首页> 外文期刊>Molecular Plant >UVR8 mediates UV-B-induced Arabidopsis defense responses against Botrytis cinerea by controlling sinapate accumulation.
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UVR8 mediates UV-B-induced Arabidopsis defense responses against Botrytis cinerea by controlling sinapate accumulation.

机译:UVR8通过控制芥子酸积累来介导UV-B诱导的对拟南芥(Botrytis cinerea)的拟南芥防御反应。

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Light is emerging as a central regulator of plant immune responses against herbivores and pathogens. Solar UV-B radiation plays an important role as a positive modulator of plant defense. However, since UV-B photons can interact with a wide spectrum of molecular targets in plant tissues, the mechanisms that mediate their effects on plant defense have remained elusive. Here, we show that ecologically meaningful doses of UV-B radiation increase Arabidopsis resistance to the necrotrophic fungus Botrytis cinerea and that this effect is mediated by the photoreceptor UVR8. The UV-B effect on plant resistance was conserved in mutants impaired in jasmonate (JA) signaling (jar1-1 and P35 S:JAZ10.4) or metabolism of tryptophan-derived defense compounds (pen2-1, pad3-1, pen2 pad3), suggesting that neither regulation of the JA pathway nor changes in levels of indolic glucosinolates (iGS) or camalexin are involved in this response. UV-B radiation, acting through UVR8, increased the levels of flavonoids and sinapates in leaf tissue. The UV-B effect on pathogen resistance was still detectable in tt4-1, a mutant deficient in chalcone synthase and therefore impaired in the synthesis of flavonoids, but was absent in fah1-7, a mutant deficient in ferulic acid 5-hydroxylase, which is essential for sinapate biosynthesis. Collectively, these results indicate that UVR8 plays an important role in mediating the effects of UV-B radiation on pathogen resistance by controlling the expression of the sinapate biosynthetic pathway.
机译:光正在成为植物对草食动物和病原体免疫反应的主要调节剂。太阳UV-B辐射作为植物防御的积极调节剂发挥着重要作用。但是,由于UV-B光子可以与植物组织中的多种分子靶相互作用,因此介导其对植物防御作用的机制仍然难以捉摸。在这里,我们显示出具有生态意义的UV-B剂量可提高拟南芥对坏死性真菌灰葡萄孢的抵抗力,并且这种作用是由感光器UVR8介导的。在茉莉酸(JA)信号( jar1-1 和 P35 S:JAZ10.4 )或色氨酸-新陈代谢受损的突变体中,UV-B对植物抗性的影响得以保留。衍生的防御化合物( pen2-1 , pad3-1 , pen2 pad3 ),这表明JA途径的调控或水平的变化都没有吲哚芥子油苷(iGS)或camalexin参与此反应。通过UVR8起作用的UV-B辐射增加了叶片组织中类黄酮和鼻窦的水平。在尚缺乏查尔酮合酶的突变体 tt4-1 中仍可检测到UV-B对病原体抗性的作用,因此削弱了黄酮类化合物的合成,但在 fah1-7 中却没有。 i>是缺乏阿魏酸5-羟化酶的突变体,其对于鼻窦生物合成是必不可少的。总体而言,这些结果表明,UVR8通过控制芥子酸酯生物合成途径的表达,在介导UV-B辐射对病原体抗性的影响中起重要作用。

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