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Zinc-Based Nanomaterials for Diagnosis and Management of Plant Diseases: Ecological Safety and Future Prospects

机译:基于锌的纳米材料用于植物疾病的诊断和管理:生态安全与未来前景

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摘要

A facet of nanorenaissance in plant pathology hailed the research on the development and application of nanoformulations or nanoproducts for the effective management of phytopathogens deterring the growth and yield of plants and thus the overall crop productivity. Zinc nanomaterials represent a versatile class of nanoproducts and nanoenabled devices as these nanomaterials can be synthesized in quantum amounts through economically affordable processes/approaches. Further, these nanomaterials exhibit potential targeted antimicrobial properties and low to negligible phytotoxicity activities that well-qualify them to be applied directly or in a deviant manner to accomplish significant antibacterial, antimycotic, antiviral, and antitoxigenic activities against diverse phytopathogens causing plant diseases. The photo-catalytic, fluorescent, and electron generating aspects associated with zinc nanomaterials have been utilized for the development of sensor systems (optical and electrochemical biosensors), enabling quick, early, sensitive, and on-field assessment or quantification of the test phytopathogen. However, the proficient use of Zn-derived nanomaterials in the management of plant pathogenic diseases as nanopesticides and on-field sensor system demands that the associated eco- and biosafety concerns should be well discerned and effectively sorted beforehand. Current and possible utilization of zinc-based nanostructures in plant disease diagnosis and management and their safety in the agroecosystem is highlighted.
机译:植物病理中纳米斯坦的一面揭示了纳米族种类或纳米产品的开发和应用的研究,以便有效管理植物病变,阻碍植物的生长和产量,从而进行整体作物生产率。锌纳米材料代表了一种多功能等级的纳泊纳泊和纳米能装置,因为这些纳米材料可以通过经济实惠的方法/方法以量子量合成。此外,这些纳米材料表现出潜在的靶向抗微生物性质,并且低于可忽略的植物毒性活性,这使得它们直接或以偏差方式施用,以实现针对植物疾病的不同植物病变的显着抗菌,抗症,抗病毒和抗毒性活性。与锌纳米材料相关的光催化,荧光和电子发生方面已经用于开发传感器系统(光学和电化学生物传感器),从而能够快速,早期,敏感和现场评估或定量测试植物病理学。然而,在植物致病性疾病中造成Zn衍生的纳米材料作为纳米多米物和现场传感器系统的巨大使用要求,应彻底辨别和生物安全性涉及和有效地分类。突出了植物疾病诊断和管理中锌基纳米结构的电流和可能的利用及其在农业生物系统中的安全性。

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