首页> 美国卫生研究院文献>PLoS Clinical Trials >A C-Repeat Binding Factor Transcriptional Activator (CBF/DREB1) from European Bilberry (Vaccinium myrtillus) Induces Freezing Tolerance When Expressed in Arabidopsis thaliana
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A C-Repeat Binding Factor Transcriptional Activator (CBF/DREB1) from European Bilberry (Vaccinium myrtillus) Induces Freezing Tolerance When Expressed in Arabidopsis thaliana

机译:C重复绑定因子转录激活因子(CBF / DREB1)从欧洲越桔(越桔)诱导在南芥中表达的耐寒性。

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摘要

Freezing stress affects all plants from temperate zones to the poles. Global climate change means such freezing events are becoming less predictable. This in turn reduces the ability of plants to predict the approaching low temperatures and cold acclimate. This has consequences for crop yields and distribution of wild plant species. C-repeat binding factors (CBFs) are transcription factors previously shown to play a vital role in the acclimation process of Arabidopsis thaliana, controlling the expression of hundreds of genes whose products are necessary for freezing tolerance. Work in other plant species cements CBFs as key determinants in the trait of freezing tolerance in higher plants. To test the function of CBFs from highly freezing tolerant plants species we cloned and sequenced CBF transcription factors from three Vaccinium species (Vaccinium myrtillus, Vaccinium uliginosum and Vaccinium vitis-idaea) which we collected in the Arctic. We tested the activity of CBF transcription factors from the three Vaccinium species by producing transgenic Arabidopsis lines overexpressing them. Only the Vaccinium myrtillus CBF was able to substantially activate COR (CBF-target) gene expression in the absence of cold. Correspondingly, only the lines expressing the Vaccinium myrtillus CBF were constitutively freezing tolerant. The basis for the differences in potency of the three Vaccinium CBFs was tested by observing cellular localisation and protein levels. All three CBFs were correctly targeted to the nucleus, but Vaccinium uliginosum CBF appeared to be relatively unstable. The reasons for lack of potency for Vaccinium vitis-idaea CBF were not due to stability or targeting, and we speculate that this was due to altered transcription factor function.
机译:冻害影响从温带到极地的所有植物。全球气候变化意味着此类冰冻事件变得难以预测。反过来,这降低了植物预测即将到来的低温和寒冷气候的能力。这对作物产量和野生植物物种的分布产生了影响。 C-重复结合因子(CBF)是先前显示在拟南芥的驯化过程中起着至关重要作用的转录因子,控制着数百个基因的表达,其产物对于冷冻耐受是必需的。在其他植物物种中进行的研究使CBFs成为高等植物抗冻性的关键决定因素。为了测试高度耐寒植物物种的CBF的功能,我们从北极收集的三种痘苗(Vaccinium myrtillus,Vaccinium uliginosum和Vaccinium v​​itis-idaea)克隆并测序了CBF转录因子。我们通过产生过表达它们的转基因拟南芥品系,测试了来自三个越桔属物种的CBF转录因子的活性。在没有感冒的情况下,只有Myaccillus Vrtinium Myrtillus CBF才能基本​​上激活COR(CBF靶)基因表达。相应地,仅表达Myaccillus Myrtillus CBF的品系具有组成性耐冻性。通过观察细胞定位和蛋白质水平,测试了三种牛痘CBF效能差异的基础。所有三个脑血流都正确地瞄准了细胞核,但牛痘越橘脑血流似乎相对不稳定。 Vaccinium v​​itis-idaea CBF缺乏效力的原因不是由于稳定性或靶向性,我们推测这是由于转录因子功能的改变。

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