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蛋白激酶与植物渗透胁迫耐受研究进展 被引量:1

The research progress of protein kinases in plant resistant to osmotic stress
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摘要 蛋白激酶是一类能使其他蛋白质磷酸化的酶。在植物中,蛋白激酶几乎参与植物生命周期中一切生理调节过程。渗透胁迫是植物生长发育过程中常见的非生物胁迫,植物对渗透胁迫耐受的机理一直是研究的重点。本文着眼于植物渗透胁迫反应,详细介绍了分裂原激活蛋白激酶(MAPK)、钙依赖而钙调素不依赖的蛋白激酶(CDPK)、受体蛋白激酶(RPK)、核糖体蛋白激酶、转录调控蛋白激酶等多种蛋白激酶在植物逆境信号识别与转导中的作用,综述其研究进展及前景。分析了当前在植物抗渗透胁迫蛋白激酶研究中存在的问题,进而对解决问题的途径进行了探讨。 The protein kinases,a large family of enzymes can catalyze substrate protein phosphorylation,many of which mediate the response of plant cells to external stimuli.The structure and classification of kinases was briefly introduced,and the progress of kinases on the plant resistant to osmotic stress was particularly summarized,such as mitogen-activated protein kinase(MAPK),calcium-dependent and calmodulin-independent protein kinase(CDPK),receptor protein kinase(RPK),ribosomal-protein kinase,transcription-regulation protein kinase.Furthermore,the problems existing on the research of plant kinase genes resistant to osmotic stress was analyzed,and the development prospect according to the research was forecasted.
作者 杨靓 吴祖建
出处 《武夷科学》 2012年第1期120-127,共8页 Wuyi Science Journal
基金 国家转基因生物新品种培育重大专项重点课题(2009ZX08009-044B 2009ZX8001-018B) 福建省自然科学基金项目(2011J05051) 福建省教育厅科技项目(JA11080)资助
关键词 渗透胁迫 蛋白激酶 信号转导 osmotic stress protein kinase signal transduction
作者简介 杨靓(1981-),女,博士,讲师。研究方向:分子病毒学。Email:yangliang.fafu@139.com
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  • 1巩学千,陈受宜.蛋白激酶:一个飞速发展的领域[J].生物工程进展,1996,16(1):11-14. 被引量:3
  • 2Asano T,Hakata M,Nakamura H,Aoki N Komatsu S Ichikawa H Hirochika H Ohsugi R. Functional characterisation of OsCPK21,a calcium-dependent protein kinase that confers salt tolerance in rice[J].Plant Molecular Biology,2011,(1-2):179-191.
  • 3Bayer RG,Stael S,Rocha AG,Mair A Vothknecht UC Teige M. Chloroplast-localized protein kinases:a step forward towards a complete inventory[J].Journal of Experimental Botany,2012,(04):1713-1723.
  • 4B(o)gre L,Ligterink W,Heberle-Bors E,Hirt H. Mechanosensors in plants[J].Nature,1996,(6600):489-490.doi:10.1038/383489a0.
  • 5Cargnello M,Roux PP. Activation and function of the MAPKs and their substrates,the MAPK-activated protein kinases[J].Microbiology and Molecular Biology Reviews,2011,(01):50-83.
  • 6Ferreira PC,Hemerly AS,Villarroel R,Van MM Inzé D. The Arabidopsis functional homolog of the p34cdc2 protein kinase[J].Plant Cell,1991,(05):531-540.
  • 7Giammaria V,Grandellis C,Bacbmann S,Gargantini PR Feingold SE Bryan G Ulloa RM. StCDPK2 expression and activity reveal a highly responsive potato calcium-dependent protein kinase involved in light signalling[J].Planta,2011,(03):593-609.
  • 8Hashimoto K,Eckert C,Anschütz U,Scholz M Held K Waadt R Reyer A Hippler M Becker D Kudla J. Phosphorylation of calcineurin B-like(CBL) calcium sensor proteins by their CBL-interacting protein kinases (CIPKs)is required for full activity of CBL-CIPK complexes toward their target proteins[J].Journal of Biological Chemistry,2012,(11):7956-7968.
  • 9Jonak C,Kiegerl S,Ligterink W,Barker PJ Huskisson NS Hirt H. Stress signaling in plants:a mitogen-activated protein kinase pathway is activated by cold and drought[J].Proceedings of the National Academy of Sciences(USA),1996,(20):11274-11279.
  • 10Lee JH,Van Montagu M,Verbruggen N. A highly conserved kinase is an essential component for stress tolerance in yeast and plant cells[J].Proceedings of the National Academy of Sciences(USA),1999,(10):5873-5877.

二级参考文献1

  • 1Zhao Y,Plant Melecular Biology,1994年,26卷,791页

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