Insights to proteomics and metabolomics metal chelation in food crops.

Journal of proteins and proteomics Pub Date : 2022-01-01 Epub Date: 2022-06-20 DOI:10.1007/s42485-022-00090-5
Osikemekha Anthony Anani, Inobeme Abel, John Ovie Olomukoro, Ikenna Benedict Onyeachu
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Abstract

Metal pollution of water and soil ecosystems has been linked to stress and/or toxicity in plants, thus affecting the quality and productivity of food crops. This condition has further aggravated the essential food demand caused by the increase in the human population. Reports from previous studies have shown that correcting the noxiousness due to metal stress tolerance, requires several modes of action in the systemic, tissue, cellular, physiological, biochemical, and molecular levels in food crops which might be apparent in terms of enhanced productivity. The possible targets of the toxicity impact of metals in food crops are the MG (methylglyoxal) and ROS (reactive oxygen species) which could result in damage to the DNA structure, enzymes inactivation, protein oxidation, and lipids' peroxidation. This current review evaluates insights into proteomics and metabolomics of metal chelation in food crops with special effects on the toxicity, tolerance, and partitioning of metals towards better health. Detailed information on the biochemical and physiological mechanisms of plant stress from metal induction and tolerance was highlighted. The specific information of various tolerance strategies of food crops under trace element toxicity, the function of metabolites, proteins, and food crop hormones in stress tolerance to heavy presences of metal contents in plants is discussed. Information on the partitioning of trace elements in food crops was enlisted. The health benefits and possible risks from the consumption of trace metals in food crops were evaluated followed by recommending the future research directions.

Abstract Image

粮食作物中金属螯合的蛋白质组学和代谢组学研究进展。
水和土壤生态系统的金属污染与植物的应激和/或毒性有关,从而影响粮食作物的质量和生产力。这种情况进一步加剧了人口增加所造成的基本粮食需求。先前的研究报告表明,纠正由于金属耐受性引起的毒性需要在粮食作物的系统,组织,细胞,生理,生化和分子水平上的几种作用模式,这可能在提高生产力方面是显而易见的。金属在粮食作物中的毒性作用可能的目标是甲基乙二醛(MG)和活性氧(ROS),它们可能导致DNA结构破坏、酶失活、蛋白质氧化和脂质过氧化。本综述评估了粮食作物中金属螯合的蛋白质组学和代谢组学的见解,这些蛋白质组学和代谢组学对金属的毒性、耐受性和分配有特殊影响,从而促进健康。从金属诱导和耐受性方面详细介绍了植物胁迫的生化和生理机制。本文讨论了粮食作物在微量元素毒性下的各种抗性策略的具体信息,以及代谢物、蛋白质和粮食作物激素在植物对重金属含量胁迫抗性中的作用。收集了粮食作物中微量元素分配的信息。评估了食用粮食作物中微量金属的健康益处和可能的风险,并建议了未来的研究方向。
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