Shedding light on iron nutrition: exploring intersections of transcription factor cascades in light and iron deficiency signaling.

IF 5.6 2区 生物学 Q1 PLANT SCIENCES Journal of Experimental Botany Pub Date : 2025-02-07 DOI:10.1093/jxb/erae324
Ksenia Trofimov, Samriti Mankotia, Mary Ngigi, Dibin Baby, Santosh B Satbhai, Petra Bauer
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Abstract

In the dynamic environment of plants, the interplay between light-dependent growth and iron nutrition is a recurring challenge. Plants respond to low iron levels by adjusting growth and physiology through enhanced iron acquisition from the rhizosphere and internal iron pool reallocation. Iron deficiency response assays and gene co-expression networks aid in documenting physiological reactions and unraveling gene-regulatory cascades, offering insight into the interplay between hormonal and external signaling pathways. However, research directly exploring the significance of light in iron nutrition remains limited. This review provides an overview on iron deficiency regulation and its cross-connection with distinct light signals, focusing on transcription factor cascades and long-distance signaling. The circadian clock and retrograde signaling influence iron uptake and allocation. The light-activated shoot-to-root mobile transcription factor ELONGATED HYPOCOTYL5 (HY5) affects iron homeostasis responses in roots. Blue light triggers the formation of biomolecular condensates containing iron deficiency-induced protein complexes. The potential of exploiting the connection between light and iron signaling remains underutilized. With climate change and soil alkalinity on the rise, there is a need to develop crops with improved nutrient use efficiency and modified light dependencies. More research is needed to understand and leverage the interplay between light signaling and iron nutrition.

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揭示铁营养:探索转录因子级联在光照和缺铁信号转导中的交叉。
在植物的动态环境中,依赖光照的生长与铁营养之间的相互作用是一个反复出现的挑战。植物通过加强从根圈获取铁和重新分配内部铁池来调整生长和生理,从而对低铁含量做出反应。缺铁反应测定和基因共表达网络有助于记录生理反应和揭示基因调控级联,从而深入了解激素和外部信号通路之间的相互作用。然而,直接探索光在铁营养中的意义的研究仍然有限。本综述概述了铁缺乏调控及其与不同光信号的交叉联系,重点关注转录因子级联和长距离信号传导。昼夜节律和逆行信号影响铁的吸收和分配。光激活的芽至根移动转录因子ELONGATED HYPOCOTYL5(HY5)影响根中的铁平衡反应。蓝光会引发生物分子凝聚物的形成,其中包含缺铁诱导的蛋白质复合物。利用光与铁信号之间联系的潜力仍未得到充分利用。随着气候变化和土壤碱度的上升,需要开发养分利用效率更高、对光依赖性更强的作物。需要开展更多的研究来了解和利用光信号与铁营养之间的相互作用。
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来源期刊
Journal of Experimental Botany
Journal of Experimental Botany 生物-植物科学
CiteScore
12.30
自引率
4.30%
发文量
450
审稿时长
1.9 months
期刊介绍: The Journal of Experimental Botany publishes high-quality primary research and review papers in the plant sciences. These papers cover a range of disciplines from molecular and cellular physiology and biochemistry through whole plant physiology to community physiology. Full-length primary papers should contribute to our understanding of how plants develop and function, and should provide new insights into biological processes. The journal will not publish purely descriptive papers or papers that report a well-known process in a species in which the process has not been identified previously. Articles should be concise and generally limited to 10 printed pages.
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