Cadmium and arsenic-induced-stress differentially modulates Arabidopsis root architecture, peroxisome distribution, enzymatic activities and their nitric oxide content

被引:66
作者
Piacentini, D. [1 ]
Corpas, F. J. [2 ]
D'Angeli, S. [1 ]
Altamura, M. M. [1 ]
Falasca, G. [1 ]
机构
[1] Sapienza Univ Rome, Dept Environm Biol, Rome, Italy
[2] CSIC, Grp Antioxidants Free Rad & Nit Oxide Biotechnol, Dept Biochem Cell & Mol Biol Plants, Estn Expt Zaidin,Food & Agr, C Prof Albareda 1, E-18008 Granada, Spain
关键词
Arsenic; Cadmium; CFP-PTS1; line; Nitric oxide; Oxidative stress; Peroxisomes; Root system; PLANT PEROXISOMES; OXIDATIVE STRESS; QUIESCENT CENTER; ACCUMULATION; AUXIN; SALINITY; DROUGHT; GROWTH; ACID; LEAF;
D O I
10.1016/j.plaphy.2020.01.026
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In plant cells, cadmium (Cd) and arsenic (As) exert toxicity mainly by inducing oxidative stress through an imbalance between the production of reactive oxygen species (ROS) and reactive nitrogen species (RNS), and their detoxification. Nitric oxide (NO) is a RNS acting as signalling molecule coordinating plant development and stress responses, but also as oxidative stress inducer, depending on its cellular concentration. Peroxisomes are versatile organelles involved in plant metabolism and signalling, with a role in cellular redox balance thanks to their antioxidant enzymes, and their RNS (mainly NO) and ROS. This study analysed Cd or As effects on peroxisomes, and NO production and distribution in the root system, including primary root (PR) and lateral roots (LRs). Arabidopsis thaliana wild-type and transgenic plants enabling peroxisomes to be visualized in vivo, through the expression of the 35S-cyan fluorescent protein fused to the peroxisomal targeting signal1 (PTS1) were used. Peroxisomal enzymatic activities including the antioxidant catalase, the H2O2-generating glycolate oxidase, and the hydroxypyruvate reductase, and root system morphology were also evaluated under Cd/As exposure. Results showed that Cd and As differently modulate these activities, however, catalase activity was inhibited by both. Moreover, Arabidopsis root system was altered, with the pollutants differently affecting PR growth, but similarly enhancing LR formation. Only in the PR apex, and not in LR one, Cd more than As caused significant changes in peroxisome distribution, size, and in peroxisomal NO content. By contrast, neither pollutant caused significant changes in peroxisomes size and peroxisomal NO content in the LR apex.
引用
收藏
页码:312 / 323
页数:12
相关论文
共 70 条
[51]   Peroxisomes Extend Peroxules in a Fast Response to Stress via a Reactive Oxygen Species-Mediated Induction of the Peroxin PEX11a [J].
Rodriguez-Serrano, Maria ;
Romero-Puertas, Maria C. ;
Sanz-Fernandez, Maria ;
Hu, Jianping ;
Sandalio, Luisa M. .
PLANT PHYSIOLOGY, 2016, 171 (03) :1665-1674
[52]   Peroxisome dynamics in Arabidopsis plants under oxidative stress induced by cadmium [J].
Rodriguez-Serrano, Maria ;
Romero-Puertas, Maria C. ;
Sparkes, Imogen ;
Hawes, Chris ;
del Rio, Luis A. ;
Sandalio, Luisa M. .
FREE RADICAL BIOLOGY AND MEDICINE, 2009, 47 (11) :1632-1639
[53]   Cadmium and arsenic affect root development in Oryza sativa L. negatively interacting with auxin [J].
Ronzan, M. ;
Piacentini, D. ;
Fattorini, L. ;
Della Rovere, F. ;
Eiche, E. ;
Rieman, M. ;
Altamura, M. M. ;
Falasca, G. .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2018, 151 :64-75
[54]   Peroxisomes sense and respond to environmental cues by regulating ROS and RNS signalling networks [J].
Sandalio, L. M. ;
Romero-Puertas, M. C. .
ANNALS OF BOTANY, 2015, 116 (04) :475-485
[55]   Indole-3-butyric acid induces lateral root formation via peroxisome-derived indole-3-acetic acid and nitric oxide [J].
Schlicht, Markus ;
Ludwig-Mueller, Jutta ;
Burbach, Christian ;
Volkmann, Dieter ;
Baluska, Frantisek .
NEW PHYTOLOGIST, 2013, 200 (02) :473-482
[56]   PURIFICATION OF PEROXISOMES AND MITOCHONDRIA FROM SPINACH LEAF BY PERCOLL GRADIENT CENTRIFUGATION [J].
SCHWITZGUEBEL, JP ;
SIEGENTHALER, PA .
PLANT PHYSIOLOGY, 1984, 75 (03) :670-674
[57]   Highly Oxidized Peroxisomes Are Selectively Degraded via Autophagy in Arabidopsis [J].
Shibata, Michitaro ;
Oikawa, Kazusato ;
Yoshimoto, Kohki ;
Kondo, Maki ;
Mano, Shoji ;
Yamada, Kenji ;
Hayashi, Makoto ;
Sakamoto, Wataru ;
Ohsumi, Yoshinori ;
Nishimura, Mikio .
PLANT CELL, 2013, 25 (12) :4967-4983
[58]   Water stress induces a differential and spatially distributed nitro-oxidative stress response in roots and leaves of Lotus japonicus [J].
Signorelli, Santiago ;
Corpas, Francisco J. ;
Borsani, Omar ;
Barroso, Juan B. ;
Monza, Jorge .
PLANT SCIENCE, 2013, 201 :137-146
[59]   Dynamics of Peroxisome Homeostasis and Its Role in Stress Response and Signaling in Plants [J].
Su, Tong ;
Li, Wenjing ;
Wang, Pingping ;
Ma, Changle .
FRONTIERS IN PLANT SCIENCE, 2019, 10
[60]   The Arabidopsis catalase triple mutant reveals important roles of catalases and peroxisome-derived signaling in plant development [J].
Su, Tong ;
Wang, Pingping ;
Li, Huijuan ;
Zhao, Yiwu ;
Lu, Yao ;
Dai, Peng ;
Ren, Tianqi ;
Wang, Xiaofeng ;
Li, Xuezhi ;
Shao, Qun ;
Zhao, Dazhong ;
Zhao, Yanxiu ;
Ma, Changle .
JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2018, 60 (07) :591-607