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纳米颗粒作为高等植物中具有经济重要性的次生代谢物的激发子和采集器:综述。

Nanoparticles as elicitors and harvesters of economically important secondary metabolites in higher plants: A review.

机构信息

Department of Botany, Sarsuna College, University of Calcutta, Kolkata, West Bengal, India.

出版信息

IET Nanobiotechnol. 2021 Feb;15(1):28-57. doi: 10.1049/nbt2.12005.

Abstract

Nanoparticles possess some unique properties which improve their biochemical reactivity. Plants, due to their stationary nature, are constantly exposed to nanoparticles present in the environment, which act as abiotic stress agents at sub-toxic concentrations and phytotoxic agents at higher concentrations. In general, nanoparticles exert their toxicological effect by the generation of reactive oxygen species to which plants respond by activating both enzymatic and non-enzymatic anti-oxidant defence mechanisms. One important manifestation of the defence response is the increased or de novo biosynthesis of secondary metabolites, many of which have commercial application. The present review extensively summarizes current knowledge about the application of different metallic, non-metallic and carbon-based nanoparticles as elicitors of economically important secondary metabolites in different plants, both in vivo and in vitro. Elicitation of secondary metabolites with nanoparticles in plant cultures, including hairy root cultures, is discussed. Another emergent technology is the ligand-harvesting of secondary metabolites using surface-functionalized nanoparticles, which is also mentioned. A brief explanation of the mechanism of action of nanoparticles on plant secondary metabolism is included. Optimum conditions and parameters to be evaluated and standardized for the successful commercial exploitation of this technology are also mentioned.

摘要

纳米颗粒具有一些独特的性质,可提高其生化反应活性。由于植物处于静止状态,因此它们会不断暴露于环境中存在的纳米颗粒中,这些纳米颗粒在亚毒性浓度下作为非生物胁迫剂,在更高浓度下作为植物毒性剂。通常,纳米颗粒通过生成活性氧来发挥其毒理学效应,而植物通过激活酶促和非酶促抗氧化防御机制来对此做出反应。防御反应的一个重要表现是次生代谢物的增加或从头生物合成,其中许多具有商业应用价值。本综述广泛总结了不同金属、非金属和基于碳的纳米颗粒作为不同植物中具有经济重要性的次生代谢物的诱导剂的应用,包括体内和体外。讨论了纳米颗粒在植物培养物(包括发根培养物)中诱导次生代谢物的情况。另一种新兴技术是使用表面功能化的纳米颗粒来捕获次生代谢物的配体,也提到了这一点。还包括对纳米颗粒对植物次生代谢物作用机制的简要说明。还提到了成功商业化利用该技术所需评估和标准化的最佳条件和参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da27/8675826/c98d0a69fb72/NBT2-15-28-g004.jpg

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