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17 results for “root:shoot ratio”
Arabidopsis HapMap screen for salt-induced changes in root:shoot ratio - data for all experimental batches
<p>Quantified root and shoot area of the 360 Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. The quantification of root system architecture was performed at University of Amsterdam, under supervision of Dr. Christa Testerink, and was used for the publication of Julkowska et al., 2017 (<a href="https://doi.org/10.1105/tpc.16.00680">https://doi.org/10.1105/tpc.16.00680</a>). The quantification of the root and shoot data was performed with custom developed tool at King Abdullah University of Science and Technology, during Magdalena Julkowska's Postdoc, under supervision of Dr. Mark Tester. </p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA4 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. </p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA5 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. </p>
Haplotype analysis of GWAS candidates identified for root:shoot ratio changes under salt stress in Arabidopsis
<p>The haplotype analysis was performed on 7 loci identified through GWAS by Magdalena Julkowska, while she was a PostDoc at KAUST, Saudi Arabia, workin in the lab of Dr. Mark Tester.</p>
Plantlet weight, including shoots and roots, and root/shoot ratio of Hylocereus polyrhizus 'Da Hong' grown on Murashige and Skoog (MS) medium supplemented with α-naphthaleneacetic acid (NAA) alone.
<p>Figure S2. Plantlet weight, including shoots and roots, and root/shoot ratio of <em>Hylocereus polyrhizus</em> ‘Da Hong’ grown on Murashige and Skoog (MS) medium supplemented with α-naphthaleneacetic acid (NAA) alone. Treatment: CS, control; TS01, 0.05 mg/L NAA; TS02, 0.10 mg/L NAA; TS03, 0.20 mg/L NAA. Mean ± SE (n = 3, 5 segments per replicate). Means followed by different letters near the column and circle are significantly different at <em>p </em>= 0.05 using Fisher’s protected LSD test.</p>
Root:shoot ratio GWAS Arabidopsis 4M SNP mapping
<p>The Genome Wide Association Study output files mapped using the root:shoot ratio data collected on Arabidopsis HapMap population. The GWAS was run using the ASReml script as described in Awlia et al., 2021 (<a href="https://doi.org/10.1111/tpj.15310">https://doi.org/10.1111/tpj.15310</a>). The GWAS analysis was performed by Magdalena Julkowska at King Abdullah University during her postdoc in the group of Dr. Mark Tester. </p>
Root:shoot ratio GWAS Arabidopsis 250k SNP mapping
<p>The Genome Wide Association Study output files mapped using the root:shoot ratio data collected on Arabidopsis HapMap population. The GWAS was run using the ASReml script as described in Awlia et al., 2021 (<a href="https://doi.org/10.1111/tpj.15310">https://doi.org/10.1111/tpj.15310</a>). The GWAS analysis was performed by Magdalena Julkowska at King Abdullah University during her postdoc in the group of Dr. Mark Tester. </p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA1 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data was collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. </p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA2 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. </p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA7 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. </p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA3 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink.</p>
Arabidopsis HapMap screen for salt-induced changes in root architecture and root:shoot ratio - images BA6 experiment
<p>Images of scanned agar plates collected for Arabidopsis accessions exposed to salt stress / control treatment. The data were collected during PhD of Magdalena Julkowska at University of Amsterdam, under supervision of Dr. Christa Testerink. </p>
Species-specific root-shoot ratios in a diverse grassland community
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Data from: Improved estimates of biomass expansion factors and root-to-shoot ratios: An approach for different forest types across a climatic gradient in Brazil
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Data from: Root:shoot ratio in developing seedlings: how seedlings change their allocation in response to seed mass and ambient nutrient supply
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Climate shifts root: shoot ratio pattern by altering plant functional group on Tibetan vs. Inner Mongolian Plateaus
<p><strong>Title:</strong> Climate shifts root: shoot ratio pattern by altering plant functional group in alpine vs temperate grasslands on both Tibetan and Inner Mongolian Plateaus</p> <p>by Wu<em> et al</em>.</p> <p><strong>Study areas and sample sites:</strong></p> <p>Environmental and ecological surveys were conducted along a temperate grassland transect in Inner Mongolian Plateau and an alpine grassland transect in Tibetan Plateau in China, at ends of the plant growth peak growing season from 2017 to 2020. We laid out 54 sample sites along the two broad ranges of geographic transects on the two plateaus, with 3-5 sample plots at each sample site (a total of 215 plots).</p>
Climate shifts root: shoot ratio pattern by altering plant functional group on Tibetan vs. Inner Mongolian Plateaus
<p>Environmental and ecological surveys were conducted along a temperate grassland transect in Inner Mongolian Plateau and an alpine grassland transect in Tibetan Plateau in China, at ends of the plant growth peak growing season from 2017 to 2020. We laid out 54 sample sites along the two broad ranges of geographic transects on the two plateaus, with 3-5 sample plots at each sample site (a total of 215 plots).</p>
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