Silva I R, Smyth T J, Israel D W, Raper C D, Rufty T W
Department of Soil Science, Federal University of Viçosa, Viçosa, Minas Gerais, Brazil.
Plant Cell Physiol. 2001 May;42(5):538-45. doi: 10.1093/pcp/pce066.
The mechanistic basis for cation amelioration of Al rhizotoxicity in soybean was investigated through a series of studies comparing protective effects of Ca and Mg against Al inhibition of root elongation in a background 0.8 mM CaSO4 solution (pH 4.3). A modified Gouy-Chapman-Stern model was used to evaluate the effect of cations on electrical potential and Al3+ activity at root plasma membrane surfaces. Activities of Al3+ up to 4.6 microM in the background solution inhibited soybean tap root elongation by more than 80%. There was little or no response in root elongation when Ca and Mg were added to background solutions in the absence of AL: When added to Al-toxic solutions in the micromolar concentration range, Mg was 100-fold more effective than Ca in alleviating Al toxicity, whereas both cations were equally effective when added in the millimolar concentration range. The protective effect of micromolar additions of Mg on root elongation was specific for Al and it failed to alleviate La rhizotoxicity. In contrast to wheat, Mg amelioration of Al toxicity to soybean root elongation at low Mg concentration could not be explained by changes in potential and Al3+ activity at the root plasma membrane surfaces as predicted by a Gouy-Chapman-Stern model. These results suggest that Mg is not acting as an indifferent cation when present at low concentration and implies the involvement of a mechanism other than pure electrostatic effects at the root surface.
通过一系列研究,在背景为0.8 mM CaSO4溶液(pH 4.3)中比较钙和镁对铝抑制根系伸长的保护作用,探究了阳离子改善大豆铝根毒性的机制基础。采用改进的古伊-查普曼-斯特恩模型评估阳离子对根质膜表面电势和Al3+活性的影响。背景溶液中Al3+活性高达4.6 microM时,抑制大豆主根伸长超过80%。在无铝的背景溶液中添加钙和镁时,根系伸长几乎没有反应或没有反应:当以微摩尔浓度范围添加到铝毒溶液中时,镁在减轻铝毒性方面比钙有效100倍,而当以毫摩尔浓度范围添加时,两种阳离子效果相同。微摩尔添加量的镁对根系伸长的保护作用对铝具有特异性,不能减轻镧的根毒性。与小麦不同,低镁浓度下镁对大豆根系伸长的铝毒性改善作用,无法用古伊-查普曼-斯特恩模型预测的根质膜表面电势和Al3+活性变化来解释。这些结果表明,低浓度的镁并非作为一种无关离子起作用,这意味着除了根表面的纯静电效应外,还涉及其他机制。