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30 results for “shade avoidance”
Figure 5 in Shade avoidance cues reduce Beto vulgoris growth
Figure 5. Effect of reflected light from grass and colored plastic mulch on leaf number of Beto vulgoris varieties in at 90 d after planting in 2014 field study, Laramie, WY. Bars represent 95% confidence intervals of the estimates.
Figure 6 in Shade avoidance cues reduce Beto vulgoris growth
Figure 6. Effect of reflected light from grass on sugar beet leaf number in 2015 greenhouse study, Laramie,WY.Regression equation and parameter estimates are provided in Table 2.
Figure 4 in Shade avoidance cues reduce Beto vulgoris growth
Figure 4. Effect of reflected light from bare soil, grass, and colored plastic mulch on leaf number of Beto vulgoris varieties in 2014 field study, Laramie, WY. Regression equation and parameter estimates are provided in Table 1.
Figure 3 in Shade avoidance cues reduce Beto vulgoris growth
Figure 3. Effect of reflected light from colored plastic mulch on leaf number of Beto vulgoris varieties in 2013 field study, Laramie, WY. Regression equation and parameter estimates are provided in Table 1.
Figure 2 in Shade avoidance cues reduce Beto vulgoris growth
Figure 2. Greenhouse experiment setup. Each tray was one replicate (with 8 pseudo-replicates) and 28 × 58 cm in size. Each sugar beet was surrounded on all sides by cones either containing potting mix (bare-soil treatment, left) or planted with Kentucky bluegrass (grass treatment, right). Planting into separate cones ensured there was no belowground interaction between sugar beet and grass.
Figure 1 in Shade avoidance cues reduce Beto vulgoris growth
Figure 1. Illustration of the grass treatment used in the field experiment showing the top view (left) and a cross-section (right); modeled after Green-Tracewicz et al. (2011). Beto vulgoris was planted into the center ring and was allowed to grow using the full depth (35 cm) of the 21-L pail. Grass roots were constrained to the top 7.5 cm and outer 9 cm of the pail, and were isolated from the B. vulgoris roots using plastic. Grass was clipped as needed to minimize any direct shading of the B. vulgoris plant in the center. For the soil treatment, the design was the same, except no grass was planted into the potting media in the outer ring. Drawing by Jessica Perry.
Data from: Evolution of shade tolerance is associated with attenuation of shade avoidance and reduced phenotypic plasticity in North American milkweeds
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Epigenetic reprogramming orchestrates transcriptional responses in shade avoidance memory of Arabidopsis
GEO Series GSE226745. Arabidopsis thaliana. 24 samples. Type: Expression profiling by high throughput sequencing.
Global transcriptome analysis identifies shade avoidance-related genes regulated by BBX24 in Arabidopsis thaliana
GEO Series GSE64755. Arabidopsis thaliana. 8 samples. Type: Expression profiling by array.
Tomato Shade Avoidance: Unraveling Internode Elongation and Hormonal Harmony
GEO Series GSE255611. Solanum lycopersicum. 86 samples. Type: Expression profiling by high throughput sequencing.
The small molecule Pifithrin–α deactivates ETR1 to repress shade avoidance in Arabidopsis
GEO Series GSE272795. Arabidopsis thaliana. 13 samples. Type: Expression profiling by high throughput sequencing.
ELONGATED HYPOCOTYL (HY5) AND HY5 HOMOLOG (HYH) maintain shade avoidance suppression in sunlight
GEO Series GSE192469. Arabidopsis thaliana. 24 samples. Type: Expression profiling by high throughput sequencing.
RNA-seq studies using wheat PHYTOCHROME B and PHYTOCHROME C mutants reveal shared and specific functions in the regulation of flowering and shade-avoidance pathways
GEO Series GSE79049. Triticum turgidum subsp. durum. 32 samples. Type: Expression profiling by high throughput sequencing.
Effect of bZIP59 on transcriptional regulation during shade avoidance responses in Arabidopsis
GEO Series GSE227154. Arabidopsis. 12 samples. Type: Expression profiling by high throughput sequencing.
Arabidopsis shade avoidance gene expression in adult plants
GEO Series GSE66967. Arabidopsis thaliana. 8 samples. Type: Expression profiling by high throughput sequencing.
Arabidopsis thaliana analysis of the shade avoidance response in Col-0, rev5, and wox4 mutants
GEO Series GSE137009. Arabidopsis thaliana. 12 samples. Type: Expression profiling by high throughput sequencing.
PHYTOCHROME-INTERACTING FACTOR 7 and RELATIVE OF EARLY FLOWERING 6 act in shade avoidance memory in Arabidopsis
GEO Series GSE268785. Arabidopsis thaliana. 12 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
Transcriptional profiling of leaf blades and petioles subjected to shade avoidance syndrome
GEO Series GSE17845. Arabidopsis thaliana. 18 samples. Type: Expression profiling by array.
De-phosphorylation of bZIP59 by PP2A ensures appropriate shade avoidance response in Arabidopsis
GEO Series GSE236101. Arabidopsis. 8 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
Root growth in Orchid Dendrobium cv. Sonia requires shade avoidance response of PHYB along with regulation of auxin pathway genes
GEO Series GSE252123. Dendrobium hybrid cultivar. 1 samples. Type: Expression profiling by high throughput sequencing.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.