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    宋浩, 丁伟, 沙伟, 周燕, 陈薇. 不同烟草青枯病抗性品种的蛋白质组学比较[J]. 中国烟草科学, 2011, 32(5): 70-76. DOI: 10.3969/j.issn.1007-5119.2011.05.016
    引用本文: 宋浩, 丁伟, 沙伟, 周燕, 陈薇. 不同烟草青枯病抗性品种的蛋白质组学比较[J]. 中国烟草科学, 2011, 32(5): 70-76. DOI: 10.3969/j.issn.1007-5119.2011.05.016
    SONG Hao, DING Wei, SHA Wei, ZHOU Yan, CHEN Wei. Comparative Analysis of Proteomics in Tobacco Cultivars with Different Ralstonia Solanacearm Resistance[J]. CHINESE TOBACCO SCIENCE, 2011, 32(5): 70-76. DOI: 10.3969/j.issn.1007-5119.2011.05.016
    Citation: SONG Hao, DING Wei, SHA Wei, ZHOU Yan, CHEN Wei. Comparative Analysis of Proteomics in Tobacco Cultivars with Different Ralstonia Solanacearm Resistance[J]. CHINESE TOBACCO SCIENCE, 2011, 32(5): 70-76. DOI: 10.3969/j.issn.1007-5119.2011.05.016

    不同烟草青枯病抗性品种的蛋白质组学比较

    Comparative Analysis of Proteomics in Tobacco Cultivars with Different Ralstonia Solanacearm Resistance

    • 摘要: 为探讨烟草品种对青枯菌的抗病性及抗性机理,应用蛋白质双向电泳联用质谱技术,对青枯病抗病品种DB101 和易感品种红花大金元叶片的蛋白质组成进行了比较分析。结果表明,26 个蛋白质在2 个不同抗性品种中发生了差异变化, 其中在DB101 表达量上升的有12 个,在红花大金元表达量上升的有14 个。用MALDI-TOF/OF MS 分析和数据库检索共鉴定出其中的22 个蛋白质。根据这22 个鉴定出来的蛋白质所参与的代谢途径和生化功能将它们分为6 类,即光合作用、代谢和能量、过氧化物平衡、表达调控、防卫相关蛋白和推测蛋白。研究表明,烟草对青枯病病原菌的侵染存在一个复杂的抗病信号应答和代谢调控网络。在这22 个鉴定出的蛋白中,有2 个在抗病品种DB101 中显著上调的蛋白谷氨酸-1-半醛2,1-氨基变位酶和二氨基庚二酸脱羧酶在以往的研究中还未见报道,可能与烟草对青枯病的抗病性密切相关。本研究为进一步揭示烟草对青枯病的抗性机理及相关抗病基因的功能克隆提供了依据。

       

      Abstract: To investigate the resistance mechanism of different tobacco cultivars to Ralstonia solanacearum, the whole proteins of seeding leaves of high resistance cultivars DB101 and susceptible cultivars Honghuadajinyuan were compared using two-dimensional electrphoresis. A total of 26 proteins were found to be differentially expressed between the two cultivars. Among them 12 protein spots were up-regulated in DB101 and 14 proteins were up-regulated in Honghuadajinyuan. Next, 22 differentially proteins were identified by mass spectrometry. Base on the metabolic pathway and biochemistry functional, we grouped them into 6 clusters: photosynthesis, metabolism and energy, redox homestasis, expressional regulation, defensive responses proteins and putative protein. Then a complex molecular mechanism and metabolic regulative network in the resistant reponses to the infection of Ralstonia solanacearum has been outlined in this research. In these differentially expressed proteins/enzymes, glutamate-1-semialdehyde 2,1-aminomutase and diaminopimelate decarboxylase, which were significant upregulated in resistant cultivar DB101, have been identified for the first time besides the pathogenicity proteins reported previously. To our knowledge, this was the first attempt to explore the resistance mechanism of tobacco to the Ralstonia solanacearum on a proteome level, and differently-expressed proteins might play an important role in further research of tobacco resistant breeding and functional cloning of the resistant-related genes in tobacco.

       

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