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Identification of NaCl stress-responsive apoplastic proteins in rice shoot stems by 2D-DIGE.


ABSTRACT: Plants have evolved sophisticated systems to cope with adverse environmental conditions such as cold, drought, and salinity. Although a number of stress response networks have been proposed, the role of plant apoplast in plant stress response has been ignored. To investigate the role of apoplastic proteins in the salt stress response, 10-day old rice plants were treated with 200mM NaCl for 1, 6 or 12h, and the soluble apoplast proteins of rice shoot stems were extracted for differential analysis, compared with untreated controls, by 2-D DIGE saturation labeling techniques. One hundred twenty-two significantly changed spots were identified by LC-MS/MS, and 117 spots representing 69 proteins have been identified. Of these proteins, 37 are apoplastic proteins according to the bioinformatic analysis. These proteins are mainly involved in the processes of carbohydrate metabolism, oxido-reduction, and protein processing and degradation. According to their functional categories and cluster analysis, a stress response model of apoplastic proteins has been proposed. These data indicate that the apoplast is important in plant stress signal reception and response.

SUBMITTER: Song Y 

PROVIDER: S-EPMC3107904 | biostudies-literature | 2011 Jun

REPOSITORIES: biostudies-literature

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Identification of NaCl stress-responsive apoplastic proteins in rice shoot stems by 2D-DIGE.

Song Yun Y   Zhang Cuijun C   Ge Weina W   Zhang Yafang Y   Burlingame Alma L AL   Guo Yi Y  

Journal of proteomics 20110321 7


Plants have evolved sophisticated systems to cope with adverse environmental conditions such as cold, drought, and salinity. Although a number of stress response networks have been proposed, the role of plant apoplast in plant stress response has been ignored. To investigate the role of apoplastic proteins in the salt stress response, 10-day old rice plants were treated with 200mM NaCl for 1, 6 or 12h, and the soluble apoplast proteins of rice shoot stems were extracted for differential analysis  ...[more]

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