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多壁碳纳米管通过进入根部促进氮-硝酸钾在植物体内的积累、分布和同化。

Multi-walled carbon nanotubes promote the accumulation, distribution, and assimilation of N-KNO in by entering the roots.

作者信息

Shi Junyuan, Xun Mi, Song Jianfei, Li Jiaqi, Zhang Weiwei, Yang Hongqiang

机构信息

College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an, Shandong, China.

出版信息

Front Plant Sci. 2023 Mar 9;14:1131978. doi: 10.3389/fpls.2023.1131978. eCollection 2023.

Abstract

INTRODUCTION

Multi-walled nanotubes (MWCNTs) consist of multiple rolled layers of graphene. Nitrogen plays an important role in apple growth. The effect of MWCNTs on nitrogen utilization in apple needs to be further investigated.

METHODS

In this study, the woody plant seedlings were used as plant materials, the distribution of MWCNTs in the roots was observed, and the effects of MWCNTs on the accumulation, distribution, and assimilation of nitrate by the seedlings were explored.

RESULTS

The results showed that MWCNTs could penetrate the roots of seedlings, and the 50, 100, and 200 µg·mL MWCNTs significantly promoted the root growth of seedlings, increased root number, root activity, fresh weight, and nitrate content of seedlings, and also increased nitrate reductase activity, free amino acid, and soluble protein content of roots and leaves. N tracer experiments indicated that MWCNTs decreased the distribution ratio of N-KNO in roots but increased its distribution ratio in stems and leaves. MWCNTs improved the utilization ratio of N-KNO in seedlings, with the values being increased by 16.19%, 53.04%, and 86.44% following the 50, 100, and 200 µg·mL MWCNTs, respectively. The RT-qPCR analysis showed that MWCNTs significantly affected the expression of genes () related to nitrate uptake and transport in roots and leaves, and , , , , , and were notably up-regulated in response to 200 µg·mL MWCNTs. Raman analysis and transmission electron microscopy images indicated that MWCNTs could enter the root tissue of and were distributed between the cell wall and cytoplasmic membrane. Pearson correlation analysis showed that root tip number, root fractal dimension, and root activity were the main factors affecting root uptake and assimilation of nitrate.

CONCLUSIONS

These findings suggest that MWCNTs promoted root growth by entering the root, stimulated the expression of , and increased NR activity, thereby enhancing the uptake, distribution, and assimilation of nitrate by root, and ultimately improved the utilization of N-KNO by seedlings.

摘要

引言

多壁碳纳米管(MWCNTs)由多层石墨烯卷曲而成。氮在苹果生长中起着重要作用。MWCNTs对苹果氮素利用的影响有待进一步研究。

方法

本研究以木本植物幼苗为材料,观察MWCNTs在根中的分布情况,探讨MWCNTs对幼苗硝酸盐积累、分布和同化的影响。

结果

结果表明,MWCNTs能够穿透幼苗根系,50、100和200 μg·mL的MWCNTs显著促进了幼苗根系生长,增加了幼苗的根数、根活力、鲜重和硝酸盐含量,同时也提高了根和叶中的硝酸还原酶活性、游离氨基酸和可溶性蛋白含量。氮素示踪实验表明,MWCNTs降低了根系中N-KNO的分配比例,但增加了其在茎和叶中的分配比例。MWCNTs提高了幼苗对N-KNO的利用率,50、100和200 μg·mL的MWCNTs处理后,利用率分别提高了16.19%、53.04%和86.44%。RT-qPCR分析表明,MWCNTs显著影响根和叶中与硝酸盐吸收和转运相关基因()的表达,200 μg·mL的MWCNTs处理后,、、、、、和显著上调。拉曼分析和透射电子显微镜图像表明,MWCNTs能够进入的根组织,并分布在细胞壁和细胞质膜之间。Pearson相关性分析表明,根尖数、根分形维数和根活力是影响根系硝酸盐吸收和同化的主要因素。

结论

这些发现表明,MWCNTs通过进入根系促进根系生长,刺激的表达,增加NR活性,从而增强根系对硝酸盐的吸收、分布和同化,最终提高幼苗对N-KNO的利用率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deaf/10033859/658ece98d138/fpls-14-1131978-g001.jpg

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