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对植物病原体的免疫与铁稳态

Immunity to plant pathogens and iron homeostasis.

作者信息

Aznar Aude, Chen Nicolas W G, Thomine Sebastien, Dellagi Alia

机构信息

Institut Jean-Pierre Bourgin, UMR INRA-AgroParisTech 1318, ERL CNRS 3559, Saclay Plant Sciences, RD10, F-78026 Versailles, France.

Institut de Recherche en Horticulture et Semences, UMR1345 INRA-AgroCampus-Ouest, F-49045 Angers, France.

出版信息

Plant Sci. 2015 Nov;240:90-7. doi: 10.1016/j.plantsci.2015.08.022. Epub 2015 Aug 29.

DOI:10.1016/j.plantsci.2015.08.022
PMID:26475190
Abstract

Iron is essential for metabolic processes in most living organisms. Pathogens and their hosts often compete for the acquisition of this nutrient. However, iron can catalyze the formation of deleterious reactive oxygen species. Hosts may use iron to increase local oxidative stress in defense responses against pathogens. Due to this duality, iron plays a complex role in plant-pathogen interactions. Plant defenses against pathogens and plant response to iron deficiency share several features, such as secretion of phenolic compounds, and use common hormone signaling pathways. Moreover, fine tuning of iron localization during infection involves genes coding iron transport and iron storage proteins, which have been shown to contribute to immunity. The influence of the plant iron status on the outcome of a given pathogen attack is strongly dependent on the nature of the pathogen infection strategy and on the host species. Microbial siderophores emerged as important factors as they have the ability to trigger plant defense responses. Depending on the plant species, siderophore perception can be mediated by their strong iron scavenging capacity or possibly via specific recognition as pathogen associated molecular patterns. This review highlights that iron has a key role in several plant-pathogen interactions by modulating immunity.

摘要

铁对大多数生物的代谢过程至关重要。病原体及其宿主常常争夺这种营养物质。然而,铁能催化有害活性氧的形成。宿主可能利用铁来增加局部氧化应激,以对抗病原体。由于这种双重性,铁在植物与病原体的相互作用中起着复杂的作用。植物对病原体的防御和对缺铁的反应具有一些共同特征,如酚类化合物的分泌,并使用共同的激素信号通路。此外,感染期间铁定位的微调涉及编码铁转运和铁储存蛋白的基因,这些基因已被证明有助于免疫。植物铁状态对特定病原体攻击结果的影响很大程度上取决于病原体感染策略的性质和宿主物种。微生物铁载体成为重要因素,因为它们有能力触发植物防御反应。根据植物物种的不同,铁载体的感知可以通过其强大的铁清除能力介导,也可能通过作为病原体相关分子模式的特异性识别介导。这篇综述强调,铁通过调节免疫在几种植物与病原体的相互作用中起关键作用。

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