Giannakoula Anastasia, Moustakas Michael, Mylona Photini, Papadakis Ioannis, Yupsanis Traianos
Department of Botany, School of Biology, Aristotle University of Thessaloniki, Thessaloniki, Greece.
J Plant Physiol. 2008 Mar 13;165(4):385-96. doi: 10.1016/j.jplph.2007.01.014. Epub 2007 Jul 23.
We investigated the uptake of aluminum (Al) and transport to shoots in two inbred maize lines (Zea mays L., VA-22 and A(4/67)) differing in Al tolerance. Seedlings were grown for 7 days in hydroponic culture with nutrient solution that contained 0, 240, 360, and 480microM Al at pH 4.2. After 7 days of exposure to Al, roots of sensitive maize line (A(4/67)) plants accumulated 2-2.5 times more Al than roots of tolerant line (VA-22) plants. Inductively coupled plasma atomic emission spectrometry (ICP-AES) showed that the tolerant line retained higher concentrations of Ca(2+), Mg(2+), and K(+) compared with the sensitive line. In response to Al treatment, proline (Pro) concentration increased three-fold in roots of tolerant plants, while a slight increase was observed in roots of sensitive-line plants. A substantial carbon surplus (two-fold increase) was observed in roots of the Al-tolerant maize line. Carbohydrate concentration remained almost unchanged in roots of Al-sensitive line plants. Al treatment triggered the enhancement of lipid peroxidation in the sensitive line, while no change in lipid peroxidation level was observed in the tolerant maize line. These data provide further support to the hypothesis that a mechanism exists that excludes Al from the roots of the tolerant maize line, as well as an internal mechanism of tolerance that minimizes accumulation of lipid peroxides through a higher Pro and carbohydrate content related to osmoregulation and membrane stabilization.
我们研究了两个耐铝性不同的玉米自交系(Zea mays L.,VA - 22和A(4/67))对铝(Al)的吸收及其向地上部的运输。将幼苗在pH为4.2、含有0、240、360和480微摩尔Al的营养液水培中培养7天。暴露于Al 7天后,敏感玉米自交系(A(4/67))植株的根积累的Al比耐性自交系(VA - 22)植株的根多2 - 2.5倍。电感耦合等离子体原子发射光谱法(ICP - AES)表明,与敏感系相比,耐性系保留了更高浓度的Ca(2+)、Mg(2+)和K(+)。响应Al处理,耐性植株根中的脯氨酸(Pro)浓度增加了三倍,而敏感系植株根中仅观察到略有增加。在耐铝玉米自交系的根中观察到大量的碳盈余(增加了两倍)。铝敏感系植株根中的碳水化合物浓度几乎保持不变。Al处理引发了敏感系中脂质过氧化作用的增强,而在耐性玉米自交系中未观察到脂质过氧化水平的变化。这些数据进一步支持了这样的假设:存在一种机制可将Al排除在耐性玉米自交系的根外,以及一种内部耐受机制,该机制通过与渗透调节和膜稳定相关的较高Pro和碳水化合物含量,使脂质过氧化物的积累最小化。