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纤维交联氧化锌纳米粒子对大豆幼苗互作机制的形态和蛋白质组学分析。

Morphological and Proteomic Analyses of Soybean Seedling Interaction Mechanism Affected by Fiber Crosslinked with Zinc-Oxide Nanoparticles.

机构信息

Faculty of Environment and Information Sciences, Fukui University of Technology, Fukui 910-8505, Japan.

R&D Laboratory for Applied Product, Asahi Kasei Corporation, Moriyama 524-0002, Japan.

出版信息

Int J Mol Sci. 2022 Jul 3;23(13):7415. doi: 10.3390/ijms23137415.

Abstract

Nanoparticles (NPs) enhance soybean growth; however, their precise mechanism is not clearly understood. To develop a more effective method using NPs for the enhancement of soybean growth, fiber crosslinked with zinc oxide (ZnO) NPs was prepared. The solution of ZnO NPs with 200 nm promoted soybean growth at the concentration of 10 ppm, while fibers crosslinked with ZnO NPs promoted growth at a 1 ppm concentration. Soybeans grown on fiber cross-linked with ZnO NPs had higher Zn content in their roots than those grown in ZnO NPs solution. To study the positive mechanism of fiber crosslinked with ZnO NPs on soybean growth, a proteomic technique was used. Proteins categorized in photosynthesis and secondary metabolism accumulated more in soybeans grown on fiber crosslinked with ZnO NPs than in those grown in ZnO NPs solution. Furthermore, significantly accumulated proteins, which were NADPH oxidoreductase and tubulins, were confirmed using immunoblot analysis. The abundance of NADPH oxidoreductase increased in soybean by ZnO NPs application. These results suggest that fiber crosslinked with ZnO NPs enhances soybean growth through the increase of photosynthesis and secondary metabolism. Additionally, the accumulation of NADPH oxidoreductase might relate to the effect of auxin with fiber crosslinked with ZnO NPs on soybean growth.

摘要

纳米粒子 (NPs) 能促进大豆生长;然而,其确切机制尚不清楚。为了开发一种更有效的利用 NPs 促进大豆生长的方法,制备了纤维交联氧化锌 (ZnO) NPs。在 10 ppm 的浓度下,200nm 的 ZnO NPs 溶液促进了大豆的生长,而交联 ZnO NPs 的纤维在 1 ppm 的浓度下促进了生长。与在 ZnO NPs 溶液中生长的大豆相比,在纤维交联 ZnO NPs 上生长的大豆的根部 Zn 含量更高。为了研究纤维交联 ZnO NPs 对大豆生长的积极作用机制,采用了蛋白质组学技术。在纤维交联 ZnO NPs 上生长的大豆中,与光合作用和次生代谢相关的蛋白质积累更多。此外,使用免疫印迹分析证实了 NADPH 氧化还原酶和微管蛋白等显著积累的蛋白质。ZnO NPs 的应用增加了大豆中 NADPH 氧化还原酶的丰度。这些结果表明,纤维交联 ZnO NPs 通过增加光合作用和次生代谢来促进大豆生长。此外,纤维交联 ZnO NPs 中 NADPH 氧化还原酶的积累可能与生长素的作用有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5267/9266555/53bbb825ac9c/ijms-23-07415-g001.jpg

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