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The Transcriptional Control of Iron Homeostasis in Plants: A Tale of bHLH Transcription Factors?

机译:植物中铁稳态的转录控制:BHLH转录因子的故事吗?

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摘要

Iron is one of the most important micronutrients in plants as it is involved in many cellular functions (e.g., photosynthesis and respiration). Any defect in iron availability will affect plant growth and development as well as crop yield and plant product quality. Thus, iron homeostasis must be tightly controlled in order to ensure optimal absorption of this mineral element. Understanding mechanisms governing iron homeostasis in plants has been the focus of several studies during the past 10 years. These studies have greatly improved our understanding of the mechanisms involved, revealing a sophisticated iron-dependent transcriptional regulatory network. Strikingly, these studies have also highlighted that this regulatory web relies on the activity of numerous transcriptional regulators that belong to the same group of transcription factors (TF), the bHLH (basic helix-loop-helix) family. This is best exemplified in Arabidopsis where, to date, 16 bHLH TF have been characterized as involved in this process and acting in a complex regulatory cascade. Interestingly, among these bHLH TF some form specific clades, indicating that peculiar function dedicated to the maintenance of iron homeostasis, have emerged during the course of the evolution of the green lineage. Within this mini review, we present new insights on the control of iron homeostasis and the involvement of bHLH TF in this metabolic process.
机译:铁是最重要的微量营养素之一在植物中,因为它是参与许多细胞功能(例如,光合作用和呼吸作用)。在铁的利用任何缺陷都会影响植物的生长发育以及农作物的产量和植物产品的质量。因此,铁稳态必须严格控制,以确保这种矿物质元素的最佳吸收。执政铁稳态在植物的认识机制已经在过去10年的几项研究的重点。这些研究已大大改善我们的参与机制的理解,揭示了一个复杂的铁相关的转录调控网络。引人注目的是,这些研究还强调指出,这一监管网络依赖于属于同一组的转录因子(TF)众多转录调节的活动,bHLH结构(碱性螺旋 - 环 - 螺旋)的家庭。这在拟南芥哪里,到今天为止,16的bHLH TF已经为参与这一进程,并在复杂的调控级联作用特点最好的例证。有趣的是,这些的bHLH TF之间某种形式的具体分支,表示致力于维持铁稳态的那种特殊功能,具有绿色系的演变过程中出现了。在这个迷你审查,我们目前对铁稳态控制和TF的bHLH在这个代谢过程的参与新的见解。

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