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在盐堿土壤中生长的水稻叶片中,氧化锌纳米颗粒对光合作用的影响。

Impact of ZnO NPs on photosynthesis in rice leaves plants grown in saline-sodic soil.

机构信息

Agronomy College, Jilin Agricultural University, Changchun, 130118, China.

Jilin Provincial Laboratory of Crop Germplasm Resources, Changchun, 130118, China.

出版信息

Sci Rep. 2024 Jul 14;14(1):16233. doi: 10.1038/s41598-024-66935-9.

Abstract

Saline-sodic stress restricts the absorption of zinc by rice, consequently impacting the photosynthesis process of rice plants. In this experiment, Landrace 9 was selected as the test material and the potting method was employed to investigate the influence of ZnO nanoparticles (ZnO NPs) on zinc absorption and chlorophyll fluorescence in rice grown in saline-sodic land. The research findings demonstrate that the application of ZnO NPs proves to be more advantageous for the growth of rice in saline-sodic soil. Notably, the application of ZnO NPs significantly decreases the levels of Na and MDA in rice leaves in saline-sodic soil, while increasing the levels of K and Zn. Additionally, ZnO NPs enhances the content of chloroplast pigments, specific energy flux, quantum yield, and the performance of active PSII reaction center (PI) in rice leaves under saline-sodic stress. Furthermore, the relative variable fluorescence (W and V) and quantum energy dissipation rate (φ) of rice are also reduced. Therefore, the addition of ZnO NPs enhances the transfer of electrons and energy within the rice photosystem when subjected to saline-sodic stress. This promotes photosynthesis in rice plants growing in saline-sodic land, increasing their resistance to saline-sodic stress and ultimately facilitating their growth and development.

摘要

盐水胁迫限制了水稻对锌的吸收,从而影响了水稻植株的光合作用过程。本实验选用长白 9 号为试验材料,采用盆栽法研究了 ZnO 纳米粒子(ZnO NPs)对盐堿地生长的水稻吸收锌和叶绿素荧光的影响。研究结果表明,ZnO NPs 的应用有利于盐堿地水稻的生长。值得注意的是,在盐堿土壤中应用 ZnO NPs 可显著降低水稻叶片中 Na 和 MDA 的含量,同时增加 K 和 Zn 的含量。此外,ZnO NPs 可提高盐堿胁迫下水稻叶片中叶绿体色素、比能流、量子产率和活性 PSII 反应中心(PI)的性能。此外,还降低了水稻的相对可变荧光(W 和 V)和量子能量耗散率(φ)。因此,当水稻受到盐堿胁迫时,ZnO NPs 的添加增强了电子和能量在水稻光合系统内的转移。这促进了盐堿地生长的水稻的光合作用,提高了它们对盐堿胁迫的抗性,最终促进了它们的生长和发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9e5/11247083/da7d0c0475fc/41598_2024_66935_Fig1_HTML.jpg

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