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首页> 外文期刊>Planta: An International Journal of Plant Biology >Shoot to root communication is necessary to control the expression of iron-acquisition genes in Strategy I plants
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Shoot to root communication is necessary to control the expression of iron-acquisition genes in Strategy I plants

机译:从根到茎的交流对于控制I型策略植物中铁捕获基因的表达是必要的

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摘要

Previous research showed that auxin, ethylene, and nitric oxide (NO) can activate the expression of iron (Fe)-acquisition genes in the roots of Strategy I plants grown with low levels of Fe, but not in plants grown with high levels of Fe. However, it is still an open question as to how Fe acts as an inhibitor and which pool of Fe (e. g., root, phloem, etc.) in the plant acts as the key regulator for gene expression control. To further clarify this, we studied the effect of the foliar application of Fe on the expression of Fe-acquisition genes in several Strategy I plants, including wild-type cultivars of Arabidopsis [Arabidopsisthaliana (L.) Heynh], pea [Pisum sativum L.], tomato [Solanum lycopersicon Mill.], and cucumber [Cucumis sativus L.], as well as mutants showing constitutive expression of Fe-acquisition genes when grown under Fe-sufficient conditions [Arabidopsis opt3-2 and frd3-3, pea dgl and brz, and tomato chln (chloronerva)]. The results showed that the foliar application of Fe blocked the expression of Fe-acquisition genes in the wild-type cultivars and in the frd3-3, brz, and chln mutants, but not in the opt3-2 and dgl mutants, probably affected in the transport of a Fe-related repressive signal in the phloem. Moreover, the addition of either ACC (ethylene precursor) or GSNO (NO donor) to Fe-deficient plants up-regulated the expression of Fe-acquisition genes, but this effect did not occur in Fe-deficient plants sprayed with foliar Fe, again suggesting the existence of a Fe-related repressive signal moving from leaves to roots.
机译:先前的研究表明,生长素,乙烯和一氧化氮(NO)可以激活低铁含量策略I植物的根中铁(Fe)采集基因的表达,但不能激活高铁含量植物中的根。然而,关于Fe如何充当抑制剂以及植物中的哪个Fe库(例如根,韧皮部等)充当基因表达控制的关键调节剂,仍然是一个悬而未决的问题。为了进一步阐明这一点,我们研究了叶面施用铁对几种策略I植物中包括拟南芥[Arabidopsisthaliana(L.)Heynh],豌豆[Pisum sativum L]的野生型栽培品种中Fe收购基因表达的影响。 ],番茄[Solanum lycopersicon Mill。]和黄瓜[Cucumis sativus L.]以及在铁充足的条件下生长时表现出Fe采集基因组成型表达的突变体[拟南芥opt3-2和frd3-3,豌豆dgl和brz,以及番茄chin(chloronerva)]。结果表明,叶面施用Fe会阻止野生型品种以及frd3-3,brz和chln突变体中Fe采集基因的表达,但不会影响opt3-2和dgl突变体中的Fe捕获基因的表达。韧皮部中铁相关的抑制信号的转运。此外,向缺铁植物中添加ACC(乙烯前体)或GSNO(NO供体)可上调Fe采集基因的表达,但这种效果在喷洒叶面铁的缺铁植物中并没有发生提示存在铁相关的抑制信号,从叶到根。

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