首页> 美国卫生研究院文献>The Plant Cell >Arabidopsis Transcriptome Profiling Indicates That Multiple Regulatory Pathways Are Activated during Cold Acclimation in Addition to the CBF Cold Response Pathway
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Arabidopsis Transcriptome Profiling Indicates That Multiple Regulatory Pathways Are Activated during Cold Acclimation in Addition to the CBF Cold Response Pathway

机译:拟南芥转录组分析表明除CBF冷应答途径外在冷驯化过程中还激活了多种调节途径。

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摘要

Many plants, including Arabidopsis, increase in freezing tolerance in response to low, nonfreezing temperatures, a phenomenon known as cold acclimation. Previous studies established that cold acclimation involves rapid expression of the CBF transcriptional activators (also known as DREB1 proteins) in response to low temperature followed by induction of the CBF regulon (CBF-targeted genes), which contributes to an increase in freezing tolerance. Here, we present the results of transcriptome-profiling experiments indicating the existence of multiple low-temperature regulatory pathways in addition to the CBF cold response pathway. The transcript levels of ∼8000 genes were determined at multiple times after plants were transferred from warm to cold temperature and in warm-grown plants that constitutively expressed CBF1, CBF2, or CBF3. A total of 306 genes were identified as being cold responsive, with transcripts for 218 genes increasing and those for 88 genes decreasing threefold or more at one or more time points during the 7-day experiment. These results indicate that extensive downregulation of gene expression occurs during cold acclimation. Of the cold-responsive genes, 48 encode known or putative transcription factors. Two of these, RAP2.1 and RAP2.6, were activated by CBF expression and thus presumably control subregulons of the CBF regulon. Transcriptome comparisons indicated that only 12% of the cold-responsive genes are certain members of the CBF regulon. Moreover, at least 28% of the cold-responsive genes were not regulated by the CBF transcription factors, including 15 encoding known or putative transcription factors, indicating that these cold-responsive genes are members of different low-temperature regulons. Significantly, CBF expression at warm temperatures repressed the expression of eight genes that also were downregulated by low temperature, indicating that in addition to gene induction, gene repression is likely to play an integral role in cold acclimation.
机译:包括拟南芥在内的许多植物都响应较低的非冻结温度而提高了耐冻性,这种现象称为冷驯化。先前的研究表明,冷驯化涉及响应低温响应的CBF转录激活因子(也称为DREB1蛋白)的快速表达,然后诱导CBF调节子(靶向CBF的基因),这有助于提高冷冻耐受性。在这里,我们介绍了转录组分析实验的结果,表明除了CBF冷应答途径外,还存在多个低温调节途径。在植物从温暖的温度转移到寒冷的温度后,以及在组成型表达CBF1,CBF2或CBF3的温育植物中,多次测定约8000个基因的转录水平。在为期7天的实验中,总共306个基因被鉴定为对寒冷有反应,其中218个基因的转录本增加,而88个基因的转录本在一个或多个时间点减少三倍或更多。这些结果表明在冷驯化过程中发生了基因表达的广泛下调。在冷应答基因中,有48个编码已知或推定的转录因子。其中RAP2.1和RAP2.6中的两个被CBF表达激活,因此可能控制了CBF调节子的亚调节子。转录组比较表明,只有12%的冷应答基因是CBF调节子的某些成员。此外,至少28%的冷应答基因不受CBF转录因子的调控,包括15种编码已知或推定的转录因子,表明这些冷应答基因是不同的低温调节子的成员。值得注意的是,在温暖的温度下,CBF表达抑制了八个基因的表达,这些基因也被低温下调,这表明除了基因诱导外,基因抑制还可能在冷驯化中发挥不可或缺的作用。

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