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Na2CO3-responsive Photosynthetic and ROS Scavenging Mechanisms in Chloroplasts of Alkaligrass Revealed by Phosphoproteomics

摘要Alkali-salinity exerts severe osmotic, ionic, and high-pH stresses to plants. To under-stand the alkali-salinity responsive mechanisms underlying photosynthetic modulation and reactive oxygen species (ROS) homeostasis, physiological and diverse quantitative proteomics analyses of alkaligrass (Puccinellia tenuiflora) under Na2CO3 stress were conducted. In addition, Western blot,real-time PCR, and transgenic techniques were applied to validate the proteomic results and test the functions of the Na2CO3-responsive proteins. A total of 104 and 102 Na2CO3-responsive proteins were identified in leaves and chloroplasts, respectively. In addition, 84 Na2CO3-responsive phospho-proteins were identified, including 56 new phosphorylation sites in 56 phosphoproteins from chloro-plasts, which are crucial for the regulation of photosynthesis, ion transport, signal transduction, and energy homeostasis. A full-length PtFBA encoding an alkaligrass chloroplastic fructose-bisphosphate aldolase (FBA) was overexpressed in wild-type cells of cyanobacterium Synechocystis sp. Strain PCC 6803, leading to enhanced Na2CO3 tolerance. All these results indicate that thermal dissipation, state transition, cyclic electron transport, photorespiration, repair of pho-tosystem (PS) Ⅱ, PSI activity, and ROS homeostasis were altered in response to Na2CO3 stress, which help to improve our understanding of the Na2CO3-responsive mechanisms in halophytes.

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作者单位 Development Center of Plant Germplasm Resources,College of Life and Environmental Sciences,Shanghai Normal University,Shanghai 200234,China;Alkali Soil Natural Environmental Science Center,Northeast Forestry University,Key Laboratory of Saline-alkali Vegetation Ecology Restoration in Oil Field,Ministry of Education,Harbin 150040,China;State Key Laboratory of Subtropical Silviculture,Zhejiang A&F University,Hangzhou 311300,China [1] Development Center of Plant Germplasm Resources,College of Life and Environmental Sciences,Shanghai Normal University,Shanghai 200234,China [2] Alkali Soil Natural Environmental Science Center,Northeast Forestry University,Key Laboratory of Saline-alkali Vegetation Ecology Restoration in Oil Field,Ministry of Education,Harbin 150040,China [3] Institute of Botany,Chinese Academy of Sciences,Beijing 100093,China [4] AB Sciex Asia Pacific Application Support Center,Shanghai 200233,China [5] Shanghai Center for Plant Stress Biology,Chinese Academy of Sciences,Shanghai 201602,China [6] School of Life Sciences,Fudan University,Shanghai 200433,China [7] Institute of Plant Stress Biology,State Key Laboratory of Cotton Biology,Department of Biology,Henan University,Kaifeng 475004,China [8] Development Center of Plant Germplasm Resources,College of Life and Environmental Sciences,Shanghai Normal University,Shanghai 200234,China;Department of Biology,Genetics Institute,Plant Molecular and Cellular Biology Program,Interdisciplinary Center for Biotechnology Research,University of Florida,Gainesville,FL 32610,USA [9] Development Center of Plant Germplasm Resources,College of Life and Environmental Sciences,Shanghai Normal University,Shanghai 200234,China;Alkali Soil Natural Environmental Science Center,Northeast Forestry University,Key Laboratory of Saline-alkali Vegetation Ecology Restoration in Oil Field,Ministry of Education,Harbin 150040,China [10]
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发布时间 2021-03-04(万方平台首次上网日期,不代表论文的发表时间)
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