURES 37–40. Close up of internal valves of Ninastrelnikovia lateritica sp. nov. (SEM). 37. Curved proximal raphe end found in a intermediate valve as it bears spines (arrows). 38 & 39. Curved proximal raphe end found in a terminal valve which shows slender siliceous slats (arrows). 40. A broken apical part showing strut like structures which holds the mantle. (All scale bars represent 1 μm).
Raw data from Fast generation of a metamodel for conduction mode melt pool dimensions in Laser Powder Bed Fusion
<p>This is the raw data repository for the submission of the Manuscript <span>"Fast generation of a metamodel for conduction mode melt pool dimensions in Laser Powder Bed Fusion"</span></p>
Utilizing DNA pooling to predict cancer eye, ocular squamous cell carcinoma, in Hereford cattle
<p>Files include genotypes and dye intensity data from BovineHD bead array from a small closed population of Hereford cattle. 42 animals are individually genotyped and 10 pools of 50 animals are genotyped. Random regression of individual dye intensity data were regressed on pool data to estimate genetic connections between animals and pools. Covariances among animals for pool contributions were also estimated.</p>
Global terrestrial carbon pools and fluxes
<p>This file contains a compilation of published data used to generate Fig. 1 in the paper "Estimating the importance of viral contributions to soil carbon dynamics" by Amy E. Zimmerman, Emily B. Graham, Jason McDermott, Kirsten S. Hofmockel which has been accepted for publication in <em>Global Change Biology</em> as of September 2024. Please see the manuscript Supporting Information for additional details.</p>
FIGURE 10. Moina belli Gurney, 1904 from Pool 2 in Investigation of the distribution patterns in moinids (Crustacea: Cladocera: Moinidae) forming ephippia with two resting eggs
FIGURE 10. Moina belli Gurney, 1904 from Pool 2 on Thaba Tseka Road, km 45.2 from T.O., Drakensberg, Lesotho. A–H, Adult parthenogenetic female. I–J, Ephippial female. A, Ventral portion of valve. B, Setulated hook on posterior most portion of valve. C, Distal portion of postabdomen. D, Hairs on dorsal portion of postabdomen. E, Antenna I. F–H, Details of limbs structure. I, Ephippium, lateral view. J, Anterior portion of ephippium. Scale bars 0.2 mm for I, 0.1 mm for E–F, 0.05 mm for A, C–D, G–H, J, 0.02 mm for B.
FIGURE 15 in Further cleaning of the name pool in the New World Commelina (Commelinaceae), and notes on the African C. aquatica
FIGURE 15. Lectotype of Commelina stricta (R.L. Desfontaines s.n., G-00489192). Copyright: Conservatoire et Jardin botaniques de la Ville de Genève. Available online at: https://www.ville-ge.ch/musinfo/bd/cjb/chg/adetail.php?id=393407
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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.