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Plant growth promoting bacteria (PGPB) might be an alternative to increase nitrogenous use efficiency (NUE) in important crops such wheat. Azospirillum brasilense is one of the most promising PGPB and wheat roots colonized by Azospirillum brasilense is a good model to investigate the molecular basis...
ORGANISM(S): Triticum aestivum 
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 
An untargeted metabolomics study was performed on wheat plants, including the wild-type cultivar Fielder, TaPDK1-overexpression (TaPDK1-OE) lines, and pdk1 mutant lines. Plants were grown under either normal conditions (control groups) or exposed to alkaline salt stress for 1 or 3 days (experimental...
2026-04-26 | MTBLS14380 | MetaboLights
We monitored by RNAseq the transcriptomic response of roots and leaves of Triticum aestivum cv chinese Spring during a long term interaction with Funneliformis mossae (2 months) with or without a pathogen infection by infiltration of Xanthomonas translucens CFBP 2054. The control condition of roots ...
ORGANISM(S): Triticum aestivum 
Plant material consisted of synthetic hexaploid wheat germplasm into the ‘Opata’ background (‘Altar 84/ Aegilops squarrosa (TAUS)//Opata’) . Plants were grown at a density of 9-11 individuals per 20cm x 10cm (diameter x height) plastic pot containing 1500g well-rinsed Turface MVP® medium (Profile...
ORGANISM(S): Triticum aestivum 
In the field, abiotic stresses are rarely applied individually. Crops are often subjected to a combination of stresses. To date, no study has been performed on the proteomic investigation of the response of common wheat to a combination of drought and cold stresses. In this study, wheat seedlings ex...
ORGANISM(S): Triticum aestivum (Wheat) 
2018-05-17 | PXD004396 | Pride
To improve our understanding of the organization and regulation of the wheat gene space, we established the first transcription map of a wheat chromosome (3B) by hybridizing the newly developed INRA GDEC Triticum aestivum NimbleGen 12x40k unigenes microarray with BAC pools from a new version of the ...
ORGANISM(S): Triticum aestivum 
We studied transcriptional regulations under drought stress of wheat roots in genotype "Opata" over two biological replicates. We imposed severe drought stress down to nearly permanent wilting point and flash frozen the roots of opata.
ORGANISM(S): Triticum aestivum 
Background: Heavy metal cadmium (Cd) is a common environmental pollutant in soils, which has an negative impacts on crop growth and development. At present, cadmium has become a major soil and water heavy metal pollutant, which not only causes permanent and irreversible health problems for humans, b...
ORGANISM(S): Triticum aestivum (Wheat) 
2020-03-30 | PXD018179 | Pride

The goal of this study is to compare the metabolic response of plants grown in soils suppressive or conducive to wheat crown rot (caused by Fusarium graminearum) and inoculated or not with F. graminearum. This dataset contains LC-QTOF-MS-based untargeted metabolomics data from t...

2026-02-17 | MTBLS13915 | MetaboLights
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