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Heavy metal-induced oxidative damage, defense reactions, and detoxification mechanisms in plants

机译:重金属诱导的植物氧化损伤,防御反应和解毒机制

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Heavy metal (HMs) contamination is widespread globally due to anthropogenic, technogenic, and geogenic activities. The HMs exposure could lead to multiple toxic effects in plants by inducing reactive oxygen species (ROS), which inhibit most cellular processes at various levels of metabolism. ROS being highly unstable could play dual role (1) damaging cellular components and (2) act as an important secondary messenger for inducing plant defense system. Cells are equipped with enzymatic and non-enzymatic defense mechanisms to counteract this damage. Some are constitutive and others that are activated only when a stress-specific signal is perceived. Enzymatic scavengers of ROS include superoxide dismutase, catalase, glutathione reductase, and peroxidase, while non-enzymatic antioxidants are glutathione, ascorbic acid, α-tocopherol, flavonoids, anthocyanins, carotenoids, and organic acids. The intracellular and extracellular chelation mechanisms of HMs are associated with organic acids such as citric,malic and oxalic acid, etc. The important mechanism of detoxification includes metal complexation with glutathione, amino acids, synthesis of phytochelatins and sequestration into the vacuoles. Excessive stresses induce a cascade, MAPK (mitogen-activated protein kinase) pathway and synthesis of metal-detoxifying ligands. Metal detoxification through MAPK cascade and synthesis of metal-detoxifying ligands will be of considerable interest in the field of plant biotechnology. Further, the photoprotectiveroles of pigments of xanthophylls cycle under HMs stress were also discussed.
机译:由于人类活动,技术活动和地质活动,重金属(HMs)污染在全球范围内很普遍。 HMs的暴露可通过诱导活性氧(ROS)来在植物中导致多种毒性作用,而活性氧可抑制各种代谢水平下的大多数细胞过程。 ROS高度不稳定可能起双重作用(1)破坏细胞成分,(2)充当诱导植物防御系统的重要辅助信使。细胞配备有酶促和非酶促防御机制以抵消这种损害。一些是本构性的,其他一些仅在感知到特定于压力的信号时才激活。 ROS的酶清除剂包括超氧化物歧化酶,过氧化氢酶,谷胱甘肽还原酶和过氧化物酶,而非酶抗氧化剂包括谷胱甘肽,抗坏血酸,α-生育酚,类黄酮,花色素苷,类胡萝卜素和有机酸。 HMs的细胞内和细胞外螯合机制与柠檬酸,苹果酸和草酸等有机酸有关。解毒的重要机制包括与谷胱甘肽,氨基酸的金属络合,植物螯合素的合成以及螯合到液泡中。过度的压力会诱导级联,MAPK(促分裂原活化的蛋白激酶)途径和金属解毒配体的合成。通过MAPK级联的金属解毒以及金属解毒配体的合成将在植物生物技术领域引起广泛关注。此外,还讨论了HMs胁迫下叶黄素循环色素的光保护性。

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