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Transcription Factor CBF4 Is a Regulator of Drought Adaptation in Arabidopsis

机译:转录因子CBF4是拟南芥干旱适应的调节剂。

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摘要

In plants, low temperature and dehydration activate a set of genes containing C-repeat/dehydration-responsive elements in their promoter. It has been shown previously that the Arabidopsis CBF/DREB1 transcription activators are critical regulators of gene expression in the signal transduction of cold acclimation. Here, we report the isolation of an apparent homolog of the CBF/DREB1 proteins (CBF4) that plays the equivalent role during drought adaptation. In contrast to the three already identified CBF/DREB1 homologs, which are induced under cold stress, CBF4 gene expression is up-regulated by drought stress, but not by low temperature. Overexpression of CBF4 in transgenic Arabidopsis plants results in the activation of C-repeat/dehydration-responsive element containing downstream genes that are involved in cold acclimation and drought adaptation. As a result, the transgenic plants are more tolerant to freezing and drought stress. Because of the physiological similarity between freezing and drought stress, and the sequence and structural similarity of the CBF/DREB1 and the CBF4 proteins, we propose that the plant's response to cold and drought evolved from a common CBF-like transcription factor, first through gene duplication and then through promoter evolution.
机译:在植物中,低温和脱水激活了一组在启动子中包含C重复/脱水反应元件的基因。先前已经表明,拟南芥CBF / DREB1转录激活因子是冷驯化信号转导中基因表达的关键调节因子。在这里,我们报告了CBF / DREB1蛋白(CBF4)的明显同源物的分离,该蛋白在干旱适应过程中起着同等作用。与在冷胁迫下诱导的三个已经确定的CBF / DREB1同源物相反,CBF4基因表达被干旱胁迫上调,但不受低温胁迫上调。 CBF4在转基因拟南芥植物中的过表达导致包含下游基因的C-重复/脱水反应元件的激活,这些下游基因参与了冷适应和干旱适应。结果,转基因植物更耐冷冻和干旱胁迫。由于冻结和干旱胁迫之间的生理相似性,以及CBF / DREB1和CBF4蛋白的序列和结构相似性,我们建议植物对寒冷和干旱的反应是从常见的CBF样转录因子进化而来,首先是通过基因复制,然后通过启动子进化。

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