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用于植物生长和发育的工程纳米材料:观点分析。

Engineered nanomaterials for plant growth and development: A perspective analysis.

机构信息

Department of Biotechnology, Innovate Mediscience India, Vijay Nagar, Indore 452010, Madhya Pradesh, India.

Center for Superfunctional Materials, School of Natural Sciences, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, South Korea.

出版信息

Sci Total Environ. 2018 Jul 15;630:1413-1435. doi: 10.1016/j.scitotenv.2018.02.313. Epub 2018 Mar 7.

Abstract

With the overwhelmingly rapid advancement in the field of nanotechnology, the engineered nanomaterials (ENMs) have been extensively used in various areas of the plant system, including quality improvement, growth and nutritional value enhancement, gene preservation etc. There are several recent reports on the ENMs' influence on growth enhancements, growth inhibition as well as certain toxic impacts on plant. However, translocation, growth responses and stress modulation mechanisms of ENMs in the plant systems call for better and in-depth understanding. Herein, we are presenting a comprehensive and critical account of different types of ENMs, their applications and their positive, negative and null impacts on physiological and molecular aspects of plant growth, development and stress responses. Recent reports revealed mixed effects on plants, ranging from enhanced crop yield, epi/genetic alterations, and phytotoxicity, resulting from the ENMs' exposure. Creditable research in recent years has revealed that the effects of ENMs on plants are species specific and are variable among plant species. ENM exposures are reported to trigger free radical formation, responsive scavenging, and antioxidant armories in the exposed plants. The ENMs are also reported to induce aberrant expressions of microRNAs, the key post-transcriptional regulators of plant growth, development and stress-responses of plants. However, these modulations, if judiciously done, may lead to improved plant growth and yield. A better understanding of the interactions between ENMs and plant responses, including their uptake transport, internalization, and activity, could revolutionize crop production through increased disease resistance, nutrient utilization, and crop yield. Therefore, in this review, we are presenting a critical account of the different selected ENMs, their uptake by the plants, their positive/negative impacts on plant growth and development, along with the resultant ENM-responsive post-transcriptional modifications, especially, aberrant miRNA expressions. In addition, underlying mechanisms of various ENM-plant cell interactions have been discussed.

摘要

随着纳米技术领域的飞速发展,工程纳米材料(ENMs)已广泛应用于植物系统的各个领域,包括改善质量、促进生长和提高营养价值、基因保存等。最近有几篇关于 ENMs 对生长促进、生长抑制以及对植物某些毒性影响的报道。然而,ENMs 在植物系统中的迁移、生长反应和应激调节机制需要更好和更深入的理解。在此,我们全面而批判性地介绍了不同类型的 ENMs、它们的应用以及它们对植物生长、发育和应激反应的生理和分子方面的积极、消极和中性影响。最近的报告显示,ENMs 的暴露对植物产生了混合影响,从增强作物产量、表型/遗传改变到植物毒性不等。近年来,可信的研究表明,ENMs 对植物的影响是物种特异性的,并且在植物物种之间是可变的。据报道,ENMs 暴露会引发自由基形成、响应性清除和暴露植物中的抗氧化剂军备。ENMs 还被报道诱导植物生长、发育和应激反应的关键转录后调控因子 microRNAs 的异常表达。然而,如果明智地进行这些调节,可能会导致植物生长和产量的提高。更好地理解 ENMs 与植物反应之间的相互作用,包括它们的摄取、运输、内化和活性,可能会通过提高植物的抗病性、养分利用和作物产量来彻底改变作物生产。因此,在这篇综述中,我们批判性地介绍了不同选择的 ENMs、它们被植物吸收的情况、它们对植物生长和发育的积极/消极影响,以及由此产生的 ENM 响应性转录后修饰,特别是异常的 miRNA 表达。此外,还讨论了各种 ENM-植物细胞相互作用的潜在机制。

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