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半乳葡甘露寡糖减轻拟南芥中的镉胁迫。

Galactoglucomannan oligosaccharides alleviate cadmium stress in Arabidopsis.

作者信息

Kučerová Danica, Kollárová Karin, Zelko Ivan, Vatehová Zuzana, Lišková Desana

机构信息

Institute of Chemistry, Slovak Academy of Sciences, Dúbravská cesta 9, 845 38 Bratislava, Slovakia; Institute of Botany, Slovak Academy of Sciences, Dúbravská cesta 9, 845 23 Bratislava, Slovakia.

Institute of Chemistry, Slovak Academy of Sciences, Dúbravská cesta 9, 845 38 Bratislava, Slovakia.

出版信息

J Plant Physiol. 2014 Apr 15;171(7):518-24. doi: 10.1016/j.jplph.2013.12.012. Epub 2014 Mar 13.

Abstract

Our study focused on the mediatory role of galactoglucomannan oligosaccharides (GGMOs) in plant protection against cadmium stress, examined mainly on the primary root growth of Arabidopsis thaliana. The application of GGMOs diminished the negative effect of cadmium on root length, root growth dynamics and also on photosynthetic pigment content. We tested the hypothesis that the effect of GGMOs is associated with decreased cadmium accumulation or its modified distribution. Cadmium distribution was observed chronologically from the first day of plant culture and depended on the duration of cadmium treatment. First, cadmium was stored in the root and hypocotyl and later transported by xylem to the leaves and stored there in trichomes. The protective effect of GGMOs was not based on modified cadmium distribution or its decreased accumulation. In cadmium and GGMOs+cadmium-treated plants, the formation of suberin lamellae was shifted closer to the root apex compared to the control and GGMOs. No significant changes between cadmium and GGMOs+cadmium variants in suberin lamellae development corresponded with any differences in cadmium uptake. GGMOs also stimulated Arabidopsis root growth under non-stress conditions. In this case, suberin lamellae were developed more distantly from the root apex in comparison with the control. Faster solute and water transport could explain the faster plant growth induced by GGMOs. Our results suggest that, in cadmium-stressed plants, GGMOs' protective action is associated with the response at the metabolic level.

摘要

我们的研究聚焦于半乳葡甘露寡糖(GGMOs)在植物抵御镉胁迫中的中介作用,主要通过拟南芥主根生长进行研究。GGMOs的施用减轻了镉对根长、根系生长动态以及光合色素含量的负面影响。我们检验了GGMOs的作用与镉积累减少或其分布改变相关的假设。从植物培养的第一天开始按时间顺序观察镉的分布,其取决于镉处理的持续时间。首先,镉储存在根和下胚轴中,随后通过木质部运输到叶片并储存在叶毛中。GGMOs的保护作用并非基于镉分布的改变或其积累的减少。与对照和GGMOs处理的植物相比,在镉处理以及GGMOs+镉处理的植物中,木栓质层的形成向根尖方向移动。木栓质层发育中镉处理组与GGMOs+镉处理组之间无显著变化,这与镉吸收的差异相对应。GGMOs在非胁迫条件下也能刺激拟南芥根系生长。在这种情况下,与对照相比,木栓质层的发育距离根尖更远。溶质和水分运输加快可以解释GGMOs诱导植物生长加快的现象。我们的结果表明,在镉胁迫的植物中,GGMOs的保护作用与代谢水平的响应相关。

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