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拟南芥缺铁反应的转录谱分析揭示了保守的过渡金属稳态网络。

Transcriptional profiling of the Arabidopsis iron deficiency response reveals conserved transition metal homeostasis networks.

机构信息

Institute of Plant and Microbial Biology, Academia Sinica, 115 Taipei, Taiwan.

出版信息

Plant Physiol. 2010 Apr;152(4):2130-41. doi: 10.1104/pp.109.152728. Epub 2010 Feb 24.

Abstract

Iron (Fe) deficiency is counteracted by a suite of responses to ensure maintenance of vital processes for which Fe is essential. Here, we report on transcriptional changes upon Fe deficiency, investigated in two Arabidopsis (Arabidopsis thaliana) accessions, Columbia (Col-0) and C24. Functional modules of the Arabidopsis Fe deficiency syndrome were inferred from clustering of Fe-responsive genes according to their coexpression. It was found that the redistribution of transition metals is an integral part of the reduction-based response to Fe starvation. The differential expression of metal transporters under the control of the FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR appeared to reflect an anticipated reaction rather than a response to the actual change in metal distribution. In contrast, the regulation of the zinc transporters ZRT/IRT-LIKE PROTEIN2 (ZIP2), ZIP3, ZIP4, and ZIP9 was dependent on the cellular zinc level, and their regulation by Fe was a secondary effect. Cellular Fe homeostasis was found to be closely coupled to Fe-related processes in the plastids. Using clustered genes as bait in gene-fishing experiments, we were able to attribute potentially important roles for gene candidates that have no previously described function in the Fe deficiency response. These results demonstrate a conceptually novel and integrative view into the regulation and interactions that allow Arabidopsis to adapt to suboptimal Fe availability.

摘要

铁(Fe)缺乏会引起一系列反应,以确保维持Fe 必不可少的重要过程。在这里,我们报告了在两个拟南芥(Arabidopsis thaliana)品系哥伦比亚(Col-0)和 C24 中研究的 Fe 缺乏时的转录变化。根据 Fe 反应基因的共表达情况对其进行聚类,推断出拟南芥 Fe 缺乏综合征的功能模块。结果发现,过渡金属的再分配是基于还原的对 Fe 饥饿反应的一个组成部分。在 FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR 的控制下,金属转运蛋白的差异表达似乎反映了预期的反应,而不是对金属分布实际变化的反应。相比之下,锌转运蛋白 ZRT/IRT-LIKE PROTEIN2(ZIP2)、ZIP3、ZIP4 和 ZIP9 的调节取决于细胞内锌水平,而 Fe 的调节则是次要效应。发现细胞内 Fe 稳态与质体中与 Fe 相关的过程密切相关。使用聚类基因作为基因捕捞实验中的诱饵,我们能够为那些在 Fe 缺乏反应中没有先前描述功能的基因候选者赋予潜在的重要作用。这些结果展示了一个新概念和综合的观点,即允许拟南芥适应低铁供应的调节和相互作用。

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