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工程纳米粒子的植物毒性效应:新兴的纳米毒理学。

Phytotoxicological effects of engineered nanoparticles: An emerging nanotoxicology.

机构信息

Laboratory of Plant Healthcare and Diagnostics, P.G. Department of Biotechnology and Microbiology, Karnatak University, Dharwad, Karnataka 580003, India.

AcSIR, CSIR-Central Salt and Marine Chemicals Research Institute (CSIR-CSMCRI), Gijubhai Badheka Marg, Bhavnagar, Gujarat 364002, India.

出版信息

Sci Total Environ. 2021 Dec 20;801:149809. doi: 10.1016/j.scitotenv.2021.149809. Epub 2021 Aug 21.

Abstract

Recent innovations in the field of nanoscience and technology and its proficiency as a part of inter-disciplinary science has set an eclectic display in innumerable branches of science, a majority in aliened health science of human and agriculture. Modern agricultural practices have been shifting towards the implementation of nanotechnology-based solutions to combat various emerging problems ranging from safe delivery of nutrients to sustainable approaches for plant protection. In these processes, engineered nanoparticles (ENPs) are widely used as nanocarriers (to deliver nutrients and pesticides) due to their high permeability, efficacy, biocompatibility, and biodegradability properties. Even though the constructive nature of nanoparticles (NPs), nanomaterials (NMs), and other modified or ENPs towards sustainable development in agriculture is referenced, the darker side i.e., eco-toxicological effects is still not covered to a larger extent. The overwhelming usage of these trending NMs has led to continuous persistence in the ecosystem, and their interface with the biotic and abiotic community, degradation lanes and intervention, which might lead to certain beneficial or malefic effects. Metal oxide NPs and polymeric NPs (Alginate, chitosan, and polyethylene glycol) are the most used ENPs, which are posing the nature of beneficial as well as environmentally concerning hazardous materials depending upon their fate and persistence in the ecosystem. The cautious usage of NMs in a scientific way is most essential to harness beneficial aspects of NMs in the field of agriculture whilst minimizing the eco-toxicological effects. The current review is focused on the toxicological effects of various NMs on plant physiology and health. It details interactions of plant intracellular components between applied/persistent NMs, which have brought out drastic changes in seed germination, crop productivity, direct and indirect interaction at the enzymatic as well as nuclear levels. In conclusion, ENPs can pose as genotoxicants that may alter the plant phenotype if not administered appropriately.

摘要

近年来,纳米科学和技术领域的创新及其作为跨学科科学的一部分的专业水平,在无数科学分支中展示了丰富多彩的内容,其中大部分是人类和农业的相关健康科学。现代农业实践已经开始转向实施基于纳米技术的解决方案,以应对从安全输送营养物质到可持续植物保护方法等各种新兴问题。在这些过程中,由于其高通透性、功效、生物相容性和可生物降解性,工程纳米颗粒(ENPs)被广泛用作纳米载体(输送营养物质和农药)。尽管纳米颗粒(NPs)、纳米材料(NMs)和其他改性或 ENPs 的建设性性质被认为对农业的可持续发展具有重要意义,但它们对生态毒性的影响仍然没有得到更广泛的关注。这些热门纳米材料的大量使用导致它们在生态系统中持续存在,以及它们与生物和非生物群落、降解途径和干预的相互作用,这可能导致某些有益或有害的影响。金属氧化物 NPs 和聚合物 NPs(海藻酸盐、壳聚糖和聚乙二醇)是最常用的 ENPs,它们根据其在生态系统中的命运和持久性,具有有益和环境关注的危险材料的性质。以科学的方式谨慎使用纳米材料对于在农业领域利用纳米材料的有益方面,同时最小化生态毒性影响至关重要。本综述重点介绍了各种纳米材料对植物生理学和健康的毒理学影响。它详细描述了应用/持久纳米材料与植物细胞内成分之间的相互作用,这些相互作用导致种子发芽、作物生产力、直接和间接在酶和核水平上的变化。总之,如果不适当管理,ENPs 可能会成为遗传毒性物质,从而改变植物表型。

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