Gao Fei, Robe Kevin, Gaymard Frederic, Izquierdo Esther, Dubos Christian
BPMP, CNRS, INRA, Montpellier SupAgro, University of Montpellier, Montpellier, France.
Front Plant Sci. 2019 Jan 18;10:6. doi: 10.3389/fpls.2019.00006. eCollection 2019.
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.
铁是植物中最重要的微量营养素之一,因为它参与许多细胞功能(如光合作用和呼吸作用)。铁供应的任何缺陷都会影响植物的生长发育以及作物产量和植物产品质量。因此,必须严格控制铁稳态,以确保这种矿质元素的最佳吸收。在过去十年中,了解植物中铁稳态的调控机制一直是多项研究的重点。这些研究极大地增进了我们对相关机制的理解,揭示了一个复杂的铁依赖性转录调控网络。引人注目的是,这些研究还强调,这个调控网络依赖于众多属于同一转录因子(TF)组,即bHLH(基本螺旋-环-螺旋)家族的转录调节因子的活性。这在拟南芥中体现得最为明显,迄今为止,已有16种bHLH TF被鉴定为参与这一过程,并在一个复杂的调控级联中发挥作用。有趣的是,在这些bHLH TF中,有些形成了特定的进化枝,这表明在绿色植物谱系的进化过程中,出现了专门用于维持铁稳态的特殊功能。在这篇小型综述中,我们阐述了关于铁稳态调控以及bHLH TF在这一代谢过程中的作用的新见解。