Chaffai Radhouane, Cherif Ameur
1The University of Manouba, ISBST, BVBGR-LR11ES31, Biotechpole Sidi Thabet, 2020 Ariana, Tunisia.
Department of Fundamental Sciences, ISBST, Biotechpole Sidi Thabet, 2020 Ariana, Tunisia.
Physiol Mol Biol Plants. 2020 Jan;26(1):15-23. doi: 10.1007/s12298-019-00734-9. Epub 2019 Dec 9.
Cadmium (Cd) is a heavy metal ion leading to morphological and physiological disorders in plants; a specific toxicity target is the membrane lipids. The total lipids were separated by thin-layer chromatography, and the fatty acid composition of the total (TLs), polar lipids (PLs) and triacylglycerol (TAG)-a neutral lipid-was analyzed in maize seedlings in hydroponics and treated by various Cd concentrations (0-200 µM Cd). The TLs and PLs significantly decreased in roots after Cd treatment, suggesting the onset of lipid peroxidation mediated by oxygen free radicals, that induce alterations of the membrane structure and function. There were also increases in the TAG from 28.2 to 36.9% of TLs, and the TAG/PLs ratio varied from 0.59 to 0.84, in control and after exposure to 200 µM Cd, respectively. The TAG plays potent roles in membrane turnover serving as energy and carbon resources for the biosynthesis of membrane lipids, to preserve membrane structure and function, and therefore cell homeostasis in response to Cd. In shoots, a significant increase in the levels of C16:0, C18:1, and C18:2, while a decrease in that of C18:3 was observed, suggesting inhibition of desaturases enzymes. These lead to impairment of the chloroplast membrane. The total lipid content did not change under Cd stress. The PLs, however, decreased from 22.4 to 13.6 mg g DW; their percent to TLs varied from 86.6 to 52.5%, in control, and after Cd treatment, respectively. In conclusion, the accumulation of TAG may represent a defense strategy by which maize seedlings can withstand the effects of Cd toxicity, leading to reduced oxidative stress.
镉(Cd)是一种重金属离子,会导致植物出现形态和生理紊乱;一个特定的毒性靶点是膜脂。通过薄层色谱法分离总脂,并分析水培玉米幼苗中总脂(TLs)、极性脂(PLs)和三酰甘油(TAG,一种中性脂)的脂肪酸组成,这些幼苗用不同浓度(0 - 200 μM Cd)的镉进行处理。镉处理后,根中的TLs和PLs显著减少,这表明由氧自由基介导的脂质过氧化作用开始,氧自由基会诱导膜结构和功能的改变。在对照和暴露于200 μM Cd后,TAG占TLs的比例也从28.2%增加到36.9%,TAG/PLs比值分别从0.59变化到0.84。TAG在膜周转中发挥重要作用,为膜脂生物合成提供能量和碳源,以维持膜结构和功能,从而在响应镉时维持细胞内稳态。在地上部分,观察到C16:0、C18:1和C18:2的水平显著增加,而C18:3的水平下降,这表明去饱和酶受到抑制。这些导致叶绿体膜受损。在镉胁迫下总脂含量没有变化。然而,PLs从22.4 mg g DW降至13.6 mg g DW;它们占TLs的百分比在对照和镉处理后分别从86.6%变化到52.5%。总之,TAG的积累可能代表一种防御策略,通过这种策略玉米幼苗可以抵御镉毒性的影响,从而减轻氧化应激。