Ouariti O, Boussama N, Zarrouk M, Cherif A, Ghorbal M H
Département des Sciences Biologiques, Faculté des Sciences de Tunis Campus Universitaire, Tunisia.
Phytochemistry. 1997 Aug;45(7):1343-50. doi: 10.1016/s0031-9422(97)00159-3.
Cadmium and copper uptake and distribution, as well as their effects on growth and lipid composition were investigated in 17-day-old tomato seedlings (Lycopersicon esculentum Mill. cv. 63/5 F1) grown in culture solution supplied with two concentrations of Cd or Cu (0, 5 and 50 microM). The accumulation of Cd and Cu increased with external metal concentrations, and was considerably higher in roots than in primary leaves. Biomass production of the growing roots and primary leaves was strongly depressed at high metal levels. Also, significant decreases in the content of lipid classes and changes of fatty acid composition were recorded in heavy metal-stressed plants in comparison with controls. Glycolipid contents were decreased more in leaves than in roots by Cd-treatment, but copper decreased both to similar extents in both organs. Likewise, both metals reduced the phospholipid and neutral lipid contents more in roots than in leaves. In almost all lipid classes the proportion of palmitic acid (16:0) increased, and that of linoleic (18:2) or linolenic (18:3) acid decreased, suggesting that heavy metal treatment induced an alteration in the fatty acid desaturation processes. Furthermore, the accumulation of palmitate (16:0) rather than stearate (18:0) indicated an alteration in the ratio of products from the fatty acid synthase. Copper was found to be the most unfavourable for plant growth and lipid metabolism. The possible mechanisms by which heavy metals, especially Cu, induce a strong lipid shift are discussed.
研究了在添加两种浓度镉或铜(0、5和50微摩尔)的培养液中生长的17日龄番茄幼苗(番茄品种Lycopersicon esculentum Mill. cv. 63/5 F1)对镉和铜的吸收与分布,以及它们对生长和脂质组成的影响。镉和铜的积累量随外部金属浓度的增加而增加,且根部的积累量显著高于初生叶。在高金属水平下,生长中的根和初生叶的生物量生产受到强烈抑制。此外,与对照相比,重金属胁迫植物的脂质类别含量显著降低,脂肪酸组成也发生了变化。镉处理使叶片中糖脂含量的降低幅度大于根部,但铜处理使两个器官中的糖脂含量降低程度相似。同样,两种金属使根部的磷脂和中性脂质含量降低的幅度均大于叶片。几乎在所有脂质类别中,棕榈酸(16:0)的比例增加,亚油酸(18:2)或亚麻酸(18:3)的比例降低,这表明重金属处理诱导了脂肪酸去饱和过程的改变。此外,棕榈酸(16:0)而非硬脂酸(18:0)的积累表明脂肪酸合酶产物的比例发生了改变。发现铜对植物生长和脂质代谢最为不利。讨论了重金属尤其是铜诱导强烈脂质变化的可能机制。