Proteomics

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Proteomic analysis reveals differential of wheat (Triticum aestivum L.) to oxygen deficiency stress


ABSTRACT: The responses to waterlogging stress of two wheat genotypes including one sensitive and one resistant were systematic investigated. The labeling-based quantitative proteomic analysis was conducted in parallel on these two genotypes in responding to waterlogging for 1-3 days, 951 and 320 differentially expressed proteins (DEP) were detected in the during treat, and 270 DEPs were shared. The results might help to reveal the regulatory mechanism of waterlogging stress tolerance in wheat.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Triticum Aestivum (wheat)

TISSUE(S): Root

SUBMITTER: Dongli He  

LAB HEAD: Hubei Collaborative Innovation Center for Grain Industry/ Research Center of Crop Stresses Resistance Technologies, Yangtze University, Jingzhou 434025, China;

PROVIDER: PXD008162 | Pride | 2019-11-12

REPOSITORIES: Pride

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Proteomic analysis reveals response of differential wheat (Triticum aestivum L.) genotypes to oxygen deficiency stress.

Pan Rui R   He Dongli D   Xu Le L   Zhou Meixue M   Li Chengdao C   Wu Chu C   Xu Yanhao Y   Zhang Wenying W  

BMC genomics 20190118 1


<h4>Background</h4>Waterlogging is one of the main abiotic stresses that limit wheat production. Quantitative proteomics analysis has been applied in the study of crop abiotic stress as an effective way in recent years (e.g. salt stress, drought stress, heat stress and waterlogging stress). However, only a few proteins related to primary metabolism and signal transduction, such as UDP - glucose dehydrogenase, UGP, beta glucosidases, were reported to response to waterlogging stress in wheat. The  ...[more]

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