Scientia Agricultura Sinica ›› 2012, Vol. 45 ›› Issue (12): 2339-2345.doi: 10.3864/j.issn.0578-1752.2012.12.001

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS •     Next Articles

Expression on Profiling of Rice PP2Ac Type Phosphatase Proteins in Seedlings Under Salt-stressed Conditions

 LIU  Zhao, JIA  Lin, JIA  Meng, GUAN  Ming-Li, CAO  Ying-Hao, LIU  Li-Juan, CAO  Zhen-Wei, LI  Li-Yun, LIU  Guo-Zhen   

  1. 1.河北农业大学生命科学学院,河北保定 071001
    2.中国科学院北京基因组研究所,北京 101300
  • Received:2012-01-04 Online:2012-06-15 Published:2012-02-20

Abstract: 【Objective】The protein expression profiling and the mechanism of rice salt-tolerance were studied.【Method】 The expression patterns of five rice phospatase 2A catalytic subunits (PP2Ac) in seedlings under salt-stressed conditions were surveyed by Western blotting via antibody-based proteomics strategy. 【Result】 The results indicated that the expression of OsPP2Ac-4 protein was up-regulated in salt-tolerant rice variety Lansheng, and the expressions of OsPP2Ac-2, OsPP2Ac-3 and OsPP2Ac-5 were up-regulated in salt-sensitive rice variety 9311, while the expression of OsPP2Ac-4 was down-regulated in 9311. The expression of PP2Ac proteins was stable and in a similar level for Lansheng and 9311 under normal growth conditions, but the abundance variations were occurred only under salt-stressed conditions. Based on the Massively Parallel Signature Sequencing (MPSS) data derived from salt-stressed rice seedlings, it was found that the transcription of OsPP2Ac-2, OsPP2Ac-3 and OsPP2Ac-5 were down-regulated by comparison with control seedlings without salt treatment.【Conclusion】Four salt stress-related rice PP2Ac proteins were identified.

Key words: rice (Oryza sativa L.), PP2Ac phosphatase, salt stress, Western blotting

[1] Arwish E, Testerink C, Khalil M, El-Shihy O, Munnik T. Phospholipid signaling responses in salt-stressed rice leaves. Plant Cell Physiology, 2009, 50(5): 986-997.

[2] Munns R. Genes and salt tolerance: Bringing them together. New Phytologist, 2005, 167(3): 645-663.

[3] Blakeslee J J, Zhou H W, Heath J T, Skottke K R, Barrios J A R, Liu S Y, DeLong A. Specificity of RCN1-mediated protein phosphatase 2A regulation in meristem organization and stress response in roots. Plant Physiology, 2007, 146(2): 539-553.

[4] 何新建, 陈建权, 张志刚, 张劲松, 陈受宜. 通过cDNA微列阵鉴定水稻(Oryza sativa L.)盐胁迫应答基因. 中国科学: C辑, 2002, 32(6): 488-493.

He X J, Chen J Q, Zhang Z G, Zhang J S, Chen S Y. Through the cDNA micro array appraisal rice (Oryza sativa L.) salt response genes. Scientia Sinica Vitae, 2002, 32(6): 488-493. (in Chinese)

[5] Li X J, Yang M F, Chen H, Qu L Q, Chen F, Shen S H. Abscisic acid pretreatment enhances salt tolerance of rice seedlings: Proteomic evidence. Biochimica et Biophysica Acta, 2010, 1804(4): 929-940.

[6] Ouyang S Q, Liu Y F, Liu P, Lei G, He S J, Ma B, Zhang W K, Zhang J S, Chen S Y. Receptor-like kinase OsSIK1 improves drought and salt stress tolerance in rice (Oryza sativa) plants. The Plant Journal, 2010, 62(2): 316-329.

[7] Cohen P. The structure and regulation of protein phosphatases. Annual Reviews Biochemistry, 1989, 58: 453-508.

[8] Kloeker S. Parallel purification of three catalytic subunits of the protein serine/threonine phosphatase 2A family (PP2AC, PP4C, and PP6C) and analysis of the interaction of PP2AC with alpha4 protein. Protein Expression and Purification, 2003, 31(1): 19-33.

[9] Shenolikar S, Nairn A C. Protein phosphatases: Recent progress. Advances in Second Messenger and Phosphoprotein Research, 1991, 23: 1-121.

[10] Luan S. Proteinphosphatases inplants. Annual Review of Plant Biology, 2003, 54(1): 63-92.

[11] Yu S, Lei H, Chang W, Soll D, Hong G. Protein phosphatase 2A: Identification in Oryza sativa of the gene encoding the regulatory A subunit. Plant Molecular Biology, 2001, 45(1): 107-112.

[12] Arino J, Perez-Callejon E, Cunillera N, Camps M, Posas F, Ferrer A. Protein phosphatases in higher plants: Multiplicity of type 2A phosphatases in Arabidopsis thaliana. Plant Molecular Biology, 1993, 21(3): 475-485.

[13] Casamayor A, Perez-Callejon E, Pujol G, Arino J, Ferrer A. Molecular characterization of a fourth isoform of the catalytic subunit of protein phosphatase 2A from Arabidopsis thaliana. Plant Molecular Biology, 1994, 26(1): 523-528.

[14] Yu R M, Zhou Y, Xu Z F, Chye M L, Kong R Y. Two genes encoding protein phosphatase 2A catalytic subunits are differentially expressed in rice. Plant Molecular Biology, 2003, 51(3): 295-311.

[15] Yu R M K, Wong M M L, Jack R W, Kong R Y C. Structure, evolution and expression of a second subfamily of protein phosphatase 2A catalytic subunit genes in the rice plant (Oryza sativa L.). Planta, 2005, 222(5): 757-768.

[16] 高倩竹, 骆震谷, 刘阁丽, 冯国信, 于贵珍, 刘国宁. 水稻品种资源的耐盐性鉴定. 作物品种资源, 1987, 3: 32-33.

Gao Q Z, Luo Z G, Liu G L, Feng G X, Yu G Z, Liu G N. Identification of rice variety resources of salt resistance. Variety Resources of Crops, 1987, 3: 32-33. (in Chinese)

[17] Odorico M, Pellequer J L. BEPITOPE: Predicting the location of continuous epitopes and patterns in proteins. Journal Molecular Recognition, 2003, 16(1): 20-22.

[18] 白  辉, 王宪云, 曹英豪, 李晓明, 李莉云, 陈  浩, 刘丽娟, 朱健辉, 刘国振. 水稻叶绿体蛋白质在生长发育过程中的表达研究. 生物化学与生物物理进展, 2010, 37(9): 988-995.

Bai H, Wang X Y, Cao Y H, Li X M, Li L Y, Chen H, Liu L J, Zhu J H, Liu G Z. Expression profiling of rice chloroplast proteins during growth and development. Progress in Biochemisty and Biophysics, 2010, 37(9): 988-995. (in Chinese)

[19] Wu Q, Hou M M, Li L Y, Liu L J, Hou Y X, Liu G Z. Induction of pathogenesis-related proteins in rice bacterial blight resistant gene Xa21-mediated interactions with Xanthomonas Oryzae pv. oryzae. Journal of Plant Pathology, 2011, 93(2): 455-459.

[20] Nakano M, Nobuta K, Vemaraju K, Tej S S, Skogen J W, Meyers B C. Plant MPSS databases: Signature-based transcriptional resources for analyses of mRNA and small RNA. Nucleic Acids Research, 2006, 34 (Database issue): D731- D735.

[21] Singh A, Giri J, Kapoor S, Tyagi A K, Pandey G K. Protein phosphatase complement in rice: Genome-wide identification and transcriptional analysis under abiotic stress conditions and reproductive development. BMC Genomics, 2010, 11(1): 435.

[22] Lee W J, Kim D U, Lee M Y, Choi K Y. Identification of proteins interacting with the catalytic subunit of PP2A by proteomics. Proteomics, 2007, 7(2): 206-214.

[23] 刘国振, 刘斯奇, 吴  琳, 徐宁志. 基于抗体的水稻蛋白质组学-开端与展望. 中国科学: 生命科学, 2011, 41(3): 173-177.

Liu G Z, Liu S Q, Wu L, Xu N Z. Antibody-based rice proteomics-the beginning and perspectives. Scientia Sinica Vitae, 2011, 41(3): 173-177. (in Chinese)
[1] HU YaLi,NIE JingZhi,WU Xia,PAN Jiao,CAO Shan,YUE Jiao,LUO DengJie,WANG CaiJin,LI ZengQiang,ZHANG Hui,WU QiJing,CHEN Peng. Effect of Salicylic Acid Priming on Salt Tolerance of Kenaf Seedlings [J]. Scientia Agricultura Sinica, 2022, 55(14): 2696-2708.
[2] ZHU ChunYan,SONG JiaWei,BAI TianLiang,WANG Na,MA ShuaiGuo,PU ZhengFei,DONG Yan,LÜ JianDong,LI Jie,TIAN RongRong,LUO ChengKe,ZHANG YinXia,MA TianLi,LI PeiFu,TIAN Lei. Effects of NaCl Stress on the Chlorophyll Fluorescence Characteristics of Seedlings of Japonica Rice Germplasm with Different Salt Tolerances [J]. Scientia Agricultura Sinica, 2022, 55(13): 2509-2525.
[3] LIU Chuang,GAO Zhen,YAO YuXin,DU YuanPeng. Functional Identification of Grape Potassium Ion Transporter VviHKT1;7 Under Salt Stress [J]. Scientia Agricultura Sinica, 2021, 54(9): 1952-1963.
[4] ZHANG GuiYun,ZHU JingWen,SUN MingFa,YAN GuoHong,LIU Kai,WAN BaiJie,DAI JinYing,ZHU GuoYong. Analysis of Differential Metabolites in Grains of Rice Cultivar Changbai 10 Under Salt Stress [J]. Scientia Agricultura Sinica, 2021, 54(4): 675-683.
[5] WANG Jie,WU XiaoYu,YANG Liu,DUAN QiaoHong,HUANG JiaBao. Genome-Wide Identification and Expression Analysis of ACA Gene Family in Brassica rapa [J]. Scientia Agricultura Sinica, 2021, 54(22): 4851-4868.
[6] SHAO MeiQi,ZHAO WeiSong,SU ZhenHe,DONG LiHong,GUO QingGang,MA Ping. Effect of Bacillus subtilis NCD-2 on the Growth of Tomato and the Microbial Community Structure of Rhizosphere Soil Under Salt Stress [J]. Scientia Agricultura Sinica, 2021, 54(21): 4573-4584.
[7] CHEN Yuan,CAI He,LI Li,WANG LinJie,ZHONG Tao,ZHANG HongPing. Alternative Splicing of TNNT3 and Its Effect on the Differentiation of MuSCs in Goat [J]. Scientia Agricultura Sinica, 2021, 54(20): 4466-4477.
[8] WANG Na,ZHAO ZiBo,GAO Qiong,HE ShouPu,MA ChenHui,PENG Zhen,DU XiongMing. Cloning and Functional Analysis of Salt Stress Response Gene GhPEAMT1 in Upland Cotton [J]. Scientia Agricultura Sinica, 2021, 54(2): 248-260.
[9] KONG YaLi,ZHU ChunQuan,CAO XiaoChuang,ZHU LianFeng,JIN QianYu,HONG XiaoZhi,ZHANG JunHua. Research Progress of Soil Microbial Mechanisms in Mediating Plant Salt Resistance [J]. Scientia Agricultura Sinica, 2021, 54(10): 2073-2083.
[10] LI Hui,HAN ZhanPin,HE LiXia,YANG YaLing,YOU ShuYan,DENG Lin,WANG ChunGuo. Cloning and Functional Analysis of BraERF023a Under Salt and Drought Stresses in Cauliflower (Brassica oleracea L. var. botrytis) [J]. Scientia Agricultura Sinica, 2021, 54(1): 152-163.
[11] ShuJun MENG,XueHai ZHANG,QiYue WANG,Wen ZHANG,Li HUANG,Dong DING,JiHua TANG. Identification of miRNAs and tRFs in Response to Salt Stress in Rice Roots [J]. Scientia Agricultura Sinica, 2020, 53(4): 669-682.
[12] ZHOU Lian,XIONG YuHan,HONG XiangDe,ZHOU Jing,LIU ChaoXian,WANG JiuGuang,WANG GuoQiang,CAI YiLin. Functional Characterization of a Maize Plasma Membrane Intrinsic Protein ZmPIP2;6 Responses to Osmotic, Salt and Drought Stress [J]. Scientia Agricultura Sinica, 2020, 53(3): 461-473.
[13] SI XuYang,JIA XiaoWei,ZHANG HongYan,JIA YangYang,TIAN ShiJun,ZHANG Ke,PAN YanYun. Genomic Profiling and Expression Analysis of Phosphatidylinositol- specific PLC Gene Families Among Chinese Spring Wheat [J]. Scientia Agricultura Sinica, 2020, 53(24): 4969-4981.
[14] HAO ShuLin,CHEN HongWei,LIAO FangLi,LI Li,LIU ChangYan,LIU LiangJun,WAN ZhengHuang,SHA AiHua. Analysis of F-Box Gene Family Based on Salt-Stressed Transcriptome Sequencing in Vicia faba L. [J]. Scientia Agricultura Sinica, 2020, 53(17): 3443-3454.
[15] ChunHua PANG,Yuan ZHANG,YaNi LI. Effects of Soaking Seeds with Lanthanum Nitrate on Seed Germination and Seedling Growth of Quinoa Under Salt Stress [J]. Scientia Agricultura Sinica, 2019, 52(24): 4484-4492.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!