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The intensity and frequency of precipitation events are predicted to change over the coming decades. For many areas, longer periods without rainfall are expected. We investigated the importance of irrigation frequency under water deficit conditions for growth, physiology and chemistry of wheat (<...

2020-09-23 | MTBLS1821 | MetaboLights
An TMT-based quantitative crotonylome analysis was performed on the crotonylated proteins enriched from the chloroplast extracts of the normal and salt-treated wheat seedling leaves by using affinity purification and LC-MS/MS. The crotonylated peptides from wheat chloroplast extracts were enriched b...
ORGANISM(S): Triticum aestivum (Wheat) 
2023-01-18 | PXD033662 | Pride
The integrative physiological and large-scale quantitative proteomic analysis of wheat chloroplast under salt and polyethylene glycol (PEG)-induced drought stresses by using label-free quantitative technique. We aim to reveal the underlying synergistic responsive mechanisms of wheat chloroplast prot...
ORGANISM(S): Triticum aestivum (Wheat) 
2021-09-09 | PXD019453 | Pride
Transcript changes in response to low temperature Total RNA for RNA-seq analysis were extracted from wheat leaf tissues with three biological replicates for each growth condition.
ORGANISM(S): Triticum aestivum 
Salinity stress in wheat affects physiological and biochemical parameters in tissues that alter plant development and ultimately lower crop yield. Shoot tissues are the most sensitive to salinity in wheat plants and accumulate salt over time through the transpiration stream. Rising NaCl concentratio...
ORGANISM(S): Triticum aestivum (Wheat) 
2025-05-07 | PXD059765 | Pride
This study aimed at decrypting the transcriptomic response of 2 months-old grown tender wheat (cv Chinese Spring) to a the Xanthomonas translucens pathogen infection by infiltration. The response was monitored by RNAseq 24h post leaf clipping. Triticum aestivum cv. Chinese Spring plants were mainta...
ORGANISM(S): Triticum aestivum 
Perturbance of chloroplast proteins is a major cause of photosynthesis inhibition under drought stress. Exogenous application of 5-aminolevulinic acid (ALA) mitigates the damages caused by drought stress protecting plant growth and development, but the regulatory mechanism behind was still obscure. ...
ORGANISM(S): Triticum Aestivum 
2018-12-10 | PXD017528 |
Genomics
Wheat Chloroplast genome sequencing
Background Maintaining global food security in the context of climate changes is an important challenge in the next century. Improving abiotic stress tolerance of major crops, like wheat, can contribute to this goal. Therefore, new genes improving tolerance to abiotic stresses, like drought, are nee...
ORGANISM(S): Triticum aestivum 
2023-03-08 | GSE226842 | GEO
This study compared the photosynthetic performance and the global gene expression of the winter hardy wheat Triticum aestivum cv Norstar grown under non-acclimated (NA) or cold-acclimated (CA) condition at either ambient CO2 or elevated CO2 (EC). CA Norstar maintained comparable light saturated and ...
ORGANISM(S): Triticum aestivum 
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