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965 results for “Artemisia”
Herbarium specimen image of Artemisia norvegica Fries, part of the collection of Royal Botanic Garden Edinburgh
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
Herbarium specimen image of Artemisia vulgaris L., part of the collection of Natural History Museum, University of Tartu
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
Herbarium specimen image of Artemisia dracunculus L., part of the collection of Natural History Museum, University of Tartu
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
Herbarium specimen image of Artemisia vulgaris L., part of the collection of Natural History Museum, University of Tartu
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- A lossless TIFF image from which the JPEG image has been derived.
Data from: Effect of altitude on volatile organic and phenolic compounds of artemisia brevifolia wall ex Dc. from the Western Himalayas
<p>Adaptation to changing environmental conditions is a driver of plant diversification. Elevational gradients offer a unique opportunity for investigating adaptation to a range of climatic conditions. The use of specialized metabolites as volatile and phenolic compounds is a major adaptation in plants, affecting their reproductive success and survival by attracting pollinators and protecting themselves from herbivores and other stressors. The wormseed <em>Artemisia brevifolia</em> can be found across multiple elevations in the Western Himalayas, a region that is considered a biodiversity hotspot and is highly impacted by climate change. This study aims at understanding the volatile and phenolic compounds produced by <em>A. brevifolia </em>in the high elevation cold deserts of the Western Himalayas with the view to understanding the survival strategies employed by plants under harsh conditions. Across four sampling sites with different elevations, polydimethylsiloxane (PDMS) sampling and subsequent GCMS analyses showed that the total number of volatile compounds in the plant headspace increased with elevation and that this trend was largely driven by an increase in compounds with low volatility, which might improve the plant's resilience to abiotic stress. HPLC analyses showed no effect of elevation on the total number of phenolic compounds detected in both young and mature leaves. However, the concentration of the majority of phenolic compounds decreased with elevation. As the production of phenolic defense compounds is a costly trait, plants at higher elevations might face a trade-off between energy expenditure and protecting themselves from herbivores. This study can therefore help us understand how plants adjust secondary metabolite production to cope with harsh environments and reveal the climate adaptability of such species in highly threatened regions of our planet such as the Himalayas.</p>
Artemisia pollen dataset for exploring the potential ecological indicators in deep time
<p>To cover the maximum range of <em>Artemisia</em> pollen morphological variation, we provide a pollen dataset of 36 species from 9 clades and 3 outgroups of <em>Artemisia </em>constrained by the phylogenetic framework, containing 4018 original pollen photographs under LM and SEM, 9360 pollen morphological trait measurements, together with their 30858 source plant occurrences, and corresponding environmental factors. Here, we attempt to decipher the underlying causes of the long-standing disagreement in the palynological community on the correlation between <em>Artemisia</em> pollen and aridity by using this pollen dataset to recognize the different ecological implications of <em>Artemisia</em> pollen types.</p> <p>The <em>Artemisia</em> pollen dataset as designed is open and expandable for new pollen data from<em> Artemisia</em> worldwide in order to better serve the global environment assessment and refined reconstruction of vegetation in the geological past.</p>
Artemisia tripartita (Asteraceae) - twig - orientation of petioles
Image of Artemisia tripartita (Asteraceae) - twig - orientation of petioles
Artemisia tripartita (Asteraceae) - inflorescence - whole - unspecified
Image of Artemisia tripartita (Asteraceae) - inflorescence - whole - unspecified
Artemisia tripartita (Asteraceae) - inflorescence - lateral view of flower
Image of Artemisia tripartita (Asteraceae) - inflorescence - lateral view of flower
Artemisia tripartita (Asteraceae) - whole tree (or vine) - general
Image of Artemisia tripartita (Asteraceae) - whole tree (or vine) - general
Artemisia tripartita (Asteraceae) - bark - of a small tree or small branch
Image of Artemisia tripartita (Asteraceae) - bark - of a small tree or small branch
Artemisia tridentata (Asteraceae) - bark - of a small tree or small branch
Image of Artemisia tridentata (Asteraceae) - bark - of a small tree or small branch
Artemisia tridentata (Asteraceae) - leaf - whole upper surface
Image of Artemisia tridentata (Asteraceae) - leaf - whole upper surface
Artemisia tridentata (Asteraceae) - whole tree (or vine) - general
Image of Artemisia tridentata (Asteraceae) - whole tree (or vine) - general
Artemisia tripartita (Asteraceae) - leaf - whole upper surface
Image of Artemisia tripartita (Asteraceae) - leaf - whole upper surface
Artemisia tridentata (Asteraceae) - twig - orientation of petioles
Image of Artemisia tridentata (Asteraceae) - twig - orientation of petioles
Artemisia tridentata (Asteraceae) - whole tree (or vine) - general
Image of Artemisia tridentata (Asteraceae) - whole tree (or vine) - general
Artemisia tripartita (Asteraceae) - whole tree (or vine) - general
Image of Artemisia tripartita (Asteraceae) - whole tree (or vine) - general
Figure 1 in An investigation on the chloroplast and nuclear genomes of taxa belong to the subgenus Dracunculus (Bess.) Rydb. of Artemisia L. (Asteraceae) in Turkey
Figure 1. Geographic distribution of four species of the subgenus Dracunculus in Turkey (A. campestris (), A. marschalliana (), A. araratica () and A. scoparia () (Civelek et al., 2010, Kursat 2010).
Figure 5 in TiO nanoparticles and salinity stress in relation to artemisinin production and ADS and DBR2 expression in Artemisia absinthium L.
Figure 5. The effect of salinity stress and titanium dioxide nanoparticles on the amount of artemisinin in wormwood (the non–identical letters indicate significant difference based on Duncan test P≤ 0.05).
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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International Brain Laboratory public data
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OpenNeuro
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