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263 results for “acacia”
Acacia koa (Fabaceae) - whole tree (or vine) - general
Image of Acacia koa (Fabaceae) - whole tree (or vine) - general
Acacia koa (Fabaceae) - whole tree (or vine) - general
Image of Acacia koa (Fabaceae) - whole tree (or vine) - general
Figure 3 in Phylogenetic measures of biodiversity and neo- and paleo-endemism in Australian Acacia
Figure 3 | CANAPE, a two-step procedure described in text. (a) Map of centres of endemism discovered. White cells contain no records; beige cells are not significant. The red values indicate grid cells that contain significantly lower RPE than expected given random sampling of the same number of species from a null tree, termed 'centres of neo-endemism'. The blue values indicate grid cells that contain significantly higher RPE than expected, termed 'centres of paleo-endemism'. The purple values indicate grid cells that are a mix of neo-endemism and paleo-endemism; the most highly significant of which (darker purple) are termed 'centres of superendemism'. (b) Bivariate plot showing the relationship between the numerator (y axis) and denominator (x axis) of RPE, applied following the two-step CANAPE procedure described in text, for comparison with a. The grey points in the background are results of the randomization, the beige points are actual values for grid cells that are not significant, the red points are actual values for grid cells that are interpreted as significantly dominated by neo-endemism, the blue points are actual values for grid cells that are interpreted as significantly dominated by paleo-endemism, and the purple points are actual values for grid cells significant for both the y-axis and x-axis variables separately, the most highly significant of which (darker purple) are termed 'centres of super-endemicity'.
Figure 2 in Phylogenetic measures of biodiversity and neo- and paleo-endemism in Australian Acacia
Figure 2 | Maps showing significance levels resulting from of a randomization test in Australian Acacia. White cells contain no records; beige cells are not significant. (a) PD: the red values indicate grid cells that contain significantly less PD than expected; the blue values indicate grid cells that contain significantly more PD than expected. (b) RPD: the red values indicate grid cells that contain significantly less RPD than expected; the species present in that cell are significantly more closely related than expected. The blue values indicate grid cells that contain significantly more RPD than expected; the species present in that cell are significantly more distantly related than expected. (c) Phylogenetic endemism (PE). The red values indicate grid cells that contain significantly less PE than expected; the blue values indicate grid cells that contain significantly more PE than expected. (d) Relative phylogenetic endemism (RPE). The red values indicate grid cells that contain significantly lower RPE than expected; the blue values indicate grid cells that contain significantly higher RPE than expected.
Fig. 2. Topologiesof the Bayesian trees with branchlengths. Posteriorprobability andbootstrapsupport valuesare given. A. Vachellia and B. Senegalias.l in Evolutionary and taxonomic relationships of Acacia s.l. (Leguminosae: Mimosoideae)
Fig. 2. Topologiesof the Bayesian trees with branchlengths. Posteriorprobability andbootstrapsupport valuesare given. A. Vachellia and B. Senegalias.l.
Fig. 1 in Evolutionary and taxonomic relationships of Acacia s.l. (Leguminosae: Mimosoideae)
Fig. 1. Topologies of the Bayesian trees without branch lengths. The three boxes indicate the three subgenera of Acacia s.l. Shaded groupings indicate segregate and suggested segregate groupings. Bold lines indicate Bayesian posterior probability above 95%. African Vachellia and Senegalia are indicated in white text. Bootstrap values are given above nodes and bootstrap values below 80% are in italic.
Fig. 1 in Avian Communities Of A Mixed Mopane-Acacia Savanna In The Cuvelai Drainage System, North-Central Namibia, During The Dry And Wet Season
Fig. 1. Seasonal changes in percentage contribution of main feeding guilds in avian assemblage in mixed Mopane-Acacia savanna (F — frugivores, G — granivores, I — insectivores, O — other guilds).
Compiled dataset and posterior results for NEMo analyses on Acacia tolerance to aridity and salinity
<p>The dataset contains the compiled data for the aridity and salinity conditions at <em>Acacia</em> species' presence and absence locations, factors on sampling bias, as well as <em>Acacia</em> phylogeny. The data file is the input to the NEMo analyses. The dataset also contains the result files from the analyses.</p>
Dataset: Acacia Research Corporation (ACTG) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Acacia Research Corporation (ACTG) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Data for: Mutualistic Acacia Ants exhibit reduced aggression and more frequent off-tree movements near termite mounds
<p>These are the raw data used in the paper "Mutualistic Acacia Ants exhibit reduced aggression and more frequent off-tree movements near termite mounds". Please see the README file for a more detailed description of the two CSV files. </p>
Figure 1 in Koa Looper Caterpillars (Scotorythra paludicola, Geometridae) Have Lower Fitness on Koa (Acacia koa, Fabaceae) True Leaves than on Phyllodes
Figure 1. Acacia koa displaying both phyllodes and true leaves. Photo taken by K.E. Barton, Waimea Valley, Oahu, June 2013.
Figure 11 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 11. Sheet bearing the lectotype of Ligustrum lucidum W.T.Aiton from the herbarium of the Natural History Museum (BM). Inset top centre: annotations from back of sheet. © Natural History Museum, London.
Figure 12 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 12. The lectotype of Rottboellia biflora Roxb., and hence Oropetium roxburghianum (Schult.) S.M.Phillips. Icones Roxburghianae 2112 in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew.
Figure 4 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 4. The lectotype of Aerides radiata Roxb. and Cirrhopetalum roxburghii Lindl. (basionym of Bulbophyllum roxburghii (Lindl.) Rchb.f.) mounted lower left on the sheet. Icones Roxburghianae 2351 in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew.
Figure 1 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 1. The lectotype of Ardisia glandulosa Roxb., basionym of Amblyanthus glandulosus (Roxb.) A.DC. Icones Roxburghianae 2442 [2441 on drawing] in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew.
Figure 8 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 8. The lectotype of Dendrobium calceolum Roxb. Icones Roxburghianae 1651 in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew.
Figure 15 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 15. The lectotype of Asclepias longistigma Roxb., basionym of Toxocarpus longistigma (Roxb.) Steud. Icones Roxburghianae 619 in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew
Figure 3 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 3. The lectotype of Diploclinium roxburghii Miq., basionym of Begonia roxburghii (Miq.) A.DC. Icones Roxburghianae 2321 in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew.
Figure 10 in FROM ACACIA TO ZIZIPHUS: PLANT NAMES COMMEMORATING THE BOTANIST WILLIAM ROXBURGH
Figure 10. The lectotype of Ixora cuneifolia Roxb. Icones Roxburghianae 1785 in the collection of the Royal Botanic Gardens, Kew. Reproduced with the permission of the Board of Trustees of the Royal Botanic Gardens, Kew.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.