Institute for Multidisciplinary Research, University of Belgrade, Belgrade, Serbia.
J Exp Bot. 2012 Apr;63(7):2411-20. doi: 10.1093/jxb/err359. Epub 2012 Jan 16.
This work was focused on the role of silicon (Si) in amelioration of manganese (Mn) toxicity caused by elevated production of hydroxyl radicals (·OH) in the leaf apoplast of cucumber (Cucumis sativus L.). The plants were grown in nutrient solutions with adequate (0.5 μM) or excessive (100 μM) Mn concentrations with or without Si being supplied. The symptoms of Mn toxicity were absent in the leaves of Si-treated plants subjected to excess Mn, although the leaf Mn concentration remained extremely high. The apoplastic concentration of free Mn(2+) and H(2)O(2) of high Mn-treated plants was significantly decreased by Si treatment. Si supply suppressed the Mn-induced increased abundance of peroxidase (POD) isoforms in the leaf apoplastic fluid, and led to a rapid suppression of guaiacol-POD activity under excess Mn. The spin-trapping reagent 5-(diethoxyphosphoryl)-5-methyl-1-pyrroline-N-oxide was used to detect ·OH by electron paramagnetic resonance spectroscopy. Although supplying Si markedly decreased the accumulation of ·OH in the leaf apoplast with excess Mn, adding monosilicic acid to the Mn(2+)/H(2)O(2) reaction mixture did not directly affect the Fenton reaction in vitro. The results indicate that Si contributes indirectly to a decrease in ·OH in the leaf apoplast by decreasing the free apoplastic Mn(2+), thus regulating the Fenton reaction. A direct inhibitory effect of Si on guaiacol-POD activity (demonstrated in vitro) may also contribute to decreasing the POD-mediated generation of ·OH.
这项工作主要研究了硅(Si)在通过提高叶片质外体中羟基自由基(·OH)的产生来缓解锰(Mn)毒性中的作用。在营养溶液中,植物在适量(0.5 μM)或过量(100 μM)Mn 浓度下生长,有或没有 Si 的供应。在 Si 处理的高 Mn 处理植物叶片中,Mn 毒性的症状不存在,尽管叶片 Mn 浓度仍然极高。Si 处理显著降低了高 Mn 处理植物质外体中游离 Mn(2+)和 H(2)O(2)的浓度。Si 供应抑制了 Mn 诱导的叶片质外体液中过氧化物酶(POD)同工型的增加,并导致在过量 Mn 下迅速抑制愈创木酚-POD 活性。自旋捕获试剂 5-(二乙氧基膦酰基)-5-甲基-1-吡咯啉-N-氧化物通过电子顺磁共振波谱法用于检测·OH。尽管 Si 的供应显著降低了叶片质外体中过量 Mn 引起的·OH 积累,但将偏硅酸添加到 Mn(2+)/H(2)O(2)反应混合物中并没有直接影响体外 Fenton 反应。结果表明,Si 通过降低游离质外体 Mn(2+)间接有助于减少叶片质外体中的·OH,从而调节 Fenton 反应。Si 对愈创木酚-POD 活性的直接抑制作用(在体外证明)也可能有助于减少 POD 介导的·OH 的产生。