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季铵型离子液体富勒烯衍生物通过调节根系抗氧化防御系统中ASA-GSH 循环来改善氧化胁迫下玉米根系生长,从而维持氧化还原平衡,并通过 ROS 介导的根毛伸长促进玉米根系生长。

Quaternary ammonium iminofullerenes improve root growth of oxidative-stress maize through ASA-GSH cycle modulating redox homeostasis of roots and ROS-mediated root-hair elongation.

机构信息

National Key Laboratory of Wheat and Maize Crop Science, College of Life Science, Henan Agricultural University, Zhengzhou, 450002, China.

NanoAgro Center, College of Plant Protection, Henan Agricultural University, Zhengzhou, 450002, China.

出版信息

J Nanobiotechnology. 2022 Jan 4;20(1):15. doi: 10.1186/s12951-021-01222-7.

Abstract

BACKGROUND

Various environmental factors are capable of oxidative stress to result in limiting plant development and agricultural production. Fullerene-based carbon nanomaterials can enable radical scavenging and positively regulate plant growth. Even so, to date, our knowledge about the mechanism of fullerene-based carbon nanomaterials on plant growth and response to oxidative stress is still unclear.

RESULTS

20 or 50 mg/L quaternary ammonium iminofullerenes (IFQA) rescued the reduction in root lengths and root-hair densities and lengths of Arabidopsis and maize induced by accumulation of endogenous hydrogen peroxide (HO) under 3-amino-1,2,4-triazole or exogenous HO treatment, as well as the root active absorption area and root activity under exogenous HO treatment. Meanwhile, the downregulated contents of ascorbate acid (ASA) and glutathione (GSH) and the upregulated contents of dehydroascorbic acid (DHA), oxidized glutathione (GSSG), malondialdehyde (MDA), and HO indicated that the exogenous HO treatment induced oxidative stress of maize. Nonetheless, application of IFQA can increase the ratios of ASA/DHA and GSH/GSSG, as well as the activities of glutathione reductase, and ascorbate peroxidase, and decrease the contents of HO and MDA. Moreover, the root lengths were inhibited by buthionine sulfoximine, a specific inhibitor of GSH biosynthesis, and subsequently rescued after addition of IFQA. The results suggested that IFQA could alleviate exogenous-HO-induced oxidative stress on maize by regulating the ASA-GSH cycle. Furthermore, IFQA reduced the excess accumulation of ROS in root hairs, as well as the NADPH oxidase activity under HO treatment. The transcript levels of genes affecting ROS-mediated root-hair development, such as RBOH B, RBOH C, PFT1, and PRX59, were significantly induced by HO treatment and then decreased after addition of IFQA.

CONCLUSION

The positive effect of fullerene-based carbon nanomaterials on maize-root-hair growth under the induced oxidative stress was discovered. Application IFQA can ameliorate oxidative stress to promote maize-root growth through decreasing NADPH-oxidase activity, improving the scavenging of ROS by ASA-GSH cycle, and regulating the expressions of genes affecting maize-root-hair development. It will enrich more understanding the actual mechanism of fullerene-based nanoelicitors responsible for plant growth promotion and protection from oxidative stress.

摘要

背景

各种环境因素都能导致氧化应激,从而限制植物的生长和农业生产。富勒烯基碳纳米材料能够清除自由基并正向调节植物生长。即便如此,迄今为止,我们对于富勒烯基碳纳米材料对植物生长和对氧化应激响应的机制的了解仍不清楚。

结果

20 或 50mg/L 季铵盐基富勒烯(IFQA)可挽救 3-氨基-1,2,4-三唑或外源 H2O2 处理下内源 H2O2 积累诱导的拟南芥和玉米根长和根毛密度及长度、外源 H2O2 处理下的根主动吸收面积和根活力的降低,同时下调抗坏血酸(ASA)和谷胱甘肽(GSH)的含量,上调脱氢抗坏血酸(DHA)、氧化型谷胱甘肽(GSSG)、丙二醛(MDA)和 H2O2 的含量,表明外源 H2O2 处理诱导玉米发生氧化应激。然而,IFQA 的应用可以增加 ASA/DHA 和 GSH/GSSG 的比值,以及谷胱甘肽还原酶和抗坏血酸过氧化物酶的活性,降低 H2O2 和 MDA 的含量。此外,谷胱甘肽合成的特异性抑制剂丁硫氨酸亚砜胺抑制根长,随后添加 IFQA 后得到恢复。结果表明,IFQA 可通过调节 ASA-GSH 循环来缓解外源-HO 诱导的玉米氧化应激。此外,IFQA 减少了根毛中 ROS 的过度积累以及 H2O2 处理下 NADPH 氧化酶的活性。HO 处理后,影响 ROS 介导的根毛发育的基因如 RBOH B、RBOH C、PFT1 和 PRX59 的转录水平显著上调,随后添加 IFQA 后下调。

结论

发现富勒烯基碳纳米材料在诱导氧化应激下对玉米根毛生长有正向作用。应用 IFQA 可以通过降低 NADPH 氧化酶活性、改善 ASA-GSH 循环对 ROS 的清除作用以及调节影响玉米根毛发育的基因的表达来缓解氧化应激,从而促进玉米根的生长。这将丰富我们对富勒烯基纳米激发子促进植物生长和抵御氧化应激的实际机制的更多了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6a0/8725307/b5df2e13faaa/12951_2021_1222_Fig1_HTML.jpg

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