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物种N5.12:银纳米颗粒中形成的代谢产物可增强植物健康和新陈代谢,而不改变土壤微生物群落。

sp. N5.12 Metabolites Formulated in AgNPs Enhance Plant Fitness and Metabolism Without Altering Soil Microbial Communities.

作者信息

Plokhovska Svitlana, García-Villaraco Ana, Lucas Jose Antonio, Gutiérrez-Mañero Francisco Javier, Ramos-Solano Beatriz

机构信息

Faculty of Pharmacy, Universidad San Pablo-CEU Universities, 28668 Madrid, Spain.

Institute of Food Biotechnology and Genomics NAS of Ukraine, 04123 Kyiv, Ukraine.

出版信息

Plants (Basel). 2025 May 29;14(11):1655. doi: 10.3390/plants14111655.

Abstract

This study investigated the effects of metabolites from the beneficial bacteria N5.12 formulated as silver nanoparticles (AgNPs) on tomato plants and soil microbial communities to explore the environmental safety of AgNPs for future applications in agriculture. AgNPs coated with bacterial metabolites exhibit biological activity that is dose-dependent, as shown by cytoskeleton alterations in Arabidopsis roots. The results show that N5.12-AgNPs can trigger beneficial effects on tomato plants, either when delivered through the leaves or roots, indicating the effectiveness of the metabolites formulated as NP. These effects consist of lowering oxidative stress metabolism and, therefore, improving plant resilience and increasing chlorophyll and carotenoid content. The significant reduction in HO content was not associated with ROS-scavenging enzymes but with an increase in total phenolic content. In contrast, AgNPs had a minimal impact on bacterial metabolic activity, irrespective of the application method. The structure of microbial communities was not altered by AgNPs, indicating environmental safety for agronomic applications. These findings suggest that N5.12 metabolites formulated in AgNPs at physiological concentrations (30 ppm) may offer agricultural benefits by improving plant health and appearing as an environmentally safe alternative for agriculture.

摘要

本研究调查了以银纳米颗粒(AgNPs)形式配制的有益细菌N5.12的代谢产物对番茄植株和土壤微生物群落的影响,以探索AgNPs在未来农业应用中的环境安全性。如拟南芥根中细胞骨架的变化所示,涂有细菌代谢产物的AgNPs表现出剂量依赖性的生物活性。结果表明,N5.12-AgNPs无论是通过叶片还是根部施用,都能对番茄植株产生有益影响,这表明以纳米颗粒形式配制的代谢产物具有有效性。这些影响包括降低氧化应激代谢,从而提高植物的恢复力,并增加叶绿素和类胡萝卜素含量。HO含量的显著降低与活性氧清除酶无关,而是与总酚含量的增加有关。相比之下,无论施用方法如何,AgNPs对细菌代谢活性的影响都很小。AgNPs没有改变微生物群落的结构,表明其在农业应用中的环境安全性。这些发现表明,以生理浓度(30 ppm)配制在AgNPs中的N5.12代谢产物可能通过改善植物健康状况为农业带来益处,并成为一种环境安全的农业替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3a0/12157261/9440699c5a46/plants-14-01655-g001.jpg

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