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203 results for “water stress”
Figure 2 in Antioxidant status and their enhancements strategies for water stress tolerance in chickpea
Figure 2. (a) Influence of exogenous application of osmoprotectants on relative growth rate (g g-1 day-1) of chickpea genotypes in Bahawalpur; (b) Influence of exogenous application of osmoprotectants on relative growth rate (g g-1 day-1) of chickpea genotypes in Cholistan. Whereas D1= well watered; D2= Drought at flowering+ pod formation + grain filling stage; D3= Drought at flowering stage; DAS, Days after sowing.
Fig. 4 in Oxidative stress biomarkers in the African sharptooth catfish, Clarias gariepinus, associated with infections by adult digeneans and water quality
Fig. 4. Monthly variation of stress biomarkers measured in the liver of Clarias gariepinus and body condition. A– Total protein (TP); B– Catalase (CAT); C– Glutathione reduced (GSH); D– Lipid peroxidation (LPX); E– Superoxide dismutase (SOD); F– body condition (KN). NC – no collection was performed; BD - below detection.
Fig. 3 in Oxidative stress biomarkers in the African sharptooth catfish, Clarias gariepinus, associated with infections by adult digeneans and water quality
Fig. 3. Monthly variation of prevalence (%), mean intensity and mean abundance. A– Masenia nkomatiensis; B– Glossidium pedatum. NC – no collection was performed.
Table 1 in Exogenous application of polyamines alleviates water stress-induced oxidative stress of Rosa damascena Miller var. trigintipetala Dieck
<p><b>Table 1</b> Effects of foliar application of spermine (Spm) and spermidine (Spd) on growth characters of <i>Rosa damascena</i> Miller var. <i>trigintipetala</i> Dieck plant grown under water stress (50% FC) or non-stress (100%FC) conditions.</p><table><tbody><tr><th>Treatments</th><th>Plant height (cm)</th><th>Plant FW (g)</th><th>Plant DW (g)</th></tr></tbody><tbody><tr><th>100% FC</th><td>Control</td><td>47.10 ± 0.85b</td><td>37.80 ± 0.72b</td><td>12.68 ± 0.45b</td></tr><tr><td>0.5 mM Spm</td><td>50.78 ± 0.38a</td><td>45.77 ± 1.66a</td><td>17.82 ± 0.64a</td></tr><tr><td>0.5 mM Spd</td><td>51.21 ± 1.07a</td><td>44.71 ± 0.50a</td><td>16.59 ± 0.52a</td></tr><tr><th>50% FC</th><td>Control</td><td>35.75 ± 0.66d</td><td>28.73 ± 0.64e</td><td>10.35 ± 0.59d</td></tr><tr><td>0.5 mM Spm</td><td>45.45 ± 0.78b</td><td>35.45 ± 1.72c</td><td>12.78 ± 0.27b</td></tr><tr><td>0.5 mM Spd</td><td>43.78 ± 0.70c</td><td>33.67 ± 2.08d</td><td>12.38 ± 0.15b</td></tr></tbody></table><p>Values are means ± S.D. (<i>n =</i> 8). Means within a column with different letters are significantly different from each other according to Duncan multiple range test at <i>P =</i> 0.05.</p>
Data from: Increasing the germination envelope under water stress improves seedling emergence in two dominant grass species across different pulse rainfall events
1. Demographic recruitment processes, such as seed germination and seedling emergence, are critical transitional phases to the re-establishment of degraded plant populations, but often fail due to rainfall not supporting plant requirements. Using species from the widespread arid Australian perennial grass genus Triodia, we investigated the interactions of seeds in different dormancy states and their functional germination envelope in response to water stress after simulated pulse rainfall events. 2. Seed dormancy was alleviated in Triodia species to varying degrees by wet/ dry cycling or by removing floret structures from seeds. The seeds were then exposed to different rainfall frequency and quantity events mimicking the 25th, median, 75th and 95th percentile rainfall events found in natural habitats for the study species in the north-west Australian arid zone. 3. Under 95th percentile rainfall conditions recruitment was highest, but still limited to 35% germination and 10% emergence of cleaned seeds (i.e. the least dormant state evaluated). This was related to the functional germination envelope as indicated by more negative base water potential thresholds (Ψb50) for cleaned seeds (≥ -0.33 MPa) compared to intact florets (≥ -0.26 MPa). As a result the maximum cumulative time where soil water potentials were optimal for germination (Ψsoil ≥ Ψb50) were 1.6–2.6 times longer for cleaned seeds in large frequent rainfall events when compared to intact florets. Furthermore, seed dormancy, that usually prolongs seed survival, was linked to a short-term reduction in seed viability, which may further reduce recruitment rates. 4. Synthesis and applications. Our findings indicate that large frequent rainfall events raised soil water potentials above critical thresholds for germination and are important for successful plant establishment. If recruitment bottlenecks are a result of seed dormancy and variable rainfall for arid grass species, then this study shows benefits for alleviating seed dormancy prior to seeding in restoration sites, as this increases the environmental envelope for germination.
Water Stress Data and Code
<p>Data and code to support the GTAPDyn/W paper and project.</p>
Comparison Between Photobiomodulation Therapy (PBMT) and a Cold-Water Immersion (CWI) in Recovery Soccer Player: Analysis of Biochemical Markers of Recovery and Muscular Oxidative Stress.
ClinicalTrials.gov study NCT03593733. IPD Sharing: UNDECIDED. Countries: 0. Publications: 10.
Data from: Global change impacts on arid zone ecosystems: Seedling establishment processes are threatened by temperature and water stress
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Data from: Whole-plant metabolic allocation under water stress
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Data from: Increasing the germination envelope under water stress improves seedling emergence in two dominant grass species across different pulse rainfall events
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Data from: A global analysis of plant recovery performance from water stress
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Belowground interactions differ between sympatric desert shrubs under water stress
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Water stress and insect herbivory interactively reduce crop yield while the insect pollination benefit is conserved
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Seed dispersal by wind decreases when plants are water-stressed, potentially counteracting species coexistence and niche evolution
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Alternative Developmental and Transcriptomic Responses to Host Plant Water Stress in a Butterfly metapopulation
GEO Series GSE159376. Melitaea cinxia. 78 samples. Type: Expression profiling by high throughput sequencing.
Transcriptional profiling of Zea mays 10 DAP(days after pollination) kernels : water stress vs well-watered control
GEO Series GSE11568. Zea mays. 16 samples. Type: Expression profiling by array.
Transcriptome sequencing of Eucalyptus camaldulensis seedlings subjected to water stress reveals functional single nucleotide polymorphisms and genes under selection.
GEO Series GSE39369. Eucalyptus camaldulensis. 12 samples. Type: Expression profiling by high throughput sequencing.
Control, low water potential (drought) stress and stress release transcriptome analysis of mutants impaired in proline (Delta1-pyrroline-5-carboxylate synthase1-4; p5cs1-4) or abscisic acid (aba2-1) s
GEO Series GSE75933. Arabidopsis thaliana. 9 samples. Type: Expression profiling by high throughput sequencing.
BL-HiC analysis of water avoidance stressed BALB/c mice colon epithelial cells
GEO Series GSE233649. Mus musculus. 4 samples. Type: Other.
Daytime soybean transcriptome fluctuations during water deficit stress
GEO Series GSE69469. Glycine max. 36 samples. Type: Expression profiling by high throughput sequencing.
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OpenNeuro
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