缺氧和铁响应由ERFVII因子和N-Degron通路的PCO分支根据铁的可用性调节。

IF 6.3 1区 生物学 Q1 PLANT SCIENCES
Plant, Cell & Environment Pub Date : 2026-06-01 Epub Date: 2026-03-08 DOI:10.1111/pce.70466
Yuri Telara, Moez Maghrebi, Mikel Lavilla-Puerta, Noemi La Monaca, Giulia Ambrogini, Alessio Sbrana, Sara Delucchi, Pierdomenico Perata, Gianpiero Vigani, Beatrice Giuntoli
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引用次数: 0

摘要

在植物体内,铁稳态和氧代谢是密切相关的,事实上,一些需要铁的酶催化的反应也涉及到O2作为试剂、产物、通路的入口或终点。氧传感本身依赖于铁依赖酶植物半胱氨酸氧化酶。然而,铁缺乏对低氧胁迫反应的影响迄今尚未得到研究。PCOs将ERFVII乙烯反应因子引导至蛋白酶体N-degron通路,该通路将缺氧诱导反应与ERFVII转录因子的稳定联系起来,ERFVII转录因子是植物缺氧转录的主要调节因子。本文研究了拟南芥低氧和缺铁胁迫之间的相互作用。体内PCO活性是通过缺氧标记基因的表达和ERFVII蛋白稳定性遗传编码报告基因的活性推断出来的。我们的研究结果强调,铁剥夺可以引起缺氧样反应,这取决于其严重程度。此外,来自erfVII五重突变体的证据表明,erfVII参与对慢性缺铁的响应,并对生长在中度缺铁基质上的沉水植物的茎部养分含量进行微调。这项工作扩展了ERFVII因子的已知功能,并为了解植物对综合环境胁迫的反应提供了新的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hypoxic and Fe-Responses are Regulated by the ERFVII Factors and the PCO Branch of the N-Degron Pathway According to Iron Availability.

In plants, iron homeostasis and oxygen metabolism are strictly related, indeed several Fe-requiring enzymes catalyze reactions that also involve O2 as a reagent, product, entry or end point of the pathway. Oxygen sensing itself relies on the Fe-dependent enzymes Plant cysteine oxidases. However, the impact of iron deficiencies on the response to hypoxic stresses has not been investigated so far. PCOs channel the ERFVII ethylene-responsive factors into a proteasomal N-degron pathway that connects hypoxia-inducible responses to the stabilization of the ERFVII transcription factors, which act as master regulators of plant hypoxic transcription. Here, we investigated the interplay between low oxygen and Fe-deficiency stresses in A. thaliana. PCO activity in vivo was inferred from the expression of hypoxia marker genes and from the activity of a genetically encoded reporter of ERFVII protein stability. Our results highlight that Fe deprivation can elicit hypoxia-like responses depending on its severity. Moreover, evidence from the pentuple erfVII mutant indicate that the ERFVIIs take part to the responses to chronic Fe-deficiency and fine-tune nutrient content to the shoot of submerged plants growing on moderately Fe-deficient substrates. This work expands the known functions of the ERFVII factors and provides new information to understand plant responses to combined environmental stresses.

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来源期刊
Plant, Cell & Environment
Plant, Cell & Environment 生物-植物科学
CiteScore
13.30
自引率
4.10%
发文量
253
审稿时长
1.8 months
期刊介绍: Plant, Cell & Environment is a premier plant science journal, offering valuable insights into plant responses to their environment. Committed to publishing high-quality theoretical and experimental research, the journal covers a broad spectrum of factors, spanning from molecular to community levels. Researchers exploring various aspects of plant biology, physiology, and ecology contribute to the journal's comprehensive understanding of plant-environment interactions.
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