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首页> 外文期刊>日本土壤肥料学雑誌 >Effects of the supply of silicon in different forms on injury and distribution of aluminum in rice root tissues
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Effects of the supply of silicon in different forms on injury and distribution of aluminum in rice root tissues

机译:不同形式硅损伤和稻米铝损伤和分布的影响

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摘要

In order to evaluate the effects of Si supply on the amelioration of Al injury of rice plants (Koshihikari), plants were water-cultured for 3 d with Al (0.8 mmolthinlitre-1) and low molecular Si (3.0 mmolthinlitre-1) or high molecular Si (3.0 mmolthinlitre-1 low molecular Si+21.7 mmolthinlitre-1 high molecular Si) in 0.5 mmol Ca(NO3)2 solutionthinlitre-1. The distribution of aluminium in roots was measured, and root-tip tissues were observed microscopically after staining with haematoxylin, fluorescein diacetate-propidium iodide and neutral red. The results showed: (1) root elongation relative to the control plants (without Al and Si) decreased with aluminium treatment. aluminium injury appeared 24 h after Al treatment in elongation parts of the roots and Al had entered the epidermis and outer layers of the cortex, resulting in a decrease in the physiological activity of these cells. The supply of Si ameliorated Al injury, and no damage was observed even at 72 h after Al treatment in the root tissues, especially in the Al plus high molecular Si treatment; (2) monomer Al concentration in culture solution decreased slightly with Si addition. Total Al content in shoots and roots was higher in the Al plus low molecular Si treatment and lower in theAl plus high molecular Si treatment than in the only Al treatment. Thirty to fifty per cent of the total Al amount in roots was present in the apoplastic fraction and 1-2% in the symplastic fraction. The Al amount in each fraction was markedly decreasedin the Al plus high molecular Si treatment. These results indicate that the ameliorative effect of Si on Al injury is attributed mainly to changes in the chemical forms of aluminium ions in the culture solution and plants due to the formation of aluminium silicate complexes which is less toxic than monomer aluminium.
机译:为了评估Si供应对水稻植物(Koshihikari)的损伤的影响,用Al(0.8mmolthinlitre-1)和低分子Si(3.0mmolthinlitre-1)或高植物用水培养3d分子Si(3.0mmolthinlitre-1低分子Si + 21.7mmolthinlitre-1高分子Si)在0.5mmol Ca(NO 3)2溶液中的0.5 mmol(NO 3)2溶液-1。测量铝中铝的分布,用Haemoxylin,荧光素二乙酸碘化物和中性红色染色后显微镜地观察根尖组织。结果表明:(1)相对于对照植物的根伸长(没有Al和Si)随铝处理而降低。铝损伤出现24小时后,在根和Al的伸长率部分的伸长部分中进入皮质的表皮和外层,导致这些细胞的生理活性降低。 Si改善Al损伤的供应,即使在根组织中的Al处理后,甚至在72小时内也没有观察到损伤,特别是在Al加高分子Si治疗中; (2)培养液中的单体Al浓度略微降低,Si加入略微降低。 Al加低分子Si治疗中的芽和根部的总含量较高,脊髓加上高分子Si处理比唯一的Al治疗。在旋翼馏分中,在妊娠级别中存在三十到50%的总含量的总量,并在稳定性级分中存在1-2%。每馏分中的Al量明显减少Al加高分子Si处理。这些结果表明,由于铝硅酸铝配合物的形成,Si对Al损伤的改变效应主要归因于培养溶液中铝离子的化学形式的变化,其硅酸铝配合物的形成含量不如单体铝。

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