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首页> 外文期刊>Environmental and experimental botany >Effects of iron deficiency on subcellular distribution and chemical forms of cadmium in peanut roots in relation to its translocation.
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Effects of iron deficiency on subcellular distribution and chemical forms of cadmium in peanut roots in relation to its translocation.

机译:缺铁对花生根系镉亚细胞分布和化学形态及其转运的影响。

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摘要

Effects of iron deficiency on subcellular distribution and chemical forms of Cd in four peanut (Arachis hypogaea L.) cultivars were investigated by a hydroponics experiment, at low Cd level (0.2 micro M CdCl2). The results show that, compared with high Cd accumulating cultivars, the low Cd accumulating cultivars show higher biomass production, more chlorophyll, and less Cd accumulation in shoots. Higher proportion of Cd in the soluble fraction was also observed in low Cd accumulating cultivars that may contribute to low Cd accumulation in their shoots. Fe deficiency increases Cd uptake and accumulation in plants, but decreases Cd translocation from roots to shoots. It was also observed that Fe deficiency increase the proportion of Cd in the soluble fraction and the proportion of NaCl extractable Cd, which were negatively correlated with shoot Cd concentration. The percentage of NaCl extractable Cd was negatively and exponentially related to the percentage of Cd in shoots and translocation factors of Cd to shoots. It seems that a high proportion of Cd in the soluble fraction (mainly in vacuoles) and a high proportion of NaCl extractable Cd (pectate and protein-bound Cd) are responsible for the decreased Cd translocation by Fe deficiency.
机译:通过水培试验研究了低Cd水平(0.2 micro M CdCl 2 )下铁缺乏对4个花生品种(Arachis hypogaea L.)Cd亚细胞分布和化学形态的影响。结果表明,与高Cd累积品种相比,低Cd累积品种显示出较高的生物量产量,更多的叶绿素和较少的Cd累积。在低Cd累积品种中也观察到Cd在可溶性级分中的比例较高,这可能有助于其芽中Cd的低积累。铁缺乏会增加植物对Cd的吸收和积累,但会降低Cd从根到芽的转运。还观察到,Fe缺乏会增加可溶性部分中Cd的比例和NaCl可萃取Cd的比例,这与芽中Cd浓度呈负相关。 NaCl可萃取Cd的百分率与枝条中Cd的百分率以及Cd向枝条的易位因子呈负相关。似乎可溶性部分中的Cd比例很高(主要在液泡中)和NaCl可萃取的Cd比例很高(果胶和结合蛋白质的Cd)是由于Fe缺乏引起的Cd易位降低的原因。

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