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银纳米颗粒在黄羽扇豆(Lupinus luteus L.)对尖孢镰刀菌 lupini 专化型防御反应中的作用。

The role of silver nanoparticles in yellow lupine (Lupinus luteus L.) defense response to Fusarium oxysporum f.sp. lupini.

作者信息

Batista Anielkis, Kęsy Jacek, Sadowska Katarzyna, Karolewski Zbigniew, Bocianowski Jan, Woźniak Agnieszka, Morkunas Iwona

机构信息

Department of Plant Physiology, Faculty of Agriculture, Horticulture and Biotechnology, Poznań University of Life Sciences, Wołyńska 35, 60-637, Poznań, Poland.

Polytechnic Institute of Huila, Universidade Mandume ya Ndemufayo, 3FJP+27X, Lubango, Angola.

出版信息

Sci Rep. 2025 May 8;15(1):16136. doi: 10.1038/s41598-025-00464-x.

Abstract

This study presents the influence of silver nanoparticles (AgNPs) on the growth of yellow lupine (Lupinus luteus L.cv. Diament and Lupinus luteus L.cv. Mister), and some metabolic reactions triggered by AgNPs during the seed germination stage and development of the seedling. Also, the role of AgNPs in defense mechanisms of the above of yellow lupine varieties against hemibiotrofic patogen Fusarium oxysporum f.sp. lupini. AgNPs enhanced the growth of yellow lupine seedlings, particularly root length and fresh biomass. Furthermore, AgNPs triggered defense-related phytohormones, such as abscisic acid (ABA), jasmonates (JA/MeJA), and salicylic acid (SA), which were involved in defense response of yellow lupine against F. oxysporum infection. The application of AgNPs significantly enhanced the growth of yellow lupine seedlings, increasing root length by over 400% and fresh biomass by 183% compared to the control. Moreover, AgNPs also significantly triggered an important defense-related phytohormone ABA, which increased by 103- and 38-times in Diament and Mister varieties, respectively. AgNPs influenced soluble sugar levels, such as sucrose and fructose, in yellow lupine, which may be related to defense mechanisms. The treatment with AgNPs induced a hormetic effect, where the roots of seedlings exhibited increased growth and defense responses at low concentrations. The level of gibberellic acid (GA) increased by 556% and 297% in AgNP-pretreated embryo axes of Diament and Mister varieties, respectively. Sugar levels, such as sucrose and fructose, were also influenced by AgNPs. In Diament variety, sucrose and fructose levels increased by 60% and 146%, respectively. However, F. oxysporum infection caused a strong decline in sugar levels. Overall, the study suggests that AgNPs can be used to enhance plant growth and defense against pathogens.

摘要

本研究展示了银纳米颗粒(AgNPs)对黄羽扇豆(白羽扇豆L.cv. Diament和白羽扇豆L.cv. Mister)生长的影响,以及在种子萌发阶段和幼苗发育过程中由AgNPs引发的一些代谢反应。此外,还研究了AgNPs在上述黄羽扇豆品种抵御半活体营养型病原菌尖孢镰刀菌(Fusarium oxysporum f.sp. lupini)的防御机制中的作用。AgNPs促进了黄羽扇豆幼苗的生长,尤其是根长和鲜重。此外,AgNPs引发了与防御相关的植物激素,如脱落酸(ABA)、茉莉酸(JA/MeJA)和水杨酸(SA),这些激素参与了黄羽扇豆对尖孢镰刀菌感染的防御反应。与对照相比,AgNPs的施用显著促进了黄羽扇豆幼苗的生长,根长增加了400%以上,鲜重增加了183%。此外,AgNPs还显著引发了一种重要的与防御相关的植物激素ABA,在Diament和Mister品种中分别增加了103倍和38倍。AgNPs影响了黄羽扇豆中可溶性糖的水平,如蔗糖和果糖,这可能与防御机制有关。AgNPs处理诱导了一种 hormetic 效应,即幼苗的根在低浓度下表现出生长增加和防御反应增强。在Diament和Mister品种经AgNP预处理的胚轴中,赤霉素(GA)水平分别增加了556%和297%。蔗糖和果糖等糖水平也受到AgNPs的影响。在Diament品种中,蔗糖和果糖水平分别增加了60%和146%。然而,尖孢镰刀菌感染导致糖水平大幅下降。总体而言,该研究表明AgNPs可用于促进植物生长和抵御病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bfa/12062378/15be276809e3/41598_2025_464_Fig1_HTML.jpg

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