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纳米硒对植物生长、代谢和胁迫耐受性影响的最新进展

A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance.

作者信息

Samynathan Ramkumar, Venkidasamy Baskar, Ramya Karthikeyan, Muthuramalingam Pandiyan, Shin Hyunsuk, Kumari Pandy Saravana, Thangavel Sivakumar, Sivanesan Iyyakkannu

机构信息

R&D Division, Alchem Diagnostics, No. 1/1, Gokhale Street, Ram Nagar, Coimbatore 641009, India.

Department of Oral and Maxillofacial Surgery, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha Dental College and Hospitals, Saveetha University, Chennai 600077, India.

出版信息

Plants (Basel). 2023 Feb 14;12(4):853. doi: 10.3390/plants12040853.

Abstract

Selenium (Se) is a microelement that plays an important nutrient role by influencing various physiological and biochemical traits in plants. It has been shown to stimulate plant metabolism, enhancing secondary metabolites and lowering abiotic and biotic stress in plants. Globally, the enormous applications of nanotechnology in the food and agricultural sectors have vastly expanded. Nanoselenium is more active than bulk materials, and various routes of synthesis of Se nanoparticles (Se-NPs) have been reported in which green synthesis using plants is more attractive due to a reduction in ecological issues and an increase in biological activities. The Se-NP-based biofortification is more significant because it increases plant stress tolerance and positively impacts their metabolism. Se-NPs can enhance plant resistance to various oxidative stresses, promote growth, enhance soil nutrient status, enhance plant antioxidant levels, and participate in the transpiration process. Additionally, they use a readily available, biodegradable reducing agent and are ecologically friendly. This review concentrates on notable information on the different modes of Se-NPs' synthesis and characterization, their applications in plant growth, yield, and stress tolerance, and their influence on the metabolic process.

摘要

硒(Se)是一种微量元素,通过影响植物的各种生理和生化特性发挥重要的营养作用。研究表明,它能刺激植物新陈代谢,增加次生代谢产物,并降低植物的非生物和生物胁迫。在全球范围内,纳米技术在食品和农业领域的大量应用得到了极大的扩展。纳米硒比块状材料更具活性,并且已经报道了多种合成硒纳米颗粒(Se-NPs)的途径,其中利用植物进行绿色合成更具吸引力,因为它减少了生态问题并增加了生物活性。基于Se-NPs的生物强化更为显著,因为它提高了植物的胁迫耐受性并对其新陈代谢产生积极影响。Se-NPs可以增强植物对各种氧化胁迫的抗性,促进生长,提高土壤养分状况,提高植物抗氧化水平,并参与蒸腾过程。此外,它们使用易于获得、可生物降解的还原剂,且对生态环境友好。本综述集中于关于Se-NPs合成和表征的不同模式、它们在植物生长、产量和胁迫耐受性方面的应用以及它们对代谢过程的影响的显著信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/047b/9964709/1b62fe03f23e/plants-12-00853-g001.jpg

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