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首页> 外文期刊>Plant Molecular Biology >The unified ICE-CBF pathway provides a transcriptional feedback control of freezing tolerance during cold acclimation in Arabidopsis
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The unified ICE-CBF pathway provides a transcriptional feedback control of freezing tolerance during cold acclimation in Arabidopsis

机译:统一的ICE-CBF途径可在拟南芥的冷驯化过程中提供对冷冻耐受性的转录反馈控制

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摘要

During cold acclimation, C-repeat binding factors (CBFs) activate downstream targets, such as cold-regulated genes, leading to the acquisition of freezing tolerance in plants. Inducer of CBF expression 1 (ICE1) plays a key role by activating CBF3 expression in shaping the cold-induced transcriptome. While the ICE1-CBF3 regulon constitutes a major cold acclimation pathway, gene regulatory networks governing the CBF signaling are poorly understood. Here, we demonstrated that ICE1 and its paralog ICE2 induce CBF1, CBF2, and CBF3 by binding to the gene promoters. ICE2, like ICE1, was ubiquitinated by the high expression of osmotically responsive gene 1 (HOS1) E3 ubiquitin ligase. Whereas ICE2-defective ice2-2 mutant did not exhibit any discernible freezing-sensitive phenotypes, ice1-2 ice2-2/+ plant, which is defective in ICE1 and has a heterozygotic ice2 mutation, exhibited significantly reduced freezing tolerance. Accordingly, all three CBF genes were markedly down-regulated in the ice1-2 ice2-2/+ plant, indicating that ICE1 and ICE2 are functionally redundant with different implementations in inducing CBF genes. Together with the negative regulation of CBF3 by CBF2, we propose that the unified ICE-CBF pathway provides a transcriptional feedback of freezing tolerance to sustain plant development and survival during cold acclimation.
机译:在冷驯化过程中,C重复结合因子(CBF)激活下游靶标,例如冷调节基因,从而导致植物获得了耐冻性。 CBF表达1(ICE1)的诱导物通过激活CBF3表达来塑造冷诱导的转录组发挥关键作用。尽管ICE1-CBF3调节子构成了主要的冷驯化途径,但对CBF信号传导的基因调控网络知之甚少。在这里,我们证明了ICE1及其类似物ICE2通过与基因启动子结合来诱导CBF1,CBF2和CBF3。 ICE2像ICE1一样,被渗透反应基因1(HOS1)E3泛素连接酶的高表达所泛素化。 ICE2缺陷的ice2-2突变体没有表现出任何可识别的冷冻敏感表型,而ICE1中存在缺陷并具有杂合子ice2突变的ice1-2 ice2-2 / ++植物则表现出明显降低的冷冻耐受性。因此,在ice1-2 ice2-2 / ++植物中,所有三个CBF基因均显着下调,表明ICE1和ICE2在诱导CBF基因中的实现方式不同,在功能上是多余的。连同CBF2对CBF3的负调控,我们建议统一的ICE-CBF途径提供抗冻性的转录反馈,以在冷适应过程中维持植物的发育和存活。

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