K.A. Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, Botanicheskaya St., 35, 127276 Moscow, Russia.
Int J Mol Sci. 2023 Jan 26;24(3):2430. doi: 10.3390/ijms24032430.
Phytochelatins (PCs) are small cysteine-rich peptides capable of binding metal(loid)s via SH-groups. Although the biosynthesis of PCs can be induced in vivo by various metal(loid)s, PCs are mainly involved in the detoxification of cadmium and arsenic (III), as well as mercury, zinc, lead, and copper ions, which have high affinities for S-containing ligands. The present review provides a comprehensive account of the recent data on PC biosynthesis, structure, and role in metal(loid) transport and sequestration in the vacuoles of plant cells. A comparative analysis of PC accumulation in hyperaccumulator plants, which accumulate metal(loid)s in their shoots, and in the excluders, which accumulate metal(loid)s in their roots, investigates the question of whether the endogenous PC concentration determines a plant's tolerance to metal(loid)s. Summarizing the available data, it can be concluded that PCs are not involved in metal(loid) hyperaccumulation machinery, though they play a key role in metal(loid) homeostasis. Unraveling the physiological role of metal(loid)-binding ligands is a fundamental problem of modern molecular biology, plant physiology, ionomics, and toxicology, and is important for the development of technologies used in phytoremediation, biofortification, and phytomining.
植物螯合肽(PCs)是富含半胱氨酸的小分子肽,能够通过巯基与金属(类)结合。尽管 PCs 的生物合成可以在体内被各种金属(类)诱导,但 PCs 主要参与镉和砷(III)以及汞、锌、铅和铜离子的解毒,这些金属(类)对含 S 配体具有高亲和力。本综述全面介绍了关于 PCs 生物合成、结构以及在植物细胞液泡中金属(类)运输和螯合中的作用的最新数据。对在地上部分积累金属(类)的超积累植物和在根部积累金属(类)的排除植物中 PC 积累的比较分析,探讨了内源性 PC 浓度是否决定植物对金属(类)的耐受性的问题。总结现有数据可以得出结论,PCs 不参与金属(类)超积累机制,但它们在金属(类)稳态中起着关键作用。揭示金属(类)结合配体的生理作用是现代分子生物学、植物生理学、离子组学和毒理学的一个基本问题,对于开发用于植物修复、生物强化和植物采矿的技术具有重要意义。