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拟南芥冷响应转录组及其受ICE1的调控

The Arabidopsis cold-responsive transcriptome and its regulation by ICE1.

作者信息

Lee Byeong-ha, Henderson David A, Zhu Jian-Kang

机构信息

Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Plant Cell. 2005 Nov;17(11):3155-75. doi: 10.1105/tpc.105.035568. Epub 2005 Oct 7.

Abstract

To understand the gene network controlling tolerance to cold stress, we performed an Arabidopsis thaliana genome transcript expression profile using Affymetrix GeneChips that contain approximately 24,000 genes. We statistically determined 939 cold-regulated genes with 655 upregulated and 284 downregulated. A large number of early cold-responsive genes encode transcription factors that likely control late-responsive genes, suggesting a multitude of transcriptional cascades. In addition, many genes involved in chromatin level and posttranscriptional regulation were also cold regulated, suggesting their involvement in cold-responsive gene regulation. A number of genes important for the biosynthesis or signaling of plant hormones, such as abscisic acid, gibberellic acid, and auxin, are regulated by cold stress, which is of potential importance in coordinating cold tolerance with growth and development. We compared the cold-responsive transcriptomes of the wild type and inducer of CBF expression 1 (ice1), a mutant defective in an upstream transcription factor required for chilling and freezing tolerance. The transcript levels of many cold-responsive genes were altered in the ice1 mutant not only during cold stress but also before cold treatments. Our study provides a global picture of the Arabidopsis cold-responsive transcriptome and its control by ICE1 and will be valuable for understanding gene regulation under cold stress and the molecular mechanisms of cold tolerance.

摘要

为了了解控制对冷胁迫耐受性的基因网络,我们使用包含约24,000个基因的Affymetrix基因芯片对拟南芥基因组转录表达谱进行了分析。我们通过统计学方法确定了939个冷调节基因,其中655个上调,284个下调。大量早期冷响应基因编码可能控制晚期响应基因的转录因子,这表明存在众多转录级联反应。此外,许多参与染色质水平和转录后调控的基因也受到冷调节,这表明它们参与了冷响应基因的调控。一些对植物激素(如脱落酸、赤霉素和生长素)的生物合成或信号传导很重要的基因受冷胁迫调控,这在协调耐寒性与生长发育方面具有潜在重要性。我们比较了野生型和CBF表达诱导因子1(ICE1)的冷响应转录组,ICE1是一种在耐寒和耐冻所需的上游转录因子中存在缺陷的突变体。许多冷响应基因的转录水平不仅在冷胁迫期间,而且在冷处理之前就在ice1突变体中发生了改变。我们的研究提供了拟南芥冷响应转录组及其受ICE1调控的全局图景,对于理解冷胁迫下的基因调控和耐寒性的分子机制将具有重要价值。

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