Wu Feibo, Zhang Guoping
Department of Agronomy, Zhejiang University, Hangzhou 310029, China.
Ying Yong Sheng Tai Xue Bao. 2003 Apr;14(4):632-6.
The biosynthesis pathway of phytochelatins (PC) and its function in heavy metal tolerance of higher plants were summarized in this paper. The toxic heavy metal accumulation in soil would deteriorates crop growth and yield components, and threaten the agro-products security. There were significantly differences in the accumulation and tolerance to heavy metals among plant species and genotypes. The formation of PC in response to the stress caused by heavy metals was one of the truly adaptive responses occurred commonly in higher plants. In the heavy metal tolerant genotypes, there was a much higher accumulation of PC than the non-tolerant lines. Glutathione (GSH) was the substrate for the synthesis of PC, which chelated the metals. The inactive toxic metal ions of metal--PC chelatins were subsequently transported from cytosol to vacuole before they could poison the enzymes of life-supporting metabolic routes, and transiently stored in vacuole to reduce the heavy metal concentration in cytosol, thus, heavy metal detoxification was attained. The break through of genetic mechanism and bio-chemical pathway of PC synthesis induced by heavy metals would depend on the further study on molecular biology in this field. The isolation of Cd-sensitive cad1 and cad2 mutants of Arabidopsis thaliana, that was deficient in PC, demonstrted the importance of PC for heavy metal tolerance. The effect of PC on food security and on phytoremediation of soil and water contaminated by heavy metals was also discussed in this paper.
本文综述了植物螯合肽(PC)的生物合成途径及其在高等植物重金属耐受性中的作用。土壤中有毒重金属的积累会影响作物生长和产量构成要素,并威胁农产品安全。不同植物物种和基因型在重金属积累和耐受性方面存在显著差异。高等植物通常会产生一种真正的适应性反应,即响应重金属胁迫形成PC。在重金属耐受基因型中,PC的积累量远高于非耐受品系。谷胱甘肽(GSH)是合成PC的底物,PC可螯合金属。金属-PC螯合物的无活性有毒金属离子随后从细胞质转运到液泡中,以免毒害维持生命代谢途径的酶,并暂时储存在液泡中以降低细胞质中的重金属浓度,从而实现重金属解毒。重金属诱导的PC合成的遗传机制和生化途径的突破将依赖于该领域分子生物学的进一步研究。拟南芥中缺乏PC的镉敏感突变体cad1和cad2的分离证明了PC对重金属耐受性的重要性。本文还讨论了PC对食品安全以及对重金属污染土壤和水体植物修复的影响。