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      Integrated physiological and proteomic analysis reveals underlying response and defense mechanisms of Brachypodium distachyon seedling leaves under osmotic stress, cadmium and their combined stresses.

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          Abstract

          Drought stress, a major abiotic stress, commonly occurs in metal-contaminated environments and affects crop growth and yield. In this study, we performed the first integrated phenotypic, physiological, and proteomic analysis of Brachypodium distachyon L. seedling leaves under polyethylene glycol (PEG) mock osmotic stress, cadmium (Cd2+), and their combined stresses. Combined osmotic and Cd2+ stress had more significant effects than each individual stress on seedling growth, and the physiological traits and ultrastructures of leaves. Totally 117 differentially accumulated protein (DAP) spots detected by two-dimensional difference gel electrophoresis (2D-DIGE) were identified, and representing 89 unique proteins under individual and combined stresses. These DAPs were involved in photosynthesis/respiration (34%), energy and carbon metabolism (21%), stress/defense/detoxification (13%), protein folding and degradation (12%), and amino acid metabolism (7%). Principal component analysis (PCA) revealed that DAPs from the Cd2+ and combined stresses grouped much closer than those from osmotic stress, indicating Cd2+ and combined stresses resulted in more changes to the leaf proteome than osmotic stress alone. Protein-protein interaction analyses showed that a 14-3-3 centered sub-network could play important roles in responses to abiotic stresses. An overview pathway of proteome metabolic changes in Bd21 seedling leaves under combined stresses is proposed, representing a synergistic responsive network and underlying response and defense mechanisms.

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          Author and article information

          Journal
          J Proteomics
          Journal of proteomics
          Elsevier BV
          1876-7737
          1874-3919
          Jan 06 2018
          : 170
          Affiliations
          [1 ] College of Life Science, Capital Normal University, 100048 Beijing, China. Electronic address: HendyCZW@aliyun.com.
          [2 ] College of Life Science, Capital Normal University, 100048 Beijing, China.
          [3 ] State Key Laboratory of Earth Surface Processes and Resource Ecology, College of Global Change and Earth System Science, Beijing Normal University, 100875 Beijing, China. Electronic address: yanxing1988717@163.com.
          [4 ] College of Life Science, Capital Normal University, 100048 Beijing, China. Electronic address: yanym@cnu.edu.cn.
          Article
          S1874-3919(17)30328-7
          10.1016/j.jprot.2017.09.015
          28986270
          4a689586-3526-49e3-8ae3-02218c071fd3
          History

          qRT-PCR,Proteome,Combined stresses,Cd(2+),Brachypodium distachyon L. PEG

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