Proteomics

Dataset Information

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Thioredoxins regulate light acclimation of the proteome in Arabidopsis


ABSTRACT: In this study we used proteomics, metabolomics and reverse genetics to investigate how different light environmental factors such as intensity or variability affect long-term and short-term acclimation responses of Arabidopsis and the importance of the chloroplast redox network in their regulation.

INSTRUMENT(S): Q Exactive Plus

ORGANISM(S): Arabidopsis Thaliana (mouse-ear Cress)

TISSUE(S): Rosette

SUBMITTER: Dejan Dziubek  

LAB HEAD: Peter Geigenberger

PROVIDER: PXD045763 | Pride | 2024-02-05

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
MQOutput_Database_Param.7z Other
Sample_List.csv Csv
checksum.txt Txt
raw_files.7z Other
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Publications

NTRC and thioredoxins m1/m2 underpin the light acclimation of plants on proteome and metabolome levels.

Dziubek Dejan D   Poeker Louis L   Siemitkowska Beata B   Graf Alexander A   Marino Giada G   Alseekh Saleh S   Arrivault Stéphanie S   Fernie Alisdair R AR   Armbruster Ute U   Geigenberger Peter P  

Plant physiology 20240101 2


During photosynthesis, plants must manage strong fluctuations in light availability on different time scales, leading to long-term acclimation and short-term responses. However, little is known about the regulation and coordination of these processes and the modulators involved. In this study, we used proteomics, metabolomics, and reverse genetics to investigate how different light environmental factors, such as intensity or variability, affect long-term and short-term acclimation responses of A  ...[more]

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