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拟南芥 HY1 通过降低一氧化氮产生和改善铁稳态来赋予镉耐受性。

Arabidopsis HY1 confers cadmium tolerance by decreasing nitric oxide production and improving iron homeostasis.

机构信息

College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Mol Plant. 2014 Feb;7(2):388-403. doi: 10.1093/mp/sst122. Epub 2013 Aug 23.

Abstract

Up-regulation of the gene that encodes intracellular heme oxygenase 1 (HO1) benefits plants under cadmium (Cd(2+)) stress; however, the molecular mechanisms remain unclear. Here, we elucidate the role of Arabidopsis HY1 (AtHO1) in Cd(2+) tolerance by using genetic and molecular approaches. Analysis of two HY1 null mutants, three HY1 overexpression lines, HO double or triple mutants, as well as phyA and phyB mutants revealed the specific hypersensitivity of hy1 to Cd(2+) stress. Supplementation with two enzymatic by-products of HY1, carbon monoxide (CO) and iron (Fe, especially), rescued the Cd(2+)-induced inhibition of primary root (PR) elongation in hy1-100. The mutation of HY1, which exhibited lower glutathione content than Col-0 in root tissues, was able to induce nitric oxide (NO) overproduction, Cd(2+) accumulation, and severe Fe deficiency in root tissues. However, the contrasting responses appeared in 35S:HY1-4. Additionally, reduced levels of Ferric Reduction Oxidase 2 (FRO2) and Iron-Regulated Transporter 1 (IRT1) transcripts, and increased levels of Heavy Metal ATPase 2/4 (HMA2/4) transcripts bolster the notion that HY1 up-regulation ameliorates Fe deficiency, and might increase Cd(2+) exclusion. Taken together, these results showed that HY1 plays a common link in Cd(2+) tolerance by decreasing NO production and improving Fe homeostasis in Arabidopsis root tissues.

摘要

血红素加氧酶 1(HO1)基因的上调有益于植物应对镉(Cd(2+))胁迫;然而,其分子机制尚不清楚。在这里,我们通过遗传和分子方法阐明了拟南芥 HY1(AtHO1)在 Cd(2+)耐受性中的作用。对两个 HY1 缺失突变体、三个 HY1 过表达系、HO 双或三突变体以及 phyA 和 phyB 突变体的分析表明,hy1 对 Cd(2+)胁迫表现出特异性的超敏性。补充 HY1 的两种酶促副产物,一氧化碳(CO)和铁(Fe,尤其是),挽救了 hy1-100 中 Cd(2+)诱导的主根(PR)伸长抑制。与 Col-0 相比,HY1 突变体的根组织中谷胱甘肽含量较低,能够诱导一氧化氮(NO)过量产生、Cd(2+)积累和根组织中严重的铁缺乏。然而,在 35S:HY1-4 中出现了相反的反应。此外,Ferric Reduction Oxidase 2(FRO2)和 Iron-Regulated Transporter 1(IRT1)转录本水平降低,Heavy Metal ATPase 2/4(HMA2/4)转录本水平升高,这表明 HY1 的上调可减轻铁缺乏症,并可能增加 Cd(2+)的外排。综上所述,这些结果表明,HY1 通过降低 NO 产生和改善拟南芥根组织中的铁稳态,在 Cd(2+)耐受性中发挥共同作用。

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