数字农科院2.0

Negatively but Not Positively Charged Nanoceria Promoted Lateral Root Growth via Modulating the Distribution of Reactive Oxygen Species Rather than Auxin

文献类型: 外文期刊

作者: Li, Guangjing;Qi, Jie;Xu, Wenying;Chen, Linlin;Nyande, Ashadu;Xie, Zhouli;Gu, Jiangjiang;Li, Zhaohu;Wu, Honghong

作者机构:

关键词: (0-1-5)auxin;lateral root formation;nanoceria;ROS;transgenic lines

期刊名称: GLOBAL CHALLENGES

ISSN:

年卷期: 2025 年

页码:

收录情况: SCIE(2025版)

摘要: Lateral root (LR) formation is important for plant growth. ROS (reactive oxygen species)play an important role in LR formation. While how nanomaterials affect ROS distribution to promote LR formation and the role of ROS in primordia in LR formation are rarely known. Cerium oxide nanoparticles (nanoceria), as a potent ROS scavenger, are widely used in plants. This study investigates the effects of poly (acrylic acid) nanoceria (PNC, 6.5 nm, -36 mV), aminated nanoceria (ANC, 6.9 nm, 30 mV), and bulk nanoceria (BNC, 84.9 nm, -5.5 mV) on LR formation in Arabidopsis. Only PNC increased LR numbers by 73.5%, reducing root H2O2 levels by up to 90.44% and altering O-2 center dot- distribution in LR primordia (LRP). Furthermore, DPI (diphenyleneiodonium, O-2 center dot- inhibitor) decreased LR numbers by 18.9%, while PNC treatment reversed this inhibition (12.25 +/- 0.53 vs 8.38 +/- 0.52). Transcriptome analysis shows PNC regulated ROS metabolism via genes like peroxiredoxins and peroxidases, promoting LR formation. Interestingly, PNC does not affect auxin distribution (confirmed by DR5pro::GFP lines) or alleviate NPA-induced (N-1-naphthylphthalamic acid, an auxin transport inhibitor) LR inhibition. These findings suggest that PNC enhances LR formation through ROS modulation rather than auxin signaling.

分类号:

  • 相关文献

[1]Cerium oxide nanoparticles promoted lateral root formation in Arabidopsis by modulating reactive oxygen species and Ca2+level. Guangjing Li,Quanlong Gao,Ashadu Nyande,Zihao Dong,Ehtisham Hassan Khan,Yuqian Han,Honghong Wu. 2024

[2]Genome-wide identification and functional analysis of ICE genes reveal that Gossypium thurberi “GthICE2” is responsible for cold and drought stress tolerance. Jiangping Han,Muhammad Jawad Umer,Mengying Yang,Yuqing Hou,Teame Gereziher Mehari,Jie Zheng,Heng Wang,Jiajun Liu,Wenhao Dong,Yanchao Xu,Yuhong Wang,Fang Liu,Zhong Li Zhou,Xiaoyan Cai. 2023

[3]活性氧在柠檬醛抑制黄曲霉产毒过程中的作用. 李金寒,商博,梁丹丹,Jonathan Nimal Selvaraj,鲁志松,刘阳. 2016

[4]活性氧(ROS)对牛卵母细胞体外成熟凋亡的影响. 刘涛,李向臣,浦亚斌,姚雅馨,关伟军,马月辉. 2010

[5]低氧适应的线粒体调控机制研究进展. 左清清,姚娜,董坤哲,叶绍辉,马月辉. 2013

[6]OsPHGPx基因的过量表达增强水稻抗氧化能力. 宋建辉,李甜,吴秀云,吴赴清,刘进元. 2014

[7]赭曲霉毒素A诱导Caco-2细胞的细胞毒性及DNA损伤. 张捷,李发弟,李爱军,郑楠,李松励,王加启. 2016

[8]烟草转录因子NtNAC080在非生物胁迫下的表达分析及功能鉴定. 文利超,熊涛,邓智超,刘涛,郭存,李伟,郭永峰. 2023

[9]AP2转录因子Oserf34正向调控水稻种子休眠. 杜志敏,贾一楠,段影青,曹妮,马刘洋,董欣丽,徐海,焦桂爱,唐绍清,胡培松. 2025

[10]弓形虫TR与ROP5双基因缺失株的构建及其生物学功能研究. 耿小玲,李瑞芳,徐卫兵,杜晶莹,张曼玉,孙卿,蒋蔚,米荣升,陈兆国,王权. 2025

[11]Nanoceria seed priming enhanced salt tolerance in rapeseed through modulating ROS homeostasis and α-amylase activities. Mohammad Nauman Khan,Yanhui Li,Zaid Khan,Linlin Chen,Jiahao Liu,Jin Hu,Honghong Wu,Zhaohu Li. 2021

[12]Thapsigargin induces apoptosis when autophagy is inhibited in HepG2 cells and both processes are regulated by ROS-dependent pathway. Wang, Congcong,Tang, Shusheng,Zhao, Dongxu,Zhang, Chaoming,Zhang, Shen,Deng, Sijun,Zhou, Yan,Xiao, Xilong,Wang, Congcong,Li, Tao.

[13]Influence of acrylamide on ROS, Hsp27 and NF-kappa B in bone marrow mesenchymal stem cells. Liu, Yang,Tao, Xiaoli,Mu, Yulian,Wang, Pan,Feng, Shutang,Li, Kui,Liu, Yang,Mu, Yulian,Wang, Pan,Feng, Shutang,Li, Kui,Liu, Yang,Mu, Yulian,Wang, Pan,Feng, Shutang,Li, Kui,Tao, Xiaoli.

[14]Maize ZmRAV1 contributes to salt and osmotic stress tolerance in transgenic arabidopsis. Min, Haowei,Wang, Jianhua,Zheng, Jun. 2014

[15]Biochemical and genetic toxicity of dinotefuran on earthworms (Eisenia fetida). Liu, Tong,Wang, Xiuguo,Xu, Jinli,You, Xiangwei,Chen, Dan,Wang, Fenglong,Li, Yiqiang.

[16]Dose dependent rhizospheric Ni toxicity evaluation: Membrane stability and antioxidant potential of Vigna species. Mahmood, Seema,Ishtiaq, Shabnam,Yasin, Ghulam,Irshad, Ahsan. 2016

[17]Combined herbicide and saline stress differentially modulates hormonal regulation and antioxidant defense system in Oryza sativa cultivars. Islam, Faisal,Ali, Basharat,Wang, Jian,Farooq, Muhammad A.,Gill, Rafaqat A.,Zhou, Weijun,Islam, Faisal,Ali, Basharat,Wang, Jian,Farooq, Muhammad A.,Gill, Rafaqat A.,Zhou, Weijun,Ali, Shafaqat,Wang, Danying.

[18]Proteomic and Physiological Analysis of the Response of Oat (Avena sativa) Seeds to Heat Stress under Different Moisture Conditions. Chen, Lingling,Chen, Quanzhu,Xia, Fangshan,Yan, Huifang,Zhu, Yanqiao,Mao, Peisheng,Chen, Lingling,Chen, Quanzhu,Kong, Lingqi. 2016

[19]Characterization and mapping of a novel light-dependent lesion mimic mutant Imm6 in rice (Oryza sativa L.). Xiao Gui-qing,Lu Xiang-yang,Xiao Gui-qing,Lu Xiang-yang,Zhang Hai-wen,Huang Rong-feng. 2015

[20]Induction of ROS generation and NF-kappa B activation in MARC-145 cells by a novel porcine reproductive and respiratory syndrome virus in Southwest of China isolate. Yan, Yulin,Liu, Qian,Huang, Hui,Shao, Zhiyong,Zang, Yating,Chen, Ling,Sun, Yongke,Gao, Hong,Yan, Yulin,Xin, Aiguo. 2015

作者其他论文 更多>>