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园艺学报 ›› 2009, Vol. 36 ›› Issue (8): 1184-1196.

• 观赏植物 • 上一篇    下一篇

月季Rchsp1718基因转化烟草的非生物胁迫耐性研究

李敏1;蒋昌华1, 2*;胡永红2; 张浩1;王尧峰1;明凤1**   

  1. (1 复旦大学生命科学学院, 遗传工程国家重点实验室, 植物研究所, 上海200433; 2上海植物园, 上海200231)
  • 收稿日期:2009-02-04 修回日期:2009-07-13 出版日期:2009-08-25 发布日期:2009-08-25
  • 通讯作者: 明凤

Transformation of Tobacco with Rchsp1718 from Chinese Rose EnhancesTolerance to Different Abiotic Stresses

LI Min1;JIANG Chang-hua1,2*;HU Yong-hong2;ZHANG Hao1;WANG Yao-feng1;MING Feng1**   

  1. (1State Key Laboratory of Genetic Engineering, School of Life Science, Fudan University, Shanghai 200433, China; 2Shanghai Botanical Garden, Shanghai 200231, China)
  • Received:2009-02-04 Revised:2009-07-13 Online:2009-08-25 Published:2009-08-25
  • Contact: MING Feng

摘要: 为了研究从月季中分离的小分子热激蛋白Rchsp1718的生理功能, 把Rchsp1718的编码框插入到表达载体PHB的35S组成型启动子后面, 通过农杆菌GV3101转化烟草, 获得转基因植株。在高温、干旱、渗透、高盐胁迫条件下分别检测转基因烟草形态、失水率、电导率、脯氨酸含量及其内外源基因表达模式。结果显示: 与对照相比, 转基因烟草抗性表型明显, 电导率较低, 脯氨酸含量大幅度提高, 失水率降低; P5CS基因的表达量上调, 说明转Rchsp1718基因烟草苗在高温以及高渗透胁迫下表现出明显的耐受性。

关键词: 月季, 小分子热激蛋白, 非生物胁迫, 抗性, 生理功能

Abstract: Rchsp1718 cloned from Chinese rose belongs to a cytosolic class I sHSP, and it is induced under different stress. In order to study the physiological function of Rchsp1718, we subcloned the ORF of Rchsp1718 recombined after 35S: p romoter into DH5α, then transformed into plant gene expression vector Agrobaterium rumefaciens, leaf disc of tobacco was infected by Agrobaterium and three transformants were attained. We assessed the phenotype, relative electrical leakage, proline content, water lose rate under high temperature, osmotic stress, and salt stress respectively, and the transcrip t levels of P5CS gene was also investigated by semi-quantitative RT2PCR. Results showed that transgenic line showed lower relative electrical leakage, more proline content, lower water lose rate, and the expressed of P5CS was elevated. Compared
with the non-transgenic lines, transformed ones showed obvious resistance to high temperature and osmotic stress. The possible mechanism to different abiotic stresswas also discussed.

Key words: Rosa chinensis, small heat shock protein, abiotic stress, resistance, physiological function

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