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植物响应温度胁迫蛋白质组学研究进展 被引量:5

Progress in Proteomic Analysis of Plant Response to Temperature Stress
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摘要 温度胁迫是重要的非生物胁迫因子之一,对植物的生长发育、地理分布和品质产量等产生重要的影响。温度胁迫下植物的蛋白质组学研究可以系统揭示不同温度条件下植物蛋白质的表达状况,从而深入了解温度胁迫下植物的基因表达调控机制、植物响应温度胁迫机理。综述了植物响应高温和低温胁迫蛋白质组学的研究现状、存在问题和发展方向。 Temperature stress is an important abiotic stress which restricts the development,productivity and geographical distribution of plants.Proteomics methods could identify the proteins and pathways involved in temperature stress responding of plants,thus reveal the regulating mechanisms of gene expression under temperature stress.Current approaches of proteomic analysis of temperature stress in plants were reviewed and the difficulties and prospects in this rapidly developing field were also discussed.
作者 龚映雪
出处 《安徽农业科学》 CAS 北大核心 2010年第32期18038-18040,共3页 Journal of Anhui Agricultural Sciences
基金 中央高校基本科研业务费专项(暨南大学科研培育与创新基金21609311) 暨南大学引进人才科研启动基金项目(51208056)
关键词 植物 温度胁迫 蛋白质组学 Plant Temperature stress Proteomics
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  • 1Agrawal, G.K., Hajduch, M., Graham, K., and Thelen, J.J. (2008). In-depth investigation of the soybean seed-filling proteome and comparison with a parallel study of rapeseed. Plant Physiol. 148: 504-518.
  • 2Amine, S., Matros, A., Schlesier, B., and Mock, H.P. (2006). Proteome analysis of cold stress response in Arabidopsis thaliana using DIGE-technology. J. Exp. Bot. 57: 1537-1546.
  • 3Bae, M. S., Cho, E. J., Choi, E. Y., and Park, O. K. (2003). Analysis of the Arabidopsis nuclear proteome and its response to cold stress. Plant J. 36: 652-663.
  • 4Cellini, F., Chesson, A., Coiquhoun, I., Constable, A., Davies, H.V., Engel, K.H., Gatehouse, A.M.R., Karenlampi, S., Kok, Ej., Leguay, J.J., Lehesranta, S., Noteborn, H.P., Pedersen, J., Smith, M. (2004). Unintended effects and their detection in genetically modified crolas. Food Chem. Toxicol. 42: 1089-1125.
  • 5Conner, Aj., and Jacobs, J.M.E. (2000). Food risks from transgenic crops in perspective. Nutrition 16: 709-717.
  • 6Corpillo, D., Gardini, G., Vaira, A.M., Basso, M., Aime, S., Accotto, G.R., and Fasano, M. (2004). Proteomics as a tool to improve inves- tigation of substantial equivalence in genetically modified organisms: The case of a virus-resistant tomato. Proteomics 4: 193-200.
  • 7Damervai, C., Devienne, D., Zivy, M., and Thiellement, H. (1986). Technical improvements in two-dimensional electrophoresis increase the level of genetic-variation detected in wheat-seedling proteins. Electrophoresis 7: 52-54.
  • 8Delhaize, E., Hebb, D.M., Richards, K.D., Lin, J.M., Ryan, ER., and Gardner, R.C. (1999). Cloning and expression of a wheat (Triticum aestivum L.) phosphafidylserine synthase cDNA--4)verexpression in plants alters the composition of phospholipids. J. Biol. Chem. 274: 7082-7088.
  • 9Gallardo, K., Job, C., Groot, S.P.C., Puype, M., Demol, H., Vandekerckhove, J., and Job, D. (2001). Proteomic analysis of A rabidopsis seed germination and priming. Plant Physiol. 126: 835-848.
  • 10Giacomeili, L., Rudella, A., and van Wijk, K.J. (2006). High light response of the thylakoid proteome in Arabidopsis wild type and the ascorbate-deficient mutant vtc2-2. A comparative proteomics study. Plant Physiol. 141: 685-701.

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