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首页> 外文期刊>Plant signaling & behavior >Iron competition in fungus-plant interactions: the battle takes place in the rhizosphere.
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Iron competition in fungus-plant interactions: the battle takes place in the rhizosphere.

机译:真菌与植物相互作用中的铁竞争:战斗发生在根际。

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摘要

Soilborne fungal pathogens are highly persistent and provoke important crop losses. During saprophytic and infectious stages in the soil, these organisms face situations of nutrient limitation and lack of essential elements, such as iron. We investigated the role of the bZIP transcription factor HapX as a central regulator of iron homeostasis and virulence in the vascular wilt fungus Fusarium oxysporum. This root-infecting plant pathogen attacks more than hundred different crops and is an emerging human opportunistic invader. Although iron uptake remains unaffected in a strain lacking HapX, de-repression of genes implicated in iron-consuming processes such as respiration, amino acid metabolism, TCA cycle and heme biosynthesis lead to severely impaired growth under iron-limiting conditions. HapX is required for full virulence of F. oxysporum in tomato plants and essential for infection in immunodepressed mice. Virulence attenuation of the Delta hapX strain on tomato plants is more pronounced by co-inoculation of roots with the biocontrol strain Pseudomonas putida KT2440, but not with a mutant deficient in siderophores production. These results demonstrate that HapX is required for iron competition of F. oxysporum in the tomato rhizosphere and establish a conserved role for HapX-mediated iron homeostasis in fungal infection of plants and mammals.
机译:土壤传播的真菌病原体具有很高的持久性,会造成重要的农作物损失。在土壤的腐生和感染阶段,这些生物体面临营养限制和缺乏铁等基本元素的情况。我们调查了bZIP转录因子HapX在铁萎病镰刀菌中铁稳态和毒力的中央调节器的作用。这种感染根部的植物病原体袭击了数百种不同的农作物,并且是一种新兴的人类机会性入侵者。尽管在缺乏HapX的菌株中铁的吸收仍然不受影响,但是与铁消耗过程(如呼吸作用,氨基酸代谢,TCA循环和血红素生物合成)有关的基因的阻遏作用会在铁限制条件下严重损害生长。 HapX对番茄植物中的葡萄孢完全毒力是必需的,并且对于免疫抑制小鼠的感染至关重要。通过将根与生物防治品系假单胞菌假单胞菌KT2440共同接种根部,番茄Delta hapX菌株的毒力衰减更为明显,但铁氧体产量不足的突变体则不会。这些结果表明,HapX是番茄根际中镰孢镰刀菌铁竞争所必需的,并在植物和哺乳动物的真菌感染中为HapX介导的铁稳态提供了保守的作用。

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