Institute of Botany, Plant Science and Biodiversity Centre, Slovak Academy of Sciences, Dúbravská cesta 9, SK-84523 Bratislava, Slovak Republic.
Institute of Botany, Plant Science and Biodiversity Centre, Slovak Academy of Sciences, Dúbravská cesta 9, SK-84523 Bratislava, Slovak Republic.
J Plant Physiol. 2018 May-Jun;224-225:68-74. doi: 10.1016/j.jplph.2018.03.007. Epub 2018 Mar 22.
Exposure of barley roots to mM concentrations of L-NAME for 30 min caused a considerable root growth inhibition in a dose-dependent manner. The inhibition of root growth was higher in seedlings co-treated with Cd and L-NAME, compared with roots treated with Cd alone, despite the fact that L-NAME markedly reduced the uptake of Cd by roots. Treatment of roots with L-NAME evoked a decrease in NO level in both control and Cd-treated root tips only after a relatively long lag period, which overlaps with an increase in superoxide and HO levels and peroxynitrite generation. L-NAME-induced root growth inhibition is alleviated not only by the application of the NO donor SNP but also by the ROS and peroxynitrite scavengers. Our results indicate that L-NAME, a NOS inhibitor in the animal kingdom, indeed evokes NO depletion also in the plant tissues; however, it does not occur due to the action of L-NAME as an inhibitor of NOS or NOS-like activity, but as a consequence of L-NAME-induced enhanced superoxide generation, leading to increased peroxynitrite level in the root tips due to the reaction between superoxide and NO.
大麦根暴露于 mM 浓度的 L-NAME 中 30 分钟,以剂量依赖的方式导致根生长受到显著抑制。与单独用 Cd 处理的根相比,Cd 和 L-NAME 共同处理的幼苗根的生长抑制更高,尽管 L-NAME 显著降低了根对 Cd 的摄取。在相对长的延迟期后,L-NAME 处理仅在对照和 Cd 处理的根尖中引发 NO 水平降低,这与超氧化物和 HO 水平的增加以及过氧亚硝酸盐的产生重叠。L-NAME 诱导的根生长抑制不仅可以通过施用 NO 供体 SNP 来缓解,还可以通过 ROS 和过氧亚硝酸盐清除剂来缓解。我们的结果表明,动物王国中的 NOS 抑制剂 L-NAME 确实也会在植物组织中引发 NO 耗竭;然而,这不是由于 L-NAME 作为 NOS 或 NOS 样活性的抑制剂的作用,而是由于 L-NAME 诱导的超氧化物生成增强,导致根尖中过氧亚硝酸盐水平增加,这是由于超氧化物和 NO 之间的反应。