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Front Chem. 2023 Aug 4;11:1235437. doi: 10.3389/fchem.2023.1235437. eCollection 2023.
3
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Innovations towards sustainable olive crop management: a new dawn by precision agriculture including endo-therapy.可持续橄榄作物管理的创新:包括内治疗法在内的精准农业带来新曙光。
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Appl Microbiol Biotechnol. 2023 Jul;107(14):4519-4531. doi: 10.1007/s00253-023-12596-z. Epub 2023 Jun 8.
6
Biogenic nanosilver bearing antimicrobial and antibiofilm activities and its potential for application in agriculture and industry.具有抗菌和抗生物膜活性的生物源纳米银及其在农业和工业中的应用潜力。
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Microorganisms. 2023 Feb 1;11(2):369. doi: 10.3390/microorganisms11020369.
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Effect of membrane depolarization against Aspergillus niger GM31 resistant by ultra nanoclusters characterized by Ag and Ag oxidation state.超纳米簇特征化的银和银氧化态对耐黑曲霉 GM31 的膜去极化作用。
Sci Rep. 2023 Feb 15;13(1):2716. doi: 10.1038/s41598-023-29918-w.
9
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利用 Argirium-SUNCs 对抗植物病原菌:限制与展望。

Combat phytopathogenic bacteria employing Argirium-SUNCs: limits and perspectives.

机构信息

Department of Agricultural, Food and Environmental Sciences, University of Perugia, Perugia, Italy.

Research Centre for Plant Protection and Certification, Council for Agricultural Research and Economics (CREA), Rome, Italy.

出版信息

Appl Microbiol Biotechnol. 2024 Jun 1;108(1):357. doi: 10.1007/s00253-024-13189-0.

DOI:10.1007/s00253-024-13189-0
PMID:38822872
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11144149/
Abstract

Bacterial plant diseases are difficult to control as the durability of deployed control measures is thwarted by continuous and rapid changing of bacterial populations. Although application of copper compounds to plants is the most widespread and inexpensive control measure, it is often partially efficacious for the frequent appearance of copper-resistant bacterial strains and it is raising concerns for the harmful effects of copper on environment and human health. Consequently, European Community included copper compounds in the list of substances candidates for substitution. Nanotechnologies and the application of nanoparticles seem to respond to the need to find new very effective and durable measures. We believe that Argirium-SUNCs®, silver ultra nanoclusters with an average size of 1.79 nm and characterized by rare oxidative states (Ag), represent a valid candidate as a nano-bactericide in the control of plant bacterial diseases. Respect to the many silver nanoparticles described in the literature, Argirium-SUNCs have many strengths due to the reproducibility of the synthesis method, the purity and the stability of the preparation, the very strong (less than 1 ppm) antimicrobial, and anti-biofilm activities. In this mini-review, we provide information on this nanomaterial and on the possible application in agriculture. KEY POINTS: • Argirium-SUNCs have strong antimicrobial activities against phytopathogenic bacteria. • Argirium-SUNCs are a possible plant protection product. • Argirium-SUNCs protect tomato plants against bacterial speck disease.

摘要

细菌性植物病害难以控制,因为部署的控制措施的耐久性受到细菌种群持续快速变化的阻碍。虽然将铜化合物应用于植物是最广泛和最便宜的控制措施,但由于经常出现铜抗性细菌菌株,其效果往往不明显,而且人们对铜对环境和人类健康的有害影响也感到担忧。因此,欧洲共同体将铜化合物列入了候选替代物质名单。纳米技术和纳米粒子的应用似乎满足了寻找新的非常有效和持久的措施的需要。我们认为 Argirium-SUNCs®,即平均粒径为 1.79nm 的具有罕见氧化态(Ag)的银超纳米簇,是控制植物细菌性病害的有效纳米杀菌剂候选物。与文献中描述的许多银纳米粒子相比,Argirium-SUNCs 具有许多优势,因为其合成方法具有可重复性、制剂的纯度和稳定性、非常强的(低于 1ppm)抗菌和抗生物膜活性。在这篇小型综述中,我们提供了有关这种纳米材料及其在农业中可能应用的信息。 关键点: • Argirium-SUNCs 对植物病原菌具有很强的抗菌活性。 • Argirium-SUNCs 是一种有潜力的植物保护产品。 • Argirium-SUNCs 可保护番茄植物免受细菌性斑点病的侵害。