林烟草蛋白激酶NsylCIPK3基因的克隆与功能分析
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四川省烟草专卖局重点项目(201202006);国家自然科学基金青年基金(31201489)


Cloning and Functional Analysis of NsylCIPK3 Gene from Nicotiana sylvestris
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Key Projects of Tobacco Monopoly Bureau of Sichuan Province(201202006);National Natural Science Foundation of China(31201489)

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    摘要:

    CIPK蛋白激酶家族(CBL-interacting protein kinase)是一类丝氨酸/苏氨酸蛋白激酶家族,与类钙调磷酸酶B亚基CBL(calcineurin B-like protein)蛋白共同形成CBL-CIPK网络,在植物的生长发育和逆境胁迫响应过程中发挥重要作用。烟草中该家族的研究还比较少,本研究从林烟草(Nicotiana sylvestris)中获得一个CIPK家族基因,该基因与拟南芥和杨树中的CIPK3同源性分别为68.4%和87.5%,将其命名为NsylCIPK3。氨基酸序列分析表明,NsylCIPK3蛋白具有CIPK家族的典型结构特征,在N端和C端分别具有典型的激活环结构域和NAF结构域。进化树分析显示,NsylCIPK3属于CIPK亚家族Ⅱ。表达模式研究表明,该基因在林烟草的根和叶中均有表达,在烟草成熟期的叶中表达量明显升高。在高盐、紫外光和低钾胁迫下该基因的表达发生不同程度的上调。酵母双杂交结果显示,NsylCIPK3可与NsylCBL9互作。推测NsylCIPK3可能通过与NsylCBL9互作形成信号通路,激活下游靶蛋白,参与烟草响应非生物逆境胁迫的信号转导过程。

    Abstract:

    As a serine/threonine protein kinase family, CBL-interacting protein kinase (CIPK) is one of the most populated families. CIPKs are activated by calcineurin B-like protein CBLs and form the CBL-CIPK network which can play an important role with response to different adversity stress and impact on the process of plant growth and development. Although many research have done in Arabidopsis, but seldom studies have done in model plant tobacco. We have identified NsylCIPK3, one CIPK gene from Nicotiana sylvestris genome which is highly homolog with PtCIPK3 and AtCIPK3 up to 87.5% and 68.4% accordingly. Amino acid sequence analysis showed that, the NsylCIPK3 protein encoded a typical activation loop domains at N-terminal, and C-terminal has a highly conserved NAF domain. Phylogeny revealed that it belonged to number II subfamily of CIPK family with rich in introns. Expression pattern analysis of different tissue demonstrated that NsylCIPK3 can express in both root and leaf, especially highly expressed in the leaves of mature stage. Real-time quantitative PCR results displayed that it can response to high salt, high temperature, UV, low potassium and chilling treatments. The results of protein-protein interaction by yeast two hybrid illustrated that NsylCIPK3 interacts with NsylCBL9. It assumes that NsylCIPK3 can be activated by NsylCBL9 and perform as NsylCBL9-NsylCIPK3complex, this complex might be involved in abiotic stress signal transductions pathways in tobacco.

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董连红,史素娟,S M Nuruzzaman Manik,等.林烟草蛋白激酶NsylCIPK3基因的克隆与功能分析[J].植物遗传资源学报,2015,16(3):633-639.

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  • 收稿日期:2014-11-11
  • 最后修改日期:2014-12-29
  • 录用日期:2015-04-10
  • 在线发布日期: 2015-05-06
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