Interaction between selenium and essential micronutrient elements in plants: A systematic review
Abstract
Nutrient imbalance (i.e., deficiency and toxicity) of microelements is an outstanding environmental issue that influences each aspect of ecosystems. Although the crucial roles of microelements in entire lifecycle of plants have been widely acknowledged, the effective control of microelements is still neglected due to the narrow safe margins. Selenium (Se) is an essential element for humans and animals. Although it is not believed to be indispensable for plants, many literatures have reported the significance of Se in terms of the uptake, accumulation, and detoxification of essential microelements in plants. However, most papers only concerned on the antagonistic effect of Se on metal elements in plants and ignored the underlying mechanisms. There is still a lack of systematic review articles to summarize the comprehensive knowledge on the connections between Se and microelements in plants. In this review, we conclude the bidirectional effects of Se on micronutrients in plants, including iron, zinc, copper, manganese, nickel, molybdenum, sodium, chlorine, and boron. The regulatory mechanisms of Se on these micronutrients are also analyzed. Moreover, we further emphasize the role of Se in alleviating element toxicity and adjusting the concentration of micronutrients in plants by altering the soil conditions (e.g., adsorption, pH, and organic matter), promoting microbial activity, participating in vital physiological and metabolic processes, generating element competition, stimulating metal chelation, organelle compartmentalization, and sequestration, improving the antioxidant defense system, and controlling related genes involved in transportation and tolerance. Based on the current understanding of the interaction between Se and these essential elements, future directions for research are suggested.
- Publication:
-
Science of the Total Environment
- Pub Date:
- December 2022
- DOI:
- 10.1016/j.scitotenv.2022.158673
- Bibcode:
- 2022ScTEn.85358673G
- Keywords:
-
- CAT;
- catalase;
- CHX;
- cation/H<SUP loc="post">+</SUP> exchanger;
- COPT;
- Cu transporter;
- COX;
- cytochrome c oxidase;
- DSBs;
- double-strand breaks;
- GSH;
- glutathione;
- GSSG;
- glutathione disulfide;
- H;
- proton;
- HKT;
- high-affinity K<SUP loc="post">+</SUP> transporters;
- HMA;
- heavy metal ATPases;
- HSP;
- heatshock protein;
- MAs;
- mugineic acid family phytosiderophores;
- Met;
- methionine;
- MeSeCys;
- methyl selenocysteine;
- MoCo;
- molybdenum cofactor;
- MOT;
- molybdenum transporter;
- NA;
- nicotianamine;
- NHXs;
- Na<SUP loc="post">+</SUP>/H<SUP loc="post">+</SUP> exchangers;
- NIPs;
- the nodulin 26-like intrinsic proteins;
- Nramp;
- natural resistance-associated macrophage protein family;
- PCs;
- phytochelatins;
- PGPR;
- plant growth promoting rhizobacteria;
- PIPs;
- the plasma membrane intrinsic proteins;
- ROS;
- reactive oxygen species;
- SeCys;
- selenocysteine;
- SeMet;
- selenomethionine;
- SeNPs;
- selenium nanoparticles;
- SOD;
- superoxide dismutase;
- SOS;
- salt overly sensitive;
- ZIP;
- zinc regulatory transporter–iron regulatory transporter like protein;
- ZRT;
- zinc-regulated transporters;
- Detoxification;
- Interaction;
- Micronutrients;
- Plant;
- Selenium;
- Uptake