首页> 外文期刊>Journal of Plant Biology >CbLEA, a NovelLEA Gene fromChorispora bungeana, Confers Cold Tolerance in Transgenic Tobacco
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CbLEA, a NovelLEA Gene fromChorispora bungeana, Confers Cold Tolerance in Transgenic Tobacco

机译:CbLEA,一种来自布氏梭菌的新型LEA基因,赋予转基因烟草耐寒性

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摘要

A novel late embryogenesis abundant (LEA) gene (AY804193), namedCbLEA, has now been isolated fromChorispora bungeana. This rare alpine subnival plant can survive sudden snowstorms and low temperatures. The full-lengthCbLEA is 842 bp, with an open reading frame encoding 169 ami no acids. The putative molecular weight ofCbLEA protein is 17.9 kDa, with an estimatedpl of 6.45. To investigate the functioning of thisCbLEA protein in cold-stress tolerance,CbLEA was introduced into tobacco under the control of the CaMV35S promoter. Second-generation (R1) transgenic tobacco plants exhibited significantly increased tolerance to cold. These transgenics maintained lower malondialdehyde (MDA) contents and electrolyte leakage (EL) but their relative water content (RWC) was significantly higher compared with non-transgenic plants under chilling stress. Further experimental results showed that non-transgenic plants had severe freezing damage after exposure to -2°C for 1 h, whereas the transgenics suffered only slight injury under the same conditions. Moreover, survival was longer in the latter genotype at that temperature. The extent of increased cold tolerance was positive correlated with the level ofCbLEA protein accumulation, and was also reflected by the delayed development of damage symptoms. This indicates thatCbLEA is an excellent stress tolerance gene, and holds considerable potential as a new molecular tool for engineering improved plant genetics.
机译:现在已从布氏梭菌中分离出了一种新的晚期胚胎发生丰富(LEA)基因(AY804193),名为CbLEA。这种罕见的高山亚热带植物可以在暴风雪和低温下生存。全长CbLEA为842 bp,开放阅读框编码169个氨基酸。 CbLEA蛋白的推定分子量为17.9 kDa,估计pI为6.45。为了研究这种CbLEA蛋白在耐冷胁迫中的功能,在CaMV35S启动子的控制下将CbLEA引入烟草中。第二代(R1 )转基因烟草植株对寒冷的耐受性显着提高。与低温胁迫下的非转基因植物相比,这些转基因保持较低的丙二醛(MDA)含量和电解质泄漏(EL),但它们的相对含水量(RWC)明显更高。进一步的实验结果表明,非转基因植物在暴露于-2°C 1 h后具有严重的冻害,而转基因在相同条件下仅遭受了轻微的损伤。此外,在该温度下后一种基因型的存活时间更长。耐寒性增强的程度与CbLEA蛋白积累水平呈正相关,并且还可以通过损害症状的延迟发展来反映。这表明CbLEA是极好的抗逆基因,并且具有作为工程改良植物遗传学的新分子工具的巨大潜力。

著录项

  • 来源
    《Journal of Plant Biology》 |2007年第3期|336-343|共8页
  • 作者单位

    Key Laboratory of Arid and Grassland Agroecology of Ministry of Education School of Life Sciences Lanzhou University 730000 Lanzhou China;

    Key Laboratory of Arid and Grassland Agroecology of Ministry of Education School of Life Sciences Lanzhou University 730000 Lanzhou China;

    College of Pastoral Agriculture Science and Technology Lanzhou University 730000 Lanzhou China;

    Cold and Arid Regions Environmental and Engineering Research Institute Chinese Academy of Sciences 730000 Lanzhou China;

    Key Laboratory of Arid and Grassland Agroecology of Ministry of Education School of Life Sciences Lanzhou University 730000 Lanzhou China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chilling stress; Chorispora bungeana; cold tolerance; freezing stress; LEA gene; transgenic tobacco;

    机译:低温胁迫;邦氏梭菌;耐寒性;冷冻胁迫;LEA基因;转基因烟草;

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